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  • 1
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Plant Science. ; Genetics and Genomics. ; Biotechnology.
    Description / Table of Contents: Reference genome sequence of flax -- Repeat DNA sequences in flax genomes -- Pale flax (Linum bienne): an underexplored flax wild relative -- Flax breeding -- QTL mapping: strategy, progress and prospects in flax -- Genetics of abiotic stress in flax. QTL and candidate genes for flax disease resistance -- Key stages of flax bast fiber development through the prism of transcriptomics -- Metabolomics and transcriptomics-based tools for linseed improvement.
    Abstract: The Flax Genome is a comprehensive compilation of most recent studies focused on reference genome, genetic resources and molecular diversity, breeding, QTL mapping, gene editing tools, functional genomics and metabolomics, molecular breeding via genomic selection, and genomic resources. The flax genome reference sequences and the new genome assemblies are presented. A list of flax QTL and candidate genes associated with more than 35 traits, including yield and agronomic, seed quality and fatty acid composition, fibre quality and yield, abiotic stress, and disease resistance traits, are summarized. A QTL- based genomic selection strategy and genome–editing tools are systematically introduced. In addition, huge amounts of flax genomic resources generated in the last decade are summarized. The book contains 13 chapters with about 390 pages authored by globally reputed researchers in the relevant fields to this crop The book is intended to be useful to students, teachers, and researchers interested in traditional and molecular breeding, pathology, molecular genetics and breeding, bioinformatics and computational biology, and functional genomics.
    Type of Medium: Online Resource
    Pages: XII, 294 p. 74 illus., 70 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031160615
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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  • 2
    Keywords: Botany. ; Agriculture. ; Agronomy. ; Biotechnology. ; Nanotechnology. ; Plant Science. ; Agriculture. ; Agronomy. ; Biotechnology. ; Nanotechnology.
    Description / Table of Contents: Chapter 1. Agrochemicals in Soil and Environment: An Overview -- Chapter 2. Agrochemicals- Provenance, Environmental Fate and Remediation Measures -- Chapter 3. Impact of Agrochemicals on Soil Microbiota -- Chapter 4. Agriculture Pollution in Kerala, India with Special Reference to Endosulphan -- Chapter 5. An Intergenerational Community-Based Approach to Safe Farming and Environmental Health -- Chapter 6. Guidance on Pesticides Handling in Farming -- Chapter 7. Impact of Pesticides, Herbicides and Insecticides on the Ecosystem -- Chapter 8. Pesticides and its Effects on Plants: A Case Study of Deltamethrin -- Chapter 9. The Use of Glyphosate in Regions of Argentina and Colombia and its Socio-environmental Impacts -- Chapter 10. Impact of Insecticides on Soil and Environment and their Management Strategies -- Chapter 11. Role of Insect Pest Management in Agriculture Conservation -- Chapter 12. Mobility of Trace Elements in Agricultural Soils- Chapter 13. The effects of nutrient enrichment on nutrient-poor ecosystems: Insights from the study of serpentine soil plant relations -- Chapter 14. Soil Erosion and Sedimentation - A Source of Contamination and Impact on Agriculture Productivity -- Chapter 15. Plastics in the Soil Environment: An Overview -- Chapter 16. Lead and cadmium contamination in the soil environment: Impacts on plant growth and human health -- Chapter 17. Heavy metals contamination on farmlands in the crude oil exploration area -- Chapter 18. Effect of Trace Elements in Soils and Its Management -- Chapter 19. Remediation of Agrochemicals in Soil and Environment -- Chapter 20. Alleviation in the Toxicity of Heavy Metals on Agricultural Crops by Metal Resistant Bacteria -- Chapter 21. Bioremediation Strategies to Mitigate the Impact of Atrazine in the Environment: Recent Advances and Prospects. Chapter 22. Aspergillus Mediated Bioremediation of Agrochemicals- Current Progress and Future Perspectives -- Chapter 23. Implications of Phytohormones as Agro-chemicals under Dynamic Environmental Conditions -- Chapter 24. Role of Genetically Modified Bacteria for Alleviating of Agrochemical Impact on the Environment -- Chapter 25. ‘Omics Perspective’ - Molecular Blue-print for Agrochemical Remediation -- Chapter 26. Impact and Remediation of Agrochemicals in Soil and Environment: Conclusions and Future Perspectives.
    Abstract: This volume ‘Agrochemicals in Soil and Environment: Impacts and Remediation’ is a comprehensive collection of important literature on agrochemical contamination. The main focus of this book is to point out undesirable changes in biological, physical and chemical characteristics of agricultural soils and its impacts on global agricultural crop productivity. Soil is one of the important resources of basic needs for our sustenance but due to various anthropogenic activities like urbanization and industrialization, the soil is losing its basic quality characteristics. Soil microorganisms, water holding capacity, minerals, salts and nutrients are under the direct threat due to agrochemicals therefore, agricultural sector is facing a serious challenge. Lack of proper knowledge and luxurious applications of agrochemicals resulting into degradation and deterioration of soil quality, loss of soil and crop productivity and threatening the food security. Therefore, it is imperative to develop indices, indicators and soil parameters for the monitoring and impact assessment of agricultural contaminants. Further, biotic and abiotic stresses and their tolerance mechanisms in plants in relation to the soil contaminants such as toxic pollutants, heavy metals, inorganic and organic matters, variety of pesticides, insecticides, herbicides, agricultural runoffs and solid wastes, and chemical fertilizers are also highlighted in this volume. This book also discusses causes of reduced agriculture productivity and suggests sustainable measures such as plant-based technologies, bioremediation and nanotechnology, that can be used to overcome the crop losses. The book is interest to research students, teachers, agricultural scientists, agronomists, environmentalists as well as policy makers.
    Type of Medium: Online Resource
    Pages: XXVI, 612 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811693106
    DDC: 580
    Language: English
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  • 3
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Chapter 1. Genome and Transcriptome of Amaranth Species -- Chapter 2. Organelle Genomics: The Chloroplast Genome of Amaranth -- Chapter 3. Genetic and Phenotypic Odyssey: Voyage of the Grain Amaranths from the Americas to the Old World -- Chapter 4. Genetics of Betalain Pigments in Amaranth Species -- Chapter 5. Molecular Characterization of Seed Storage Proteins (SSPs) in Grain Amaranth -- Chapter 6. Genetic Diversity in Amaranth and its Close Relatives -- Chapter 7. Searching for an Identity: Functional Characterization of Taxonomically Restricted Genes in Grain Amaranth -- Chapter 8. How to Overcome Recalcitrance? Novel Strategies and Recent Advances in the Genetic Transformation of Grain Amaranth -- Chapter 9. Polyploidy and Hybridization for Amaranth Crop Improvement -- Chapter 10. Amaranth Transcription Factors in Response to Biotic and Abiotic Stresses.
    Abstract: This book describes the development of genetic resources in amaranths, with a major focus on genomics, reverse, and forward genetics tools and strategies that have been developed for crop improvement. Amaranth is an ancient crop native to the New World. Interest in amaranths is being renewed, due to their adaptability, stress tolerance, and nutritional value. There are about 65 species in the genus, including Amaranthus caudatus L., A. cruentus L., and A. hypochondriacus L., which are primarily grown as protein-rich grains or pseudocereals. The genus also includes major noxious weeds (e.g., A. palmeri). The amaranths are within the Caryophyllales order and thus many species (e.g., A. tricolor) produce red (betacyanin) or yellow (betaxanthin) betalain pigments, which are chemically distinct from the anthocyanins responsible for red pigmentation in other plants. A. hypochondriacus, which shows disomic inheritance (2n = 32; n= 466 Mb), has been sequenced and annotated with 23,059 protein-coding genes. Additional members of the genus are now also been sequenced including weedy amaranths, other grain amaranths, and their putative progenitors.
    Type of Medium: Online Resource
    Pages: XVII, 181 p. 53 illus., 45 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030723651
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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  • 4
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Chapter 1. Brassica juncea: A Crop for Food and Health -- Chapter 2. Botanical Descriptions of Brassica juncea: Taxonomy, Cytology, Cytogenetics and Phylogenetic Relationships -- Chapter 3. Chemical Composition of Oil and Cake of Brassica juncea: Implications on Human and Animal Health -- Chapter 4. Genepools of Brassica -- Chapter 5. Genetic Diversity Characterization and Population Structure in Brassica juncea -- Chapter 6. Classical Genetics and Traditional Breeding in Brassica juncea -- Chapter 7. Heteroploidy in Brassica juncea: Basics and Applications -- Chapter 8. Introgression Breeding in Brassica juncea -- Chapter 9. In vitro Culture for Micropropagation, Somatic Embryogenesis, Somatic Mutation, and Somatic Hybridization in Brassica juncea -- Chapter 10. Genetic Modification of Brassica juncea: Current Scenario and Future Prospects -- Chapter 11. Molecular Linkage Mapping in Brassica juncea: Founding the basis for Marker Assisted Selection -- Chapter 12. Brassica juncea Genome Sequencing: Structural and Functional Insights -- Chapter 13. Brassica juncea Genome Assemblies – Characteristics and Utilization -- Chapter 14. Resequencing in Brassica juncea for Elucidation of Origin and Diversity -- Chapter 15. Large Scale Genome Analysis: Genome Sequences, Chromosomal Reorganization, and Repetitive DNA in Brassica juncea and Relatives -- Chapter 16. Brassica juncea L. : Chloroplast Genome -- Chapter 17. Transcriptomics Research and Resources in Brassica spp -- Chapter 18. Metabolomics of Brassica juncea -- Chapter 19. Proteomics Approach to Uncoverkey Signaling Pathways in Brassica juncea in Abiotic and Biotic stress -- Chapter 20. Genomics Approaches to Understand the Evolution of Brassica juncea -- Chapter 21. Regulatory Genes in Development and Adaptation, and Their Utilization in Trait Improvementin Brassica juncea: Challenges and Opportunities -- Chapter 22. Advanced Molecular Breeding for Yield -- Chapter 23. Advanced Breeding for Oil and Oil Cake Quality in Brassica juncea -- Chapter 24. Advances in Breeding Strategies for Improving Stress Tolerance in Brassicas -- Chapter 25. Genome Editing in Polyploid Brassica Crops.
    Abstract: This book is the first comprehensive compilation of deliberations on elucidation and augmentation of the genome of Brassica juncea, one of the leading oilseed crops of the world, popularly called as brown mustard, Indian mustard, Chinese mustard, or Oriental mustard. It includes discussions on genepools; genetic diversity and its characterization; classical genetic and traditional breeding; basics and application of heteroploidy; techniques and applications of introgressive hybridization; in vitro culture for micro-propagation, somatic mutation, somatic embryogenesis, and somatic hybridization; genetic engineering including genetic transformation and gene silencing; and molecular genetic mapping and mapping of genes and comprehensive delineations on genome sequencing and comparative genomics; resequencing for elucidation of origin and diversity; large-scale genome analysis; plastid genome sequence; transcriptomics; metabolomics; proteomics; evolutionary genomics; role of regulatory genes in development and adaptation and their utilization in trait improvement; precise breeding for yield, quality, and resistance to biotic and abiotic stresses; and prospects of genome editing.
    Type of Medium: Online Resource
    Pages: XXXVII, 491 p. 36 illus., 31 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030915070
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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  • 5
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Agricultural biotechnology. ; Biotechnology. ; Soil science. ; Botany. ; Environment. ; Agricultural Biotechnology. ; Biotechnology. ; Soil Science. ; Plant Science. ; Environmental Sciences.
    Description / Table of Contents: 1. Introduction -- 2. Biotechnology of 21st Century -- 3. Considerations on the Scaling of biological and chemical reactors -- 4. Design of a cultivation media for the production of metabolites with practical application in the biodegradation of industrial dyes -- 5. Obtaining and characterizing new biomaterials based on starch, for use in the food and health industry -- 6. Influence of immersion time in pitahaya (Hylocereus undatus) proteolytic enzyme solutions on the texture of bovine meat -- 7. Determination of free amino acids in fermented and toasted cocoa (Theobroma cacao) samples, using high performance liquid chromatography with UV detection by diode arrangement -- 8. Characterization of cassava and bee wax residues for their use in the obtaining of bioplastic -- 9. Development of a thermoplastic material from the residues of the banana (Musa paradisiaca) -- 10. Chemical ecology and its role in the conservation of threatened species: a case study in the Galapagos islands -- 11. Energy evaluation of solid biofuels made from mixtures of lignocellulosic biomass -- 12. Reforestation and conservation of vegetable germ plasm: challenges and expectations -- 13. Characterization of Moniliophthora roreri evans and evaluation of biological control alternatives in cacao (Theobroma cacao), for the Ecuadorian amazon -- 14. Application of biotechnology to the search and selection of PGPR in the control of phytosanitary problems in cocoa (Theobroma cacao) and banana (Musa acuminata) -- 15. Sustainability of organic quinoa cultivation (Chenopodium quinoa) in communities of colta Ecuador -- 16. Effects of artificial light intensity and temperature on the growth of lettuce (Lactuca sativa l.) in a vertical urban farm in low cost indoor -- 17. Efficiency of led lights in the propagation and field of summer flowers in Ecuador -- 18. Evaluation of extraction methods to obtain a natural flocculant from the tamarind seed (Tamarindus indica) -- 19. Bicomponent adsorption of Brilliant blue FCF and tartrazine under dynamic conditions using rice husk -- 20. Kinetic approach to the biocoagulation process of mixtures of Moringa oleífera and Caesalpinia spinosa in synthetic turby water -- 21. Sustainable alternatives in the treatment of liquid industrial waste -- 22. Biodegradation of industrial dyes with enzymatic extracts obtained in FES and FEL systems with Pleurotus djamor -- 23. Removal of petroleum hydrocarbons from medium and soil (lab & field conditions) by microorganisms isolated from the Ecuadorian amazon rainforest -- 24. Chemistry of natural products -- 25. Evaluation of the antimicrobial activity of natural extracts of altamisa (Ambrosia artemisiifolia) and melissa (Melissa officinallis) for the control of pathogenic agents -- 26. Phenolic compounds of cocoa (Theobroma cacao) shell extraction and antimicrobial activity -- 27. Susceptibility to antimicrobials in strains of environmental origin, a public health problem -- 28. Inhibition effect of oregano (Origanum vulgare) essential oil on an active biodegradable film -- 29. Current Challenges and Future Prospective of Biotechnology.
    Abstract: This contributed volume compiles the latest improvements in the field of biotechnology. It focuses on topics that comprises industrial, environment, agricultural and medical related issues to technology and biological studies and exhibits the correlation between the biological world and the dependence of humans on it. The book is organized into five parts covering the role of biotechnology in industrial products, environmental remediation, agriculture and pharmacological agents. Ranging from micro-scale studies to macro, it covers a huge domain of agricultural biotechnology and focuses on important commercial crops (e.g. cacao and coffee), arbuscular mycorrhizal fungi, flow and distribution of phosphorus in agricultural soils in the Latin American region. Overall, the book portrays the importance of modern biotechnology and its role in solving the problems in modern day life. The book is a ready reference for practicing students, researchers of environmental engineering, chemical engineering, agricultural engineering, and other allied fields likewise.
    Type of Medium: Online Resource
    Pages: XXII, 448 p. 67 illus., 55 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030801083
    DDC: 630
    Language: English
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  • 6
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Chapter 1. Economic Value and Research Significance of Moso Bamboo -- Chapter 2. Moso Bamboo Germplasm Resources in China/World -- Chapter 3. Biological Traits of Moso Bamboo -- Chapter 4. Moso Bamboo Genome -- Chapter 5. Moso Bamboo Transposon -- Chapter 6. Transcriptome of Moso Bamboo -- Chapter 7. Moso Bamboo Alternative Splicing (AS ) and Polyadenylation -- Chapter 8. Characterizations and Function of Transcript Factor Gene families -- Chapter 9. MicroRNAs of Moso Bamboo -- Chapter 10. Mitochondrial Genome of Endophytic Fungi from the Seed of Moso Bamboo -- Chapter 11. Breeding Strategies of Moso Bamboo.
    Abstract: This book is the first comprehensive compilation describing the botanical traits, genetic resources, whole genome sequencing, Mitochondrial genome, transcriptomes of different organs with developmental stages, transcription factors, delineating gene evolution of gene family in Bambusoideae, alternative splicing (AS) and polyadenylation, case studies for economically important traits such as internode length, shoot fast growing, flowering, ageing and stress-resistant genes and small RNAs-mediated gene regulation of moso bamboo flowering and other developmental stages. Applications of transcriptome and genome approaches in moso bamboo in general and the prospects of transgenic breeding and genome editing technologies in bamboo are also discussed. Altogether, the book comprises eleven chapters covered over 200 pages authored by the researchers involved in genomic science, molecular biology, and breeding. This book appeals to graduate students, post-graduate students, research scholars, researchers, and industry players in the field of plantation bamboo in general, bamboo processing and bamboo garden owner and fans of bamboo culture in particular.
    Type of Medium: Online Resource
    Pages: XXII, 208 p. 124 illus., 110 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030808365
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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  • 7
    Online Resource
    Online Resource
    Singapore :Springer Nature Singapore :
    Keywords: Botany. ; Anatomy. ; Biotechnology. ; Plant Science. ; Anatomy. ; Biotechnology.
    Description / Table of Contents: Chapter 1. Introduction -- Chapter 2. History of Biodiesel -- Chapter 3. Anacardiaceae -- Chapter 4. Apocynaceae -- Chapter 5. Arecaceae -- Chapter 6. Asteraceae -- Chapter 7. Betulaceae -- Chapter 8. Brassicaceae -- Chapter 9. Caryocaraceae -- Chapter 10. Chrysobalanaceae -- Chapter 11. Clusiaceae -- Chapter 12. Combretaceae -- Chapter 13. Compositae -- Chapter 14. Cornaceae -- Chapter 15. Cucurbit -- Chapter 16. Cyperaceae -- Chapter 17. Dipterocarpaceae -- Chapter 18. Euphorbiaceae -- Chapter 19. Fabaceae -- Chapter 20. Irvingiaceae -- Chapter 21. Linaceae -- Chapter 22. Magnoliaceae -- Chapter 23. Malvaceae -- Chapter 24. Meliaceae -- Chapter 25. Nyssaceae -- Chapter 26. Oleaceae -- Chapter 27. Papavaraceae -- Chapter 28. Pedaliaceae -- Chapter 29. Poaceae -- Chapter 30. Putranjivaceae -- Chapter 31. Rosaceae -- Chapter 32. Rutaceae -- Chapter 33. Salicaceae -- Chapter 34. Salvadoraceae -- Chapter 35. Sapindaceae -- Chapter 36. Sapotaceae -- Chapter 37. Schisandraceae -- Chapter 38. Simaroubaceae -- Chapter 39. Simmondsiaceae -- Chapter 40. Solanaceae -- Chapter 41. Sterculiaceae -- Chapter 42. Theaceae -- Chapter 43. Zygophyllaceae -- Chapter 44. Catalyst for Transesterification -- Chapter 45. Standards for Biodiesel.
    Abstract: This book offers an exhaustive coverage of process modifications in biodiesel production from oil drawn from 84 oleaginous plant species occurring in all parts of the world, thereby enlisting the scope and potential of many new and non-conventionally obscure plant sources. Biodiesel, now prepared from major vegetable oils, has become a compulsion to offset the dwindling reserve of petro-diesel, which naturally intrudes into the cooking oil demand. This has necessitated search for new sources. The book consolidates the biodiesel production from oils being extracted from conventional plants and also from a plethora of new and non-conventional plants along with their habit and habitats, history of biodiesel’s invention, explanation on species-wise biodiesel process variables, catalytic inclusions, global standards, fuel properties varying with species, blending benefits, cost effectiveness, shelf life, ignition characteristics, fuel consumption and engine performances with eco-friendly exhaust. This book is of immense use to teachers, researchers, scientists of climatology and carbon footprint, energy consultants, fuel chemists, students of agriculture and forestry, automobile engineering, industrial chemistry, environmental sciences and policy makers or anyone who wishes to scale up the biodiesel industry.
    Type of Medium: Online Resource
    Pages: XXIV, 675 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811647758
    DDC: 580
    Language: English
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  • 8
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Genomic Designing For Abiotic Stress Tolerant Soybean -- Designing the Rapeseed Genome for Abiotic Stress Tolerance -- Sunflower and Abiotic Stress: Genetics and Breeding for Resistance in the Post-Omics Era -- Integration of Genomics Approaches in Abiotic Stress Tolerance in Groundnut (Arachis hypogaea L.): An overview -- Drought Tolerance in Rape and Mustard: Conventional and Molecular Approaches -- Genomic Designing For Sesame Resistance To Abiotic Stresses -- Abiotic Stresses in Castor Plant -- Designing Genomic Solutions to Enhance Abiotic Stress Resistance in Flax.
    Abstract: This book presents deliberations on molecular and genomic mechanisms underlying the interactions of crop plants to the abiotic stresses caused by heat, cold, drought, flooding, submergence, salinity, acidity, etc., important to develop resistant crop varieties. Knowledge on the advanced genetic and genomic crop improvement strategies including molecular breeding, transgenics, genomic-assisted breeding, and the recently emerging genome editing for developing resistant varieties in oilseed crops is imperative for addressing FHNEE (food, health, nutrition, energy, and environment) security. Whole genome sequencing of these crops followed by genotyping-by-sequencing has provided precise information regarding the genes conferring resistance useful for gene discovery, allele mining, and shuttle breeding which in turn opened up the scope for 'designing' crop genomes with resistance to abiotic stresses. The eight chapters each dedicated to a oilseed crop in this volume elucidate on different types of abiotic stresses and their effects on and interaction with the crop; enumerate on the available genetic diversity with regard to abiotic stress resistance among available cultivars; illuminate on the potential gene pools for utilization in interspecific gene transfer; present brief on classical genetics of stress resistance and traditional breeding for transferring them to their cultivated counterparts; depict the success stories of genetic engineering for developing abiotic stress-resistant crop varieties; discuss on molecular mapping of genes and QTLs underlying stress resistance and their marker-assisted introgression into elite varieties; enunciate on different genomics-aided techniques including genomic selection, allele mining, gene discovery, and gene pyramiding for developing adaptive crop varieties with higher quantity and quality of yields, and also elaborate some case studies on genome editing focusing on specific genes for generating abiotic stress-resistant crops. .
    Type of Medium: Online Resource
    Pages: XXIII, 283 p. 18 illus., 16 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030900441
    DDC: 580
    Language: English
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  • 9
    Keywords: Botany. ; Agriculture. ; Genetics. ; Biotechnology. ; Plant Science. ; Agriculture. ; Genetics and Genomics. ; Biotechnology.
    Description / Table of Contents: Chapter 1: Breeding Field Crops – History, Current Status And Introspections -- Chapter 2: Wheat Breeding -- Chapter 3: Rice Breeding -- Chapter 4: Maize Breeding -- Chapter 5: Barley Breeding -- Chapter 6: Pearl Millet Breeding. Chapter 7: Sorghum Breeding. Chapter 8: Small Millets Breeding -- Chapter 9: Sugarcane Breeding -- Chapter 10: Jute Breeding -- Chapter 11: Cotton Breeding -- Chapter 12: Maintenance Breeding Of Pusa Basmati Varieties -- Chapter 13: Maintenance Breeding -- Chapter 14: Efficient Breeding Of Crop Plants -- Chapter 15: Brassica Breeding -- Chapter 16: Groundnut Breeding -- Chapter 17: Soybean Breeding -- Chapter 18: Castor Breeding -- Chapter 19: Sunflower Breeding -- Chapter 20: Chickpea Breeding -- Chapter 21: Pigeonpea Breeding -- Chapter 22: Mungbean Breeding -- Chapter 23: Urdbean Breeding -- Chapter 24: Lentil Breeding -- Chapter 25: Fieldpea Breeding -- Chapter 26: Lathyrus Breeding.
    Abstract: This book is an advanced textbook and a reference book for the post-graduate plant-breeding students and the plant breeders. It consolidates fundamental concepts and also the latest advances in plant-breeding practices including development in crop genomics. It contains crop wise explanation on origin, reproduction, genetics of yield contributing traits, biotic and abiotic stresses, nutritional improvement and crop specific plant-breeding procedures and techniques. The chapters are planned to describe crop-focused breeding procedure for the major crop plants as per their economic importance. The recent developments in breeding of field crops have been reported. The recent progress made in mapping traits of economic importance has been critically reviewed for each crop. The progress made in markers assisted selected in few crops has been summarized. This book bridges the knowledge gap and bring to the researchers and students information on modern breeding tools for developing biotic and abiotic stress tolerant, climate resilient and micronutrient rich varieties of field crops. The chapters in book are contributed by experienced Plant Breeders.
    Type of Medium: Online Resource
    Pages: XIV, 1389 p. 109 illus., 98 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811692574
    DDC: 580
    Language: English
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  • 10
    Online Resource
    Online Resource
    Singapore :Springer Nature Singapore :
    Keywords: Agriculture. ; Microbiology. ; Biotechnology. ; Botanical chemistry. ; Agriculture. ; Microbiology. ; Biotechnology. ; Plant Biochemistry.
    Description / Table of Contents: Chapter 1. Plant Biostimulants: Overview of categories and effects -- Chapter 2. Biostimulant potential of seaweed extracts derived from Laminaria and Ascophyllum nodosum -- Chapter 3. Borage extracts as biostimulants of plant growth and development -- Chapter 4. Simple organic acids as plant biostimulants -- Chapter 5. Animal-derived hydrolyzed protein and its biostimulant effects:In: Biostimulants: exploring sources and applications -- Chapter 6. Protein hydrolysates as Biostimulants of Plant Growth and Development -- Chapter 7. Biostimulants and their extraction from food and agro based industries -- Chapter 8. FOLIAR APPLICATION OF MICROBIAL AND PLANT BASED BIOSTIMULANTS ON PLANT NUTRITION -- Chapter 9. The role of biostimulants in plant growth, development and abiotic stress management: recent insights -- Chapter 10. Role of Biostimulants in Agriculture -- Chapter 11 Biostimulants: Emerging trend and opportunities.
    Abstract: This edited book is a comprehensive compilation highlighting sources of biostimulants, their production, influence on plant growth and development, and regulatory status of plant biostimulants for better understanding and opening new vistas for future research. Biostimulants, the biological formulations are known to meliorate the plants growth and vigour, improve nutritional efficiency along with maintaining their well-being mainly via providing protection against a wide range of infections. Both horticultural as well as agricultural crops involve the utilization of the biostimulants. Fulvic and humic acids, nitrogen-containing compounds, protein hydrolysates, favourable bacteria and fungi, and extracts of seaweed are the chief active components of these. The major driving force for these materials is the organic farming industry and demand for sustainable crop production. This book will be of great interest to researchers, teachers, climate change scientists, capacity builders, and policy makers. Moreover, this book does the work of a supplementary reading for students in various fields such as agriculture, soil science, ecology, environmental science and forestry at undergraduate as well as graduate level. This will be a gainful read for national and international agricultural scientists and the policy makers. • Elaborates on biostimulants induced influence of plant growth and development • Covers all aspects of biostimulants sources and its role in plant life in detail • Discusses evidence based approach in biostimulants sources and its useful applications in plants .
    Type of Medium: Online Resource
    Pages: XII, 290 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811670800
    Series Statement: Plant Life and Environment Dynamics,
    DDC: 630
    Language: English
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  • 11
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Genomic Improvement of Rice for Drought, Aluminum, and Iron Toxicity Stress Tolerance -- Advances In Breeding For Abiotic Stress Tolerance in Wheat -- Resistance to Abiotic Stress: Theory and Applications in Maize Breeding -- Genetic Diversity for Barley Adaptation to Stressful Environments -- Advances in Genomic Designing for Abiotic Stress Tolerance in Sorghum -- Genomic Designing for Abiotic Stress Tolerance in Pearl Millet -- Genomic Designing for Abiotic Stress Tolerance in Foxtail millet -- Genomic-Assisted Breeding in Finger Millet.
    Abstract: This book presents abiotic stresses that cause crop damage in the range of 6-20%. Understanding the interaction of crop plants to the abiotic stresses caused by heat, cold, drought, flooding, submergence, salinity, acidity, etc., is important to develop resistant crop varieties. Knowledge on the advanced genetic and genomic crop improvement strategies including molecular breeding, transgenics, genomic-assisted breeding, and the recently emerging genome editing for developing resistant varieties in cereal crops is imperative for addressing FPNEE (food, health, nutrition, energy, and environment) security. Whole genome sequencing of these crops followed by genotyping-by-sequencing has facilitated precise information about the genes conferring resistance useful for gene discovery, allele mining, and shuttle breeding which in turn opened up the scope for 'designing' crop genomes with resistance to abiotic stresses. The nine chapters each dedicated to a cereal crop in this volume are deliberate on different types of abiotic stresses and their effects on and interaction with crop plants; enumerate on the available genetic diversity with regard to abiotic stress resistance among available cultivars; illuminate on the potential gene pools for utilization in interspecific gene transfer; are brief on the classical genetics of stress resistance and traditional breeding for transferring them to their cultivated counterparts; elucidate on the success stories of genetic engineering for developing abiotic stress-resistant crop varieties; discuss on molecular mapping of genes and QTLs underlying stress resistance and their marker-assisted introgression into elite varieties; enunciate on different emerging genomics-aided techniques including genomic selection, allele mining, gene discovery, and gene pyramiding for developing adaptive crop varieties with higher quantity and quality, and also elaborate some case studies on genome editing focusing on specific genes for generating abiotic stress-resistant crops. .
    Type of Medium: Online Resource
    Pages: XXIV, 317 p. 24 illus., 22 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030758752
    DDC: 580
    Language: English
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  • 12
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Chapter 1. Economic Importance, Practical Limitations to Production, Management and Breeding Targets of Alfalfa -- Chapter 2. Factors Influencing Yield and Quality -- Chapter 3. The Origin, Evolution and Genetic Diversity of Alfalfa -- Chapter 4. Germplasm Collection, Genetic Resources and Gene Pools in Alfalfa -- Chapter 5. Biotechnology Advances in Alfalfa -- Chapter 6. Sequencing, Assembly and Annotation of the Alfalfa Genome -- Chapter 7. Transcription Factors in Alfalfa (Medicago sativa L.): Genome-Wide Identification and a Web Resource Center AlfalfaTFDB -- Chapter 8. Genomics of Forage Quality in Alfalfa -- Chapter 9. Physiological, Morphological, Biochemical, and Genetic Responses of Alfalfa to Salinity -- Chapter 10. Developing SNPs and Strategies for Genomic Analysis in Alfalfa -- Chapter 11. Genomics Resources for Breeding in Alfalfa: Availability, Utility, and Adoption -- Chapter 12. Genomic Selection for Higher Yield and Quality in Alfalfa -- Chapter 13. Identification and Characterization of Disease Resistance Genes in Alfalfa and Medicago truncatula for Breeding Improved Cultivars -- Chapter 14. Genetic and Genomic Assessments for Improving Drought Resilience in Alfalfa -- Chapter 15. Self-Incompatibility, Inbreeding Depression, and Potential to Develop Inbred Lines in Alfalfa -- Chapter 16. Targeted Mutagenesis of Alfalfa.
    Abstract: This book is the first comprehensive compilation of deliberations on whole genome sequencing of the diploid and tetraploid alfalfa genomes including sequence assembly, gene annotation, and comparative genomics with the model legume genome, functional genomics, and genomics of important agronomic characters. Other chapters describe the genetic diversity and germplasm collections of alfalfa, as well as development of genetic markers and genome-wide association and genomic selection for economical important traits, genome editing, genomics, and breeding targets to address current and future needs. Altogether, the book contains about 300 pages over 16 chapters authored by globally reputed experts on the relevant field in this crop. This book is useful to the students, teachers, and scientists in the academia and relevant private companies interested in genetics, breeding, pathology, physiology, molecular genetics and breeding, biotechnology, and structural and functional genomics. The work is also useful to seed and forage industries.
    Type of Medium: Online Resource
    Pages: XXV, 283 p. 64 illus., 52 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030744663
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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  • 13
    Keywords: Agricultural biotechnology. ; Nanobiotechnology. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Agricultural Biotechnology. ; Nanobiotechnology. ; Environmental Engineering/Biotechnology.
    Description / Table of Contents: Preface -- Biobased Nanotechnology for Green Applications -- Characterization and Biocompatibility of a Poly Lactic Acid (PLA) 3D-Printed Scaffold -- Implications of Nanoscopic Surface Modification on Protein Adsorption and Cell Adhesion -- Biosurfactant-Based Nanoscale Micelles Extraction of Bio-Molecules -- Nanoemulsion of Herbal Bioactives -- Current Aspects of Nanotechnology in Agriculture -- Novel Strategies for Environmental Remediation of Pesticides Using Nano-Catalysts -- Bio-Nanoconjugates for Their Potential Role in Medical Science and Pharmaceuticals -- Enzymes in Nanoemulsion: A Way Forward for the Bioremediation of Organopollutants -- Biochar-Based Nanocomposites: A Sustainable Solution for Wastewater Treatment -- Bacteriocins as Nanoparticle Forms and Their Applications -- Dry Deposition of Atmospheric Nanoparticles -- Carbon Dots and Their Theranostic Applications -- Magnetic Nanoparticlles from Bacteria -- Exploring the Protective Efforts of Silver Nanoparticles as Bionanofungicide Against Soil-Borne Sclerotium rolfsii Infection in Wheat Plants -- A Green Synthetic of Magnetite Nanoparticles to Treat Heavy Metal Stress in Oryza sativa L. -- Synthesis of Novel Metal/Metal Oxide-Based Nanomaterials Using Plant Sources and Their Potential Environmental Applications -- Structural Model and Diagram Electro-Magnetoelastic Actuator for Nanobiotechnology -- Bionanocomposites for Green Applications -- Importance of Nanotechnologies in Changing Climatic Conditions -- Nanotechnology for Biofuels: Progress and Pitfalls -- Metal Organic Framework Nanomaterials -- Nanobubble Liposome Complexes: Significance in Diagnostic Imaging and Ultrasound-Triggered Drug Delivery -- Benefits of Chitosan-Based and Cellulose-Based Nanocomposites in Food Protection and Food Packaging -- Index.
    Abstract: Investigation on biobased nanomaterials has provided new insights into the rapidly advancing fields of the biomedical and environmental sciences by showing how these nanomaterials are effective in biomedicine and environmental remediation. These particles hold tremendous prospective applications, and are likely to become the next generation of particles in these areas. As such, research is ongoing and the data generated should have the potential for a sustainable future in both the environmental and biomedical fields. This book presents important findings on the role of and identification of novel applications of biobased nanomaterials. Unlike other books in this field, this book focuses entirely on sustainable application and remediation in biomedicine and environmental science. The chapters are written in such a way as to make them accessible to the reader, and furthermore, the volume can be readily adopted as a reference, or used as a guide for further research. This project was based on recent research (the last 5 years) and developed through an extensive literature search. The editors have also compiled some advanced, outstanding texts that should be of benefit to graduate students in their research.
    Type of Medium: Online Resource
    Pages: XX, 668 p. 89 illus., 66 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030619855
    Series Statement: Nanotechnology in the Life Sciences,
    DDC: 630
    Language: English
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  • 14
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Tomato -- Potato -- Capsicums -- Eggplant -- Vegetable Brassica -- Cucurbits -- Allums -- Amaranth.
    Abstract: This book presents deliberations on molecular and genomic mechanisms underlying the interactions of crop plants to the abiotic stresses caused by heat, cold, drought, flooding, submergence, salinity, acidity, etc., important to develop resistant crop varieties. Knowledge on the advanced genetic and genomic crop improvement strategies including molecular breeding, transgenics, genomic-assisted breeding, and the recently emerging genome editing for developing resistant varieties in vegetable crops is imperative for addressing FHNEE (food, health, nutrition, energy, and environment) security. Whole genome sequencing of these crops followed by genotyping-by-sequencing has provided precise information regarding the genes conferring resistance useful for gene discovery, allele mining, and shuttle breeding which in turn opened up the scope for 'designing' crop genomes with resistance to abiotic stresses. The nine chapters each dedicated to a vegetable crop or crop group in this volume elucidate on different types of abiotic stresses and their effects on and interaction with the crop; enumerate on the available genetic diversity with regard to abiotic stress resistance among available cultivars; illuminate on the potential gene pools for utilization in interspecific gene transfer; present brief on classical genetics of stress resistance and traditional breeding for transferring them to their cultivated counterparts; depict the success stories of genetic engineering for developing abiotic stress-resistant crop varieties; discuss on molecular mapping of genes and QTLs underlying stress resistance and their marker-assisted introgression into elite varieties; enunciate on different genomics-aided techniques including genomic selection, allele mining, gene discovery, and gene pyramiding for developing adaptive crop varieties with higher quantity and quality of yields, and also elaborate some case studies on genome editing focusing on specific genes for generating abiotic stress-resistant crops.
    Type of Medium: Online Resource
    Pages: XXIII, 324 p. 16 illus., 13 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031039645
    DDC: 580
    Language: English
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  • 15
    Online Resource
    Online Resource
    Berlin, Heidelberg :Springer Berlin Heidelberg :
    Keywords: Agriculture. ; Environmental economics. ; Agriculture Economic aspects. ; Energy policy. ; Energy and state. ; Biotechnology. ; Ecology . ; Agriculture. ; Environmental Economics. ; Agricultural Economics. ; Energy Policy, Economics and Management. ; Biotechnology. ; Ecology.
    Description / Table of Contents: Chapter 1: Introduction -- Chapter 2: The origin of biomass -- Chapter 3: Food security and healthy nutrition in the context of the bioeconomy -- Chapter 4: The use of biomass for the production of fuel and chemicals -- Chapter 5: The importance of biotechnology for bioeconomy -- Chapter 6: The bioeconomy from the point of view of the innovation economy -- Chapter 7: Bioeconomy as a circular and integrated system -- Chapter 8: Criteria for the success of the bioeconomy -- Chapter 9: The conditions of a sustainable bioeconomy -- Chapter 10: Bioeconomy – Key to unlimited economic and consumer growth?.
    Abstract: This book provides an interdisciplinary and comprehensible introduction to bioeconomy. It thus offers basic knowledge for understanding a transformation process that will shape the 21st century and requires the integration of many, so far unrelated disciplines and industries. We are talking about the gradual and necessary transition from the age of fossil fuels, which began around 200 years ago, to a global economy based on renewable raw materials (and renewable energies). The success of this transition is key to coping with the challenge of climate change. This book conceives the realization of bioeconomy as a threefold task – a scientific, an economic and an ecological one. · Where does the biomass come from that we need primarily for feeding the growing world population but also for future energy and material use? How can it be processed in biorefineries and what role does biotechnology play in this regard? · Which aspects of innovation economics need to be considered, which economic aspects of value creation, competitiveness and customer acceptance are important? · What conditions must a bioeconomy fulfil in order to enable a sustainable development of life on earth? May it be regarded as a key to further economic growth or shouldn’t it rather orient itself towards the ideal of sufficiency? By dealing with these questions from the not necessarily consistent perspectives of proven experts, this book provides an interdisciplinary overview of a dynamic field of research and practice that raises more questions than answers and thus may nurture the motivation of many more people to seriously engage for the realization of a bioeconomy.
    Type of Medium: Online Resource
    Pages: XIII, 214 p. 170 illus., 168 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783662603901
    DDC: 630
    Language: English
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  • 16
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Genomics of Abiotic Stress Resistance in Malus domestica -- Genomic Designing for Abiotic Stress Resistant Banana -- Genetic Improvement of Citrus Limon (L. Burm f.) for Resistance to Mal Secco Disease -- Genomic Designing for Abiotic Stress Resistant Grapevine -- Wild and Related Species as a Breeding Source for Abiotic Stress Resistance of Peach Cultivars and Rootstocks -- Genomic Designing of new Almond-Peach Rootstock-variety Combinations Resistance to Plum pox virus -- Genomic Designing of New Plum Pox Virus Resistant Plumcot -- Integrated Genomic Designing and Insights for Disease Resistance and Crop Protection against Pathogens in Cherry -- Development of Abiotic Stress Tolerant Berries.
    Abstract: This book presents deliberations on molecular and genomic mechanisms underlying the interactions of crop plants to the abiotic stresses caused by heat, cold, drought, flooding, submergence, salinity, acidity, etc., important to develop resistant crop varieties. Knowledge on the advanced genetic and genomic crop improvement strategies including molecular breeding, transgenics, genomic-assisted breeding, and the recently emerging genome editing for developing resistant varieties in fruit crops is imperative for addressing FHNEE (food, health, nutrition, energy, and environment) security. Whole genome sequencing in many of these crops followed by genotyping-by-sequencing has provided precise information regarding the genes conferring resistance useful for gene discovery, allele mining, and shuttle breeding which in turn opened up the scope for 'designing' crop genomes with resistance to abiotic stresses. The seven chapters each dedicated to a fruit crop and a fruit crop group in this volume elucidate different types of abiotic stresses and their effects on and interaction with the crops; enumerate the available genetic diversity with regard to abiotic stress resistance among available cultivars; illuminate the potential gene pools for utilization in interspecific gene transfer; present brief on classical genetics of stress resistance and traditional breeding for transferring them to their cultivated counterparts; depict the success stories of genetic engineering for developing abiotic stress-resistant crop varieties; discuss on molecular mapping of genes and QTLs underlying stress resistance and their marker-assisted introgression into elite varieties; enunciate different genomics-aided techniques including genomic selection, allele mining, gene discovery, and gene pyramiding for developing adaptive crop varieties with higher quantity and quality of yields, and also elaborate some case studies on genome editing focusing on specific genes for generating abiotic stress-resistant crops. .
    Type of Medium: Online Resource
    Pages: XXII, 249 p. 16 illus., 15 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031098758
    DDC: 580
    Language: English
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  • 17
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Chapter 1. Teak: The King of Timbers -- Chapter 2. Teak Plantations and Wood Production -- Chapter 3. Modern Silvicultural Practices and Productivity of Teak -- Chapter 4. Analysis and Modeling of Teak growth: New Perspectives for Productivity Evaluation -- Chapter 5. Economics of Teak -- Chapter 6. Teak Biology and Ecology -- Chapter 7. Teak Wood Chemistry and Natural Durability -- Chapter 8. Wood Properties and their Variations in Teak -- Chapter 9. Seed Biology and Seed Orchard Dynamics in Teak -- Chapter 10. Clonal Teak -- Chapter 11. Clonal Characterization and Variety Registration of Teak -- Chapter 12. Genetic Diversity and Population Genetic Structure of Teak -- Chapter 13. Genetic Improvement of Teak -- Chapter 14. Molecular Physiology of Teak -- Chapter 15. Genome of Teak: Structure and Features -- Chapter 16. Functional Genomics of Teak. .
    Abstract: This book is the first comprehensive compilation of knowledge on teak biology, ecology, clonal forestry, clonal registration, seed biology, and seed orchards. The teak genetic diversity, the sequenced genome, and transcriptomes from different tissues and their implications in modern tree improvement and material selection have been comprehensively discussed. The book also presents a narrative on wood characterization, wood chemistry, modern silviculture, growth and modelling, and economics of this valued tropical species. Altogether, the book contains about 200 pages over 16 chapters authored by globally reputed experts on the relevant field in this tropical tree. This book is useful to students, teachers, and scientists, and wood-based industries are interested in forestry, biology, seed orchards, breeding, genetic diversity, molecular genetics, in vitro culture, wood chemistry, and structural and functional genomics.
    Type of Medium: Online Resource
    Pages: XXV, 265 p. 48 illus., 40 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030793111
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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  • 18
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Agriculture. ; Food science. ; Nutrition   . ; Environmental sciences Social aspects. ; Biotechnology. ; Agriculture. ; Food Science. ; Nutrition. ; Environmental Social Sciences. ; Biotechnology.
    Description / Table of Contents: 1. Harnessing the Hidden Treasures in African Yam Bean (Sphenostylis stenocarpa), An Underutilized Grain Legume with Food Security Potentials -- 2. The Role of Indigenous Food Species in Achieving Food Security in South-Eastern Nigeria -- 3. The potentials of African neglected and orphan crops in augmentation of African food security -- 4. Optimization of Soaking Condition and Drying Temperature for The Production of African Yam Beans (Sphenostylis sternocarpa) Flour -- 5. Harnessing the Potential of Underutilized Aquatic Bioresource For Food and Nutritional Security in Kenya -- 6. Exploring Some Neglected and Underutilized Root and Tuber Crops for Food Security in Nigeria -- 7. Finger Millet: A Crop with Food Security Potentials for Africans -- 8. An Exploratory Study of The Association Among Household Food Securing Activities, Gender and Health in South Africa -- 9. Exploring the Industrial Potential of The Nigerian Pumpkins (Cucurbita pepo L.) -- 10. Functional Meat and Meat Products for Sustainable African Nutrition Security -- 11. Agricultural Productivity: A Key Component of Inclusive Growth Towards Food Security -- 12. Optimal Formulation of a Composite Flour from Biofortified Cassava, Pigeonpea, and Soybean for Complementary Feeding -- 13. Gauging Food Insecurity Resilience Among Pastoral Communities: A Case Study of Kenya -- 14. Optimisation and Multiplication of Large Fulani Eco-Type Chicken for Sustainable Production and Genetic Security in Nigeria -- 15. Soil Quality Indicators; Their correlation and Role in Enhancing Agricultural Productivity -- 16. Soil Quality and Horticulture: Implication for Food Security and Safety in Nigeria -- 17. Beneficiation of castor and thorn trees as management strategy to food security -- 18. Soil Information as A Factor to Consider in Sustainable Tree Crop Production for Nutritional Security, Poverty Alleviation and Biodiversity Management in Africa -- 19. African Walnuts: A Natural Depository of Nutritional and Bioactive Compounds Essential for Food and Nutritional Security in Africa -- 20. Implications of Production, Post-harvest and Consumption of Fish on Food and Nutrition Security: Nigeria as a Focal Country -- 21. Improving Crop Physio-Biochemical Efficiency and Abiotic Resilient Crops for Alleviating Food Insecurity in Africa -- 22. Analysis of Cassava Farmers’ Response to Climate Change Adaptation: Implication for Sustainable Food Production in Nigeria -- 23. Sustainable Agriculture: A Way Out to Combat Food Insecurity and Unsafety in The Context of Climate Change in West Africa -- 24. Smart Crops for Climate Change and Food Security in Africa -- 25. Impact of Climate Change and Climate Variability on Food Safety and Occurrence of Foodborne Diseases -- 26. Management of Soil-Microorganism: Interphase for Sustainable Soil Fertility Management and Enhanced Food Security -- 27. The Relevance of Plant Breeding to Food Security in Africa -- 28. Extent, Impact and Prospects of Genetically Engineered Crops in Africa -- 29. Soil Microbes and Food Security Nexus: Imperativeness of Microbial Biotechnology -- 30. Production of Edible Oil from Microorganisms -- 31. Food Sustainability Enhancement: Plant Growth-Promoting Bacteria as Key Players in The Alleviation of Drought Stress in Plants -- 32. Molecular Markers: Potential Facilitators in Plant Breeding and Germplasm Conservation -- 33. Biofertilizer: An Eco-Friendly Approach for Sustainable Crop Production -- 34. Design and Development of a Hybrid Bio-Solar Energy Fruit Dryer -- 35. Advances in Extrusion Technology and Its Applicability to Food Processing in Developing Nations -- 36. Nanotechnology as Vehicle for Biocontrol of Plant Diseases in Crop Production -- 37. Fusarium Species and Their Associated Mycotoxins in Foods and Their Products In Africa -- 38. Application of Nanobiotechnology In Agri-Food Sector; A Promising Technique in Food Safety -- 39. Salmonella enterica Subspecies Enterica Serotypes Associated with Meat and Meat Products in African Countries: A Review -- 40. Heavy Metals Contamination of Arable Lands: A Threat to Food Security and Safety -- 41. A Step Forward Towards Food Safety from Parasite Infective Agents -- 42. African Fermented Food as Antimicrobial Agents -- 43. Risk Assessment of Human Carcinogenicity of Acrylamide in Food: Way to Reduce the Predicted Mitogenic Side Effects Through Mitigation Strategy -- 44. Safety Hazards Along Animal Food Supply Chain in Nigeria.
    Abstract: This book focuses on food security and safety issues in Africa; a continent presently challenged with malnutrition and food insecurity. The continuous increase in the human population of Africa will lead to higher food demands, and climate change has already affected food production in most parts of Africa, resulting in drought, reduced crop yields, and loss of livestock and income. For Africa to be food-secure, safe and nutritious food has to be available, well-distributed, and sufficient to meet people’s food requirements. Contributors to Food Security and Safety: African Perspectives offer solutions to the lack of adequate safe and nutritious food in sub-Saharan Africa, as well as highlight the positive efforts being made to address this lack through a holistic approach. The book discusses the various methods used to enhance food security, such as food fortification, fermentation, genetic modification, and plant breeding for improved yield and resistance to diseases. The authors emphasize the importance of hygiene and food safety in food preparation and preservation, and address how the constraints of climate change could be overcome using smart crops. As a comprehensive reference text, Food Security and Safety: African Perspectives seeks to address challenges specific to the African continent while enhancing the global knowledge base around food security, food safety, and food production in an era of rapid climate change. Professor Olubukola Oluranti Babalola (Pr.Sci.Nat, MASSAF) is the Vice President of the Organization for Women in Science for the Developing World, and a National Research Foundation rated established, scientist. She is the Research Director of Food Security and Safety at North-West University, Mmabatho, South Africa.
    Type of Medium: Online Resource
    Pages: XLVIII, 907 p. 123 illus., 91 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030506728
    DDC: 630
    Language: English
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  • 19
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Chapter 1. The Broomcorn Millet Genome -- Chapter 2. Buckwheat Genome and Genomics -- Chapter 3. Tef [Eragrostistis tef (Zucc.) Trotter] -- Chapter 4. The Apricot Genome -- Chapter 5. Chinese Jujube: Crop Background and Genome Sequencing -- Chapter 6. The Longan (Dimocarpus longan) Genome -- Chapter 7. The Mangosteen Genome -- Chapter 8. The Passion Fruit Genome -- Chapter 9. The Soursop Genome (Annona muricata L., Annonaceae) -- Chapter 10. Underutilised Fruit Tree Genomes from Indonesia -- Chapter 11. The Bambara Groundnut Genome: From the Crop to the Genome -- Chapter 12. Grasspea -- Chapter 13. The Lablab Genome -- Chapter 14. The Perennial Horse Gram (Macrotyloma axillare) Genome, Phylogeny, and Selection Across the Fabaceae -- Chapter 15. Breeding and Genomics of Pigeonpea in the Post-NGS Era -- Chapter 16. Rice Bean -- Chapter 17. The Winged Bean Genome: One Species Supermarket -- Chapter 18. Castor Bean: Recent Progress in Understanding the Genome of this Underutilized Crop -- Chapter 19. Genome Resources for Ensete Ventricosum (enset) and Related Species -- Chapter 20. Yam Genomics -- Chapter 21. The African Eggplant -- Chapter 22. Sequencing of the Bottle Gourd Genomes Enhances Understanding of the Ancient Orphan Crop -- Chapter 23. Advances and Prospects in Genomic and Functional Studies of the Aquatic Crop, Sacred Lotus -- Chapter 24. Utilising Public Resources for Fundamental Work in Underutilised and Orphan Crops.
    Abstract: This book highlights the uses for underutilized crops, presenting the state-of-the-art in terms of genome sequencing for over 30 crops, previously understudied and under-researched. In a changing climate and with significant pressure on the land, it is the ideal time to be discussing novel crops, with significant biotic and abiotic tolerances and/or rich nutrient profiles for consumers. Previously, the only species with sequenced genomes were high-profile internationally recognized crops, but in the current era genomes are being sequenced for dozens of crops, including those previously classified as underutilized, now being investigated. This book covers food crops, from fruits to tubers, and from grasses to legumes, as well as crops with non-food applications. Some of these crops have draft genomes, and others have polished genomes with extensive resequencing panels. Each chapter tells the story of an individual crop or crop group, written by experts, focusing on the genome data available, revealing more about crop domestication and genetic variation, and the current and future prospects given that this data is now becoming available. It also highlights how even small sequencing projects can provide draft genome sequences suitable for gene discovery, comparative genomics, and identification of molecular markers for understanding these crops further.
    Type of Medium: Online Resource
    Pages: XXIV, 450 p. 125 illus., 105 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031008481
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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  • 20
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Biosystematics and Botanical Descriptions of Seabuckthorn (Hippophae Sp.) in India -- Genetic Diversity, Evolution and Biogeography of Seabuckthorn -- Current Status of Chromosome-based Gender Determination in Seabuckthorn -- Analytical Techniques for the Biochemical Profiling in Seabuckthorn -- Effect of Processing and Storage on Seabuckthorn Products -- Metabolomic Diversity of Seabuckthorn Collections from Different Geographical Regions -- Deciphering the Proteomes and Nanotechnological Potential of an Unexplored Plant Seabuckthorn -- Biotechnological Approaches for Seabuckthorn Improvement -- Repertoire of Molecular Markers and their Applications in Seabuckthorn -- Barcoding-based Identification of Hippophae species -- Transcriptome Sequencing and Analysis of Seabuckthorn (Hippophae Sp.) -- Mining of Microsatellites and Transcription Factors in Seabuckthorn (Hippophae Sp.) Transcriptomes -- Frankia – The Endo-micro-symbiont of Hippophae Sp -- Medicinal and Nutraceutical Properties of Seabuckthorn -- Molecular and Cellular Mechanisms of the Anti-oxidative Activity of Seabuckthorn (Hippophae rhamnoides L.) -- Knowing More About Seabuckthorn (Hippophae rhamnoides)- A Promising Source of Safe and Effective Medical Radiation Countermeasure -- Methods in Seabuckthorn Breeding -- Global Distribution of Seabuckthorn (Hippophae Sp.) Resources and their Utilization .
    Abstract: This work is the first compilation of comprehensive deliberations on botany, cytogenetics and sex determination, genetic resources and diversity, classical breeding, molecular markers and genome sequence resources, and application of omics technology including transcriptomics, proteomics, and metabolomics resources in the multipurpose medicinal plant seabuckthorn. The book also presents a detailed narrative on antioxidative, radioprotective nutraceutical, and medicinal applications of seabuckthorn products. A detailed treatment has been included on analytical techniques and processing technologies. Altogether, the book contains about 300 pages over 17 chapters contributed by globally reputed experts on the relevant field in this important plant species. This book will be useful to the research students, teachers, and scientists in the academia and private sector engaged in horticulture, genetics, breeding, molecular biology, biotechnology, and breeding. The book will also be a useful source for workers involved in the development of plant-based medicines, nutraceuticals, therapeutics, and cosmeceuticals and extension workers involved in the development of rural farmers and small-scale industries.
    Type of Medium: Online Resource
    Pages: XXIX, 368 p. 74 illus., 63 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031112768
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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  • 21
    Keywords: Agriculture. ; Biotechnology. ; Ecology . ; Environmental engineering. ; Bioremediation. ; Agriculture. ; Biotechnology. ; Ecology. ; Environmental Engineering/Biotechnology.
    Description / Table of Contents: Section 1 An introduction to nanoagriculture, agronanobiotechnology and nanoremediation -- Chapter 1. Nanoagriculture: Advantages and drawbacks -- Chapter 2. Agronanobiotechnology: present and prospect -- Chapter 3. Nanoremediation -- Chapter 4. Cutting-edge technologies in agriculture without hampering sustainable development -- Section 2 Nanoagriculture -- Chapter 5. Controlled Delivery of Elements, Molecules, Genetic Material, or Organisms -- Chapter 6. Nanosensors for crop management -- Chapter 7. Nanotechnology for pest management -- Chapter 8. Nanotechnology in water and wastewater treatment -- Chapter 9. The contribution of the nanotechnology to the farmer wellbeing -- Section 3 Agronanobiotechnology -- Chapter 10. Magnetofection for plant breeding -- Chapter 11. Nano and OMICs technologies -- Chapter 12. Interactions between nanomaterials and plant-microbe partnership -- Chapter 13. Nanobiological pest control -- Section 4 Nanoremediation -- Chapter 14 Nanoremediation of heavy metals in agricultural soils -- Chapter 15 Nanoremediation of organic pollutants -- Chapter 16 Phytobial remediation -- Chapter 17 Nanobioremediation -- Section 5 Ecological impacts -- Chapter 18 Nanomaterials in the human food chain -- Chapter 19 Nanotechnological achievements and the environmental degradation -- Chapter 20 Accumulation of engineered nanomaterials in soil, water and air -- Chapter 21 Collateral effects of nanopollution on human and environmental health.
    Abstract: This book highlights the best practices regarding nanoscience and nanotechnology for agriculture and environmental sectors to shape sustainable development thought to improve the quality and quantity of the agriculture products and to decrease the collateral effect of nanotechnology in the ecosystems. Besides, leading nanotechnologies are showed and discussed to guarantee their proper management in lands and ecosystems. Therefore, nanotechnologies such as agronanobiotechnology, nanofertilization, pest control, magnetofection for plant breeding, plant molecular farming, OMICs technologies, phytonanotechnology, nanoremediation, etc. are described in five sections and 21 chapters. Undoubtedly it is an ideal and updated book for undergraduate or postgraduate students, and scientists or researchers involved in nanoscience, nanotechnology, crop production, and remediation technologies as well as for those researchers that solving technical problems regarding the crop management and the human and environmental health without hampering the pursuit of sustainable development goals.
    Type of Medium: Online Resource
    Pages: XI, 674 p. 1 illus. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9789811954542
    Series Statement: Interdisciplinary Biotechnological Advances,
    DDC: 630
    Language: English
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  • 22
    Keywords: Botany. ; Biology Technique. ; Biotechnology. ; Plant Science. ; Biological Techniques. ; Biotechnology.
    Description / Table of Contents: Chapter 1 Science and philosophy -- Chapter 2 Student’s proposal, dissertation, or thesis -- Chapter 3 Research integrity and publication ethics -- Chapter 4 Good Research Practices -- Chapter 5 Publication 101 -- Chapter 7 Lessons learned from Nature’s reports -- Chapter 8 Success can be learned.
    Abstract: This monograph offers a comprehensive guide to good research practices and mindsets, covering a wide range of topics across 8 chapters. Readers will find numerous themes and strategies that can help them develop their research skills and achieve their objectives, from effective proposal writing to stress management and upskilling. This book explains the purpose, process, tips, and mistakes of writing proposals, theses, articles, and reviews in clear and straightforward language, allowing readers to develop good research plans. By applying the advice and insights offered in this book, students and researchers can improve the quality of their work, cultivate research integrity, and develop good publication plans, write well, and reduce rejection rates. Research outputs will be more likely to be of high quality if students and researchers are encouraged to cultivate these pieces of advice. The focus of the book is not solely on the outcomes of research. Rather, it also delves into mindset, habits, adaptability, time management, stress management, recent tools for upskilling, planning, and execution. Throughout the book, the author seeks to instill a growth mindset in the readers, encouraging them to develop positive research habits and behaviors. KPIs, particularly publications, shall not be used as a reason to erode research integrity and ethnicity; therefore, plagiarism, self-citation, falsifying data, exaggerating findings, authorship in publications, the use of AI tools, CRediT, and COPE are discussed. This book contains interviews with high-profile researchers, top management at institutions, policy advisers, etc., whose opinions and advice the readers will find valuable. Overall, this all-in-one guide is an essential resource for postgraduate students, post-doctoral fellows, and academics who are struggling to find a survival strategy in the rapidly changing research environment. The book assists readers in developing right mindset, planning their research and publications, and in achieving their predetermined objectives. .
    Type of Medium: Online Resource
    Pages: XXIII, 241 p. 1 illus. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9789819928125
    DDC: 580
    Language: English
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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Designing Commonbean (Phaseolus Vulgaris L.)For Abiotic Stress Tolerance -- A Scintillating Journey Of Genomics In Simplifying Complex Traits And Development Of Abiotic Stress Resilient Chickpeas -- Genomic Designing for Abiotic Stress Tolerance in Pea (Pisum sativum L.) -- Advanced Breeding Strategies For Abiotic Stress Tolerance In Cowpea -- Breeding For Abiotic Stress Tolerance In Lentil In Genomic Era -- Genomic Design For Abiotic Stress Resistance In Pigeonpea -- Genetic and Genomic Research for Abiotic stresses in faba bean -- Genomic Designing For Abiotic Stress Tolerance In Mungbean And Urdbean -- Genomic Designing Towards Development of Abiotic Stress Tolerant Grass Pea for Food and Nutritional Security.
    Abstract: This book presents deliberations on molecular and genomic mechanisms underlying the interactions of crop plants to the abiotic stresses caused by heat, cold, drought, flooding, submergence, salinity, acidity, etc., important to develop resistant crop varieties. Knowledge on the advanced genetic and genomic crop improvement strategies including molecular breeding, transgenics, genomic-assisted breeding, and the recently emerging genome editing for developing resistant varieties in pulse crops is imperative for addressing FHNEE (food, health, nutrition, energy, and environment) security. Whole genome sequencing of these crops followed by genotyping-by-sequencing has provided precise information regarding the genes conferring resistance useful for gene discovery, allele mining, and shuttle breeding which in turn opened up the scope for 'designing' crop genomes with resistance to abiotic stresses. The nine chapters each dedicated to a pulse crop in this volume elucidate on different types of abiotic stresses and their effects on and interaction with the crop; enumerate on the available genetic diversity with regard to abiotic stress resistance among available cultivars; illuminate on the potential gene pools for utilization in interspecific gene transfer; present brief on classical genetics of stress resistance and traditional breeding for transferring them to their cultivated counterparts; depict the success stories of genetic engineering for developing abiotic stress-resistant crop varieties; discuss on molecular mapping of genes and QTLs underlying stress resistance and their marker-assisted introgression into elite varieties; enunciate on different genomics-aided techniques including genomic selection, allele mining, gene discovery, and gene pyramiding for developing adaptive crop varieties with higher quantity and quality of yields, and also elaborate some case studies on genome editing focusing on specific genes for generating abiotic stress-resistant crops. .
    Type of Medium: Online Resource
    Pages: XXV, 381 p. 31 illus., 27 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030910396
    DDC: 580
    Language: English
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    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Chapter 1. History, Botanical and Taxonomic Description, Domestication and Spread -- Chapter 2. Economic, Nutritional and Health Importance -- Chapter 3. Genetic and Genomic Resources for Crop Improvement in Finger Millet -- Chapter 4. Paradigm Shift from Genetics to Genomics: Characterization of Diversity and Prospects of Molecular Markers -- Chapter 5. Molecular Mapping in Finger Millet -- Chapter 6. The Complete Genome Sequence of Finger Millet -- Chapter 7. Comparative Genomics in Finger Millet -- Chapter 8. Finger Millet Transcriptome Analysis Using High Throughput Sequencing Technologies -- Chapter 9. Seed Biology and Packaging of Finger Millet Using Omics Approaches for Nutritional Security -- Chapter 10. A Nutritional Crop Factory of Quality Seed Storage Proteins for Combating Malnutrition -- Chapter 11. Finger Millet Genome Analysis and Nutrient Transport -- Chapter 12. Finger Millet as Input Use Efficient and Organic By Default Crop -- Chapter 13. Molecular Basis of Biotic and Abiotic Stress Tolerance in Finger Millet -- Chapter 14. Genetic Transformation for Crop Improvement and Biofortification -- Chapter 15. Novel Prospective On Suppression of Ageing By The Consumption of Finger Millet -- Chapter 16. Finger Millet Holistic Value Chain Approach.
    Abstract: This book is the first comprehensive compilation of deliberations on domestication, genetic and genomic resources, breeding, genetic diversity, molecular maps & mapping of important biotic stress as well as nutritional quality traits, genome sequencing, comparative genomics, functional genomics and genetic transformation. The economic, nutritional and health benefits especially antioxidants mediated antiaging effects of finger millet are also discussed. It also presents the input use efficiency, wide adaptation, post-harvest processing and value addition of the crop. Altogether, the book contains about 300 pages over 16 chapters authored by globally reputed experts on the relevant field in this crop. This book is useful to the students, teachers and scientists in the academia and relevant private companies interested in genetics, pathology, molecular genetics and breeding, genetic engineering, structural and functional genomics and nutritional quality aspects of the crop. This book is also useful to seed and pharmaceutical industries.
    Type of Medium: Online Resource
    Pages: XII, 296 p. 68 illus., 64 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031008689
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Background of Mulberry: Origin and Distribution, Domestication, Taxonomy, Cytology and Biodiversity -- Cultivation, Utilization and Economic benefits of mulberry in an Indian Context -- Mulberry Breeding for higher leaf Productivity -- Mulberry genome analysis: Current status, challenges, and future perspective -- Relationship between genome size and ploidy level in mulberry -- Transcriptomics: Current status and future prospects for identifying trait specific genes in mulberry -- Proteomics in mulberry -- Current status and importance of DUS testing in Mulberry -- Molecular diagnostics of soil borne and foliar diseases of mulberry: Present trends and future perspectives -- Transgenic Mulberry (Morus spp.) for Stress Tolerance: Current Status, Challenges and Future Perspectives -- Application of mulberry and mulberry silkworm by products for medical use -- Application of green synthesized nanoparticles in sustainable mulberry production: current trends and future perspectives -- Future Perspectives of Mulberry Genomic Research.
    Abstract: This book is the first comprehensive compilation of current knowledge on mulberry (Morus L.) covering botany, cytogenetics, biodiversity, genetics and breeding, tissue culture and genetic transformation, biotic and abiotic stresses, molecular mapping, QTL identification, whole genome sequencing and elucidation on functional genomics. As mulberry is one of the most economically important trees in Asian countries, it has attracted the attention of both academicians as well as industrialists. Being highly heterozygous due to long juvenile life coupled cross pollination among species, the genetics of this important crop species is yet to be unravelled. Nonetheless, the recent success of sequencing the genomes of haploid and diploid domesticated species has ushered in an era of intense molecular and genetic research to understand this crop well for its better utilization for mankind. In this book, efforts have been made to bring together key information on origin and distribution, taxonomy, morphological features, economic importance, abiotic stress responses, disease and pest resilience, current breeding strategies and their constraints, progress and prospects of gene mapping, elucidation of genes controlling metabolic and physiological pathways, and their utilization in crop improvement which are elaborated in about 250 pages over 13 chapters authored by globally leading experts on the species presented. This book is useful to the sericulture community in the world in general and students, teachers, and scientists in the academia for forage and fruit production, genetics, breeding, pathology, entomology, physiology, molecular genetics, in vitro culture and genetic engineering, and structural and functional genomics. This book is also useful to seed and biofuel industries.
    Type of Medium: Online Resource
    Pages: XIX, 298 p. 37 illus., 30 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031284786
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Chapter 1. The Model Legume, Medicago truncatula in the Genomic Era: Speeding Up Discoveries in Legume Biology -- Chapter 2. Genome-Wide Association Studies in Medicago truncatula -- Chapter 3. Tnt1 Insertional Mutagenesis In Medicago truncatula for Gene Function Analysis -- Chapter 4. Fast Neutron Bombardment (FNB)-Induced Mutant Resources in Medicago truncatula -- Chapter 5. Medicago Truncatula as s Model to Decipher Powdery Mildew Resistance in Legumes -- Chapter 6. Transcriptional Networks in Medicago truncatula: Genomic and Functional Overview During Root Nodule Symbiosis -- Chapter 7. Understanding of Root Nodule Development at Level of Systems Biology as Obtained by High Throughput Transcriptomic Approach -- Chapter 8. Whole Genome Sequencing Identifies a Medicago truncatula Tnt1 Insertion Mutant in the VIT8 Gene that is Essential for Symbiotic Nitrogen Fixation -- Chapter 9. Regulation of Leaf Blade Outgrowth: In Medicago truncatula -- Chapter 10. Function of Medicago truncatula WOX Genes and their Diversity -- Chapter 11. Early Stages of Seed Development In Medicago truncatula: Lessons from Genomic Studies -- Chapter 12. Seed Maturation Events in Medicago truncatula: Focus on Desiccation Tolerance -- Chapter 13. Functional Genomic and Genetic Studies of Organ Size Control in Medicago truncatula: An Overview.
    Abstract: This book focuses on the discoveries in M. truncatula genomic research which has been undertaken in the last two decades. Legumes are important for their economic values as food, feed, and fodder and also serve as the pillar of sustainable agriculture because of its biological nitrogen fixation capacity. Medicago truncatula was established as a model legume in the 1990s and has been well adopted as a model internationally since then. M. truncatula is an autogamous, diploid (2n = 16) species with a short generation time, and relatively small genome size (~375 Mbp). The M. truncatula genome was initially sequenced by the International Medicago Genome Annotation Group (IMGAG) in 2011 and has been well-annotated. M. truncatula research benefits from the availability of several genetic and genomic tools, such as gene expression atlas (MtGEA), insertion and neutron bombardment mutant populations, and a HapMap panel containing 384 sequenced inbred lines for genome-wide association studies. This book covers the current status and latest advancements of the M. truncatula genomics and transcriptomics resources along with a glimpse of newly developed tools that makes M. truncatula a front runner model in functional genomic studies.
    Type of Medium: Online Resource
    Pages: XXIV, 159 p. 28 illus., 19 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030907570
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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    Keywords: Botany. ; Environment. ; Biotechnology. ; Renewable energy sources. ; Cogeneration of electric power and heat. ; Fossil fuels. ; Plant Science. ; Environmental Sciences. ; Biotechnology. ; Renewable Energy. ; Fossil Fuel.
    Description / Table of Contents: Introduction: values of pollution free atmosphere -- Plant and Algae Classes Recognition, Biomass Production and Potential Source of Biofuel -- Plant and Algae Metabolites Alternative and Clean Source of Energy -- Mechanism and methods of extraction of biofuels -- Metabolic routes to biofuels extraction -- Optimizations on steps involved on biofuel obtainment and their validation -- Economic consideration on biofuel and energy security -- Technical challenges of biofuel obtainment -- Conclusion and Future Perspectives.
    Abstract: This volume discusses how plant and algae organisms play a pivotal role in the transformation of solar energy to essential metabolites, and explores the numerous beneficial roles these metabolites have at an industrial level. It presents information on the utilization of plant and algae for biomass production, and shows how this is a practical option for large scale biofuel production. The book examines how these bio-metabolites can then be used to extract biofuel. Biomass produced from plants and algae can act as the source of feedstock for biofuel production and industrially important compounds. This book also explores that by curtailing culturing cost using wastewater, seawater, and industrial water as a nutrient and water source, biomass becomes an economical energy source. The introductory chapters of the book focus on the appreciative values of a pollution-free atmosphere, with special reference to enhanced greenhouse effect, and then are followed by chapters on the potential of plant and algae as a liquid energy resource. This book targets researchers, graduate students, and energy and fuel industry professionals interested in the plant sciences, biotechnology and renewable energy. .
    Type of Medium: Online Resource
    Pages: XV, 164 p. 21 illus., 20 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030940744
    DDC: 580
    Language: English
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    Keywords: Agriculture. ; Food science. ; Biotechnology. ; Nutrition   . ; Agriculture. ; Food Science. ; Biotechnology. ; Nutrition.
    Description / Table of Contents: Chapter 1. Rice Chemistry, Nutrition and Processing: An Introduction -- Chapter 2. The Structure of Rice Starch and its Application -- Chapter 3. Rice Proteins and Their Applications -- Chapter 4. The Oil from Rice Bran and Its Processing Technology -- Chapter 5. Extraction and Identification of Rice Polyphenols and Related Health Benefits -- Chapter 6. Dietary Fiber from Rice By-products and Its Applications -- Chapter 7. Postharvest Processing of Rice -- Chapter 8. Cooking of Rice -- Chapter 9. Storage of Cooked Rice -- Chapter 10. Commercial Processing of Rice -- Chapter 11. Germinated Brown Rice -- Chapter 12. Impact of Heat-Moisture Treatment on Hierarchical Structure and Functional Properties of Rice Starch -- Chapter 13. Perspective of Future Rice Processing.
    Abstract: This book presents the knowledge of rice chemistry and nutrition. It includes identification, analysis, and application of bioactive chemical components of rice, the starch digestibility after pre-treatment, domestic cooking or processing, and the structure changes at multiple scales during processing and digestion. The novel application of rice starch, protein, polyphenols, dietary fiber, and the next generation of healthy rice products is summarized and the underline mechanisms of starch digestion are also revealed. Particularly, the advanced technologies for the fortification of rice nutrition as well as the challenges for the future rice processing industry are also included. This book provides the most recent research progresses and the state-of-the-art technologies regarding rice nutrition & chemistry to students, researchers, and technologists who are interested in rice and the fields of food science, nutrition, and food engineering.
    Type of Medium: Online Resource
    Pages: VIII, 293 p. 1 illus. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9789819932245
    DDC: 630
    Language: English
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    Keywords: Agriculture. ; Earth sciences. ; Geography. ; Pollution. ; Biotechnology. ; Agriculture. ; Earth and Environmental Sciences. ; Pollution. ; Biotechnology.
    Description / Table of Contents: 1. Permaculture principles, practices, and environmentalism (Jungho Suh) -- 2. Sources and solubilization of phosphatic fertilizers (Waleed Fouad Abobatta, Amr Mahmoud Abdel Gawad, Haythum M. Salem, Mohamed A. Abdel-Salam, Taghred A. Hashim) -- 3. Organic phosphorous as an alternative to mineral phosphatic fertilizers (Muhammad Zaina, Muhammad Adeelb, Noman Shakoor, Muhammad Arslan Ahmad, Saliha Maqboole, Jiusheng Li, Shafeeq Ur-Rahman, Xu Ming, Asif Iqbal, Waqar Afzal Malik, Aiwang Duan) -- 4. Adaptive responses of crop species against phosphorus deficiency (Mehtab Muhammad Aslam, Aisha Lawan Idris, Eyalira Jacob Okal, Muhammad Waseem) -- 5. Biochar for sustainable phosphorus management in agroecosystems (Komel Jehangir, Muhammad Riaz, Rashid Mahmood, Muhammad Arif) -- 6. Phenotyping for assessing genotypic variation in phosphorus use efficiency (Amjad Farooq, Waqas Shafqat Chattha, Muhammad Tehseen Azhar, Azeem Iqbal Khan, Amir Shakeel) -- 7. Advanced biotechnological tools for improving phosphorus 1 use efficiency (Hafiza Aasia Malik, Atta Ur Rahman, Fazal Akbar, Nisar Ahmad, Syed Shujait Ali, Muhammad Suleman, Shahid Ali, Zahid Hussain, Nasib Zaman, Akhtar Rasool, Muzafar Shah, Muhammad Israr, Asif Iqbal) -- 8. Role of arbuscular mycorrhizal fungi in plant phosphorus acquisition for sustainable agriculture (Muhammad Riaz, Muhammad Tehseen Azhar, Muhammad Kamran, Omar Aziz, Xiurong Wang) -- 9. Phosphorus cycle enzymes to remedy soil phosphorus deficiency (Alhassan Idris Gabasawa) -- 10. Phosphorus nutrition enhancement of biological nitrogen 1 fixation in pastures (Suleiman Kehinde Bello1, Taofeek Olatunbosun Muraina, Saheed Olaide Jimoh, Ibraheem Olamide Olasupo, Samaila Usman) -- Index.
    Abstract: This book presents recently-developed crop, soil, and management practices that can be used to improve phosphorous use efficiency in agriculture. Food security highly depends on the availability of plant nutrients such as phosphorus, yet rock phosphate reserves are expected to be exhausted in the next 50–100 years. Moreover, about 80% of the phosphorous fertilizers applied to soils become unavailable to plants due to phosphorous fixation in iron and aluminum oxides in acidic soils and with carbonates in alkaline soils. As a consequence, only 10-15% of applied phosphorous is up taken by crops. Therefore, there is a need for advanced practices for improving phosphorus use efficiency.
    Type of Medium: Online Resource
    Pages: XIX, 235 p. 1 illus. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031161551
    Series Statement: Sustainable Agriculture Reviews, 58
    DDC: 630
    Language: English
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    Keywords: Botany. ; Biotechnology. ; Nanotechnology. ; Plant Science. ; Biotechnology. ; Nanotechnology.
    Description / Table of Contents: 1. Introduction: Impact of Nanotechnology on Plant Cell Biology -- Part I Cellular Mechanisms -- 2. Effect of Nanomaterials on Water and Solutes Translocation in Plants -- 3. Response of Plant Photosynthesis to Nanomaterials -- 4. Impact of Nanomaterials on Chlorophyll Content in Plants -- 5. Interactions of Nanomaterials with Plant Pigments -- 6. Impact of Nanomaterials on Plant Secondary Metabolism -- 7. Toxic Effects of Nanomaterials on Plant Cellular Mechanisms -- Part II Cellular Macromolecules -- 8. Interaction of Nanoparticles with Plant Macromolecules: Carbohydrates and Lipids -- 9. Interaction of Nanomaterials with Plant Macromolecules: Nucleic Acid, Proteins and Hormones -- 10. Influence of Nanomaterials on Non-Enzymatic Antioxidant Defense Activities in Plants -- 11. 2D-Nanosheets Based Hybrid Nanomaterials Interaction with Plants -- Part III Agricultural Implications -- 12. Nanomaterial Impact on Plant Morphology, Physiology and Productivity -- 13. Role of Nanomaterials in Improving Crop Productivity -- 14. Role of Nanomaterials in Plant Cell and Tissue Culture -- 15. Role of Nanomaterials in Improving the Nutritional Value of Crops -- 16. Role of Nanomaterials in Improving Crop Tolerance to Abiotic Stress -- 17. Plant Mediation to Tolerate Cadmium Stress with Selenium and Nano-selenium -- 18. Synthesis and Applications of Cellulose Nanomaterials Derived from Agricultural Waste and Byproducts.
    Abstract: This book focuses on the recent progress of nanotechnology with emphasis on the interaction between nanoparticles and plants on the cellular level. It is devoted to understanding the pathways of nanomaterials entry into plant cell and their influence on cellular organelle processes and influence on crop yield. It consists of 16 chapters grouped in 3 parts: Part I Cellular mechanisms, Part II Cellular macromolecules, and Part III Implications of nanomaterials. Chapters present the plant response to nanomaterial applications including morphological, physiochemical, and anatomical changes and their effect on plant growth and productivity. The book discusses the mechanisms of absorbance and translocation of nanoparticles and their interaction with the plant cellular biochemical compounds and organelles. It presents the current perspective of nanomaterials influence on cellular processes which include photosynthesis, photorespiration and pigment synthesis and accumulation. In addition, it provides current understanding of the impact of nanomaterials on cellular macromolecules including carbohydrates, lipids, nucleic acids, proteins, hormones, and antioxidant defense activities. Collectively, these processes and biochemical compounds have implications on crop yield. Chapters are written by globally recognized scientists and subjected to a rigorous review process to ensure quality presentation and scientific precision. Chapter begins with an introduction that covers similar contexts and includes a detailed discussion of the topic accompanied by high-quality color images, diagrams, and relevant details and concludes with recommendations for future study directions. Chapter "Impact of Nanomaterials on Plant Secondary Metabolism" is available open access under a Creative Commons Attribution 4.0 International License via link.springer.com.
    Type of Medium: Online Resource
    Pages: XV, 507 p. 73 illus., 65 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031208782
    DDC: 580
    Language: English
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    Keywords: Agriculture. ; Genetics. ; Biology Technique. ; Biotechnology. ; Botany. ; Agriculture. ; Genetics and Genomics. ; Biological Techniques. ; Biotechnology. ; Plant Science.
    Description / Table of Contents: Chapter. 1. The utilization of speed breeding and genome editing to achieve zero hunger -- Chapter. 2. Multiomics approach for crop improvement under climate change -- Chapter. 3. The intervention of multi-omics approaches for developing abiotic stress resistance in cotton crops under climate change -- Chapter. 4. Big data revolution and machine learning to solve genetic mysteries in crop breeding -- Chapter. 5. Applications of multi-omics approaches for food and nutritional security -- Chapter. 6. Applications of high throughput phenotypic phenomics -- Chapter. 7. Basil (Ocimum basilicum L.) : Botany, Genetic resource, Cultivation, Conservation, and Stress factors -- Chapter. 8. Multi-Omics Approaches for Breeding in Medicinal Plants -- Chapter. 9. Applications of some nanoparticles and responses of medicinal and aromatic plants under stress conditions -- Chapter. 10. Sustainable agriculture through technological innovations -- Chapter. 11. Sustainable Rice Production under Biotic and Abiotic Stress Challenges -- Chapter. 12. Emerging Techniques to Develop Biotic Stress Resistance in Fruits and Vegetables -- Chapter. 13. Genome editing in crops to control insect pests -- Chapter. 14. CRISPR revolution in gene editing, targeting plant stress tolerance and physiology -- Chapter. 15. Genomics for Abiotic Stress Resistance in Legumes -- Chapter. 16. Genetic and molecular factors modulating phosphorous use efficiency in plants -- Chapter. 17. Recent Trends in Genome Editing Technologies for Agricultural Crops Improvement -- Chapter. 18. Recent trends and applications of omics based knowledge to end global food hunger -- Chapter. 19. Nutritional enhancement in horticultural crops by CRISPR/ Cas9: status and future prospects -- Chapter. 20. Physiological interventions of antioxidants in crop plants under multiple abiotic stresses -- Chapter. 21. Proteomics and its scope to study salt stress tolerance in quinoa -- Chapter. 22. Sustainable Cotton Production in Punjab: Failure and its Mitigating Strategies -- Chapter. 23. Biosafety and biosecurity in genetically modified crops.
    Abstract: Access to food with enough calories and nutrients is a fundamental right of every human. The global population has exceeded 7.8 billion and is expected to pass 10 billion by 2055. Such rapid population increase presents a great challenge for food supply. More grain production is needed to provide basic calories for humans. Thus, it is crucial to produce 60-110% more food to fill the gap between food production and the demand of future generations. Meanwhile food nutritional values are of increasing interest to accommodate industrialized modern lives. The instability of food production caused by global climate change presents another great challenge. The global warming rate has become more rapid in recent decades, with more frequent extreme climate change including higher temperatures, drought, and floods. Our world faces various unprecedented scenarios such as rising temperatures, which causes melting glaciers and the resulting various biotic and abiotic stresses, ultimately leading to food scarcity. In these circumstances it is of utmost importance to examine the genetic basis and extensive utilization of germplasm to develop “climate resilient cultivars” through the application of plant breeding and biotechnological tools. Future crops must adapt to these new and unpredictable environments. Crop varieties resistant to biotic and abiotic stresses are also needed as plant disease, insects, drought, high- and low-temperature stresses are expected to be impacted by climate change. Thus, we need a food production system that can simultaneously satisfy societal demands and long-term development. Since the Green Revolution in the 1960s, farming has been heavily dependent on high input of nitrogen and pesticides. This leads to environmental pollution which is not sustainable in the long run. Therefore, a new breeding scheme is urgently needed to enable sustainable agriculture; including new strategies to develop varieties and crops that have high yield potential, high yield stability, and superior grain quality and nutrition while also using less consumption of water, fertilizer, and chemicals in light of environmental protection. While we face these challenges, we also have great opportunities, especially with flourishing developments in omics technologies. High-quality reference genomes are becoming available for a larger number of species, with some species having more than one reference genome. The genome-wide re-sequencing of diverse varieties enables the identification of core- and pan-genomes. An integration of omics data will enable a rapid and high-throughput identification of many genes simultaneously for a relevant trait. This will change our current research paradigm fundamentally from single gene analysis to pathway or network analysis. This will also expand our understanding of crop domestication and improvement. In addition, with the knowledge gained from omics data, in combination with new technologies like targeted gene editing, we can breed new varieties and crops for sustainable agriculture.
    Type of Medium: Online Resource
    Pages: VII, 514 p. 59 illus., 50 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031155680
    DDC: 630
    Language: English
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    Keywords: Agriculture. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Refuse and refuse disposal. ; Pollution. ; Agriculture. ; Environmental Engineering/Biotechnology. ; Waste Management/Waste Technology. ; Pollution. ; Biotechnology.
    Description / Table of Contents: Chapter 1: Pretreatment And Enzymatic Hydrolysis Of Lignocellulosic Biomass For Reducing Sugar Production -- Chapter 2: Mangosteen Peel Antioxidant Extraction And Its Use To Improve The Stability Of Biodiesel B20 Oxidation -- Chapter 3: Biotechnological Potential Of Cottonseed, A By-Product Of Cotton Production -- Chapter 4: Bioprocessing With Cashew Apple And Its Byproducts -- Chapter 5: Agro-Processing Residues For The Production Of Fungal Bio-Control Agents -- Chapter 6: Production Of Activated Carbon From Agro-Industrial Wastes And Its Potential Use For Removal Of Heavy Metal In Textile Industrial Wastewater -- Chapter 7: Utilization Of Glycerol From Biodiesel Industry By-Product Into Several Higher Value Products -- Chapter 8: Potential Application Of Native Fruits Waste From Argentina As Non-Conventional Sources Of Functional Ingredients -- Chapter 9: Conventional And Alternative Strategies Of Pretreatment Of Chili Post-Harvest Residue For The Production Of Different Value Added Products -- Chapter 10: Valorization Of Sugarcane-Based Bioethanol Industry Waste (Vinasse) To Organic Fertilizer -- Chapter 11: Pyrolytic Products From Oil Palm Biomass And Its Potential Applications.
    Abstract: The world’s population is expected to reach the eight billion mark very soon. As a result, there is a need for increased industrial and agricultural production to ensure human wellbeing. This in turn generates huge amounts of waste. Current waste treatment solutions are effective, but usually require huge capital investment, are labour intensive and potentially lead to hazardous by-products. This book presents the latest non-biological approaches to address issues related to the abundance of waste, offering insights into best practices in various regions around the globe. It highlights techniques such as chemical extraction, pyrolysis and ultrasonics, and a number of chapters include individual case studies to further enhance readers’ understanding. This comprehensive reference resource is intended for graduate students, researchers and scientists, and is also a valuable addition to all agriculture and biotechnology libraries.
    Type of Medium: Online Resource
    Pages: X, 236 p. 56 illus., 26 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030392086
    Series Statement: Applied Environmental Science and Engineering for a Sustainable Future,
    DDC: 630
    Language: English
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    Keywords: Agriculture. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Refuse and refuse disposal. ; Pollution. ; Agriculture. ; Environmental Engineering/Biotechnology. ; Waste Management/Waste Technology. ; Pollution. ; Biotechnology.
    Description / Table of Contents: Chapter 1: Dark fermentation and bioelectrochemical systems for enhanced biohydrogen production from palm oil mill effluent: current progress, potentials, and future perspectives -- Chapter 2: Spent mushroom substrate as biofertilizer for agriculture application -- Chapter 3: Biological treatment of agro-industrial waste -- Chapter 4: Proteomics of lignocellulose substrates bioconversion in anaerobic digesters to increase carbon recovery as methane -- Chapter 5: Circular economy and agroindustrial wastewater: potential of microalgae in bioremediation processes -- Chapter 6: Utilization of agro-waste as carbon source for biohydrogen production: prospect and challenges in Malaysia -- Chapter 7: Agro-industrial waste as substrates for the production of bacterial pigment -- Chapter 8: Analysis of termite microbiome and biodegradation of various phenolic compounds by a bacterium isolated from the termite gut in louisiana, usa -- Chapter 9: Compatible technologies to anaerobic digestion for the integral valorization of organic waste -- Chapter 10: Recycling and reuse of ayurvedic pharma industry wastes -- Chapter 11: Production of unicellular biomass as a food ingredient from agro-industrial waste -- Chapter 12: Cyanobacterial degradation of organophosphorus pesticides -- Chapter 13: Microbial identification and extracellular polymeric substances characterization of aerobic granules developed in treating rubber processing waste water -- Chapter 14: Granulation and biodegradation by microbial species in granular sequencing batch reactor for soy-sauce wastewater treatment.
    Abstract: Agriculture and industry are the two most important economic sectors for various countries around the globe, providing millions of jobs as well as being the main source of income for these countries. Nevertheless, with the increasing demand for agricultural and industrial produce, huge amounts of waste are also being produced. Without proper management, this waste (both liquid and solid) poses a serious threat to overall environmental quality, mainly due to its toxicity and slow degradation processes. Current approaches are effective but would normally require huge capital investments, are labour intensive and generate potential hazardous by-products. As such, there is a need for alternative approaches that are cheaper, easier-to-handle and have a minimum potential impact on environmental quality. This book presents up-to-date approaches using biological techniques to manage the abundance of waste generated from agricultural and industrial activities. It discusses techniques such as bioconversion, biodegradation, biotransformation, and biomonitoring as well as the utilization of these wastes. A number of chapters also include individual case studies to enhance readers’ understanding of the topics. This comprehensive book is a useful resource for anyone involved in agricultural and industrial waste management, green chemistry or biotechnology. It is also recommended as a reference work for graduate students and all agriculture and biotechnology libraries.
    Type of Medium: Online Resource
    Pages: XI, 308 p. 33 illus., 18 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030391379
    Series Statement: Applied Environmental Science and Engineering for a Sustainable Future,
    DDC: 630
    Language: English
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    Keywords: Agriculture. ; Food science. ; Biotechnology. ; Agriculture. ; Food Science. ; Biotechnology.
    Description / Table of Contents: Chapter 1. Millets for Life: A Brief Introduction -- Chapter 2. Global Scenario of Millets Cultivation -- Chapter 3. Minor Millets: Profile and Ethnobotanical Scenario -- Chapter 4. Millets: Malnutrition and Nutrition Security -- Chapter 5. Nutritional Composition of Millets -- Chapter 6. Millet starch: Current Knowledge and Emerging Insights of Structure, Physiology, Glycaemic Attributes and Uses -- Chapter 7. Product Development from Millets -- Chapter 8. Seed Storage Proteins and Amino Acids Synthetic Pathways and their Regulation in Cereals with Reference to Biologically and Nutritionally Important Proteins and Bioactive Peptides in Millets -- Chapter 9. Millets, Phytochemicals and their Health Attributes -- Chapter 10. Science-Led Innovation for Searching and Creating Values in Natural Gene Pool of Millets for Agri-Food Nutrition and Health -- Chapter 11. Processing Technology for Value Addition in millets -- Chapter 12. Fermented Millet Technology and Products -- Chapter 13. Processing-Mediated changes in the Antinutritional, Phenolic and Antioxidant Contents of Millet -- Chapter 14. Technology for Millet Value-Added Products -- Chapter 15. Millet-Based Traditional Processed Food Beverages -- Chapter 16. Millet-Based Value-Added food products for diabetics -- Chapter 17. Genomics-Assisted Improvement of Grain Quality and Nutraceutical Properties in Millets -- Chapter 18. Rural Entrepreneurship Development in Millet Processing -- Chapter 19. Quality Management System in Millet and Sorghum -- Chapter 20. Demand Creation Measures and Value Chain Model on Millets in India -- Chapter 21. Role of Nutrihub Incubation for the Development Of Business Opportunities in Millets: An Indian Scenario.-.
    Abstract: Millets are small-grained, annual, warm weather cereal. The millets offer both nutritional and livelihood security of human population and fodder security of diverse livestock population in dryland region of India. Millets are highly nutritious, they are known as health foods especially for control of diabetes and mineral deficiencies. One of the major factors for declining consumption of millets is the lack of awareness of their nutritive value and inconvenience of their preparation. This book covers both, chemistry and novel technology for millet processing and development. It summarizes the latest information on millets, their nutritional and health benefits, historical perspective, utilization, R&D efforts, present status and the importance being given by policy makers for promoting millets for sustainable agriculture and healthy society. The book is compiled by various experts keeping in view syllabi of different research institutions, researchers, students as well requirement of the industry. It will serve as instructional material for researchers in food science, microbiology, process engineering, biochemistry, biotechnology and reference material for those working in industry and R & D labs.
    Type of Medium: Online Resource
    Pages: XVIII, 438 p. 90 illus., 60 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9789811606762
    DDC: 630
    Language: English
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    Keywords: Agriculture. ; Biotechnology. ; Soil science. ; Ecology . ; Agriculture. ; Biotechnology. ; Soil Science. ; Ecology.
    Description / Table of Contents: 1. Reforming the Soil Organic Carbon Management Plans and Policies in India -- 2. Technologies, Programmes and Policies for Enhancing Soil Organic Carbon in Rainfed Dryland Ecosystems of India -- 3. Traditional Land Use Systems' Potential as the Framework for Soil Organic Carbon Plans and Policies -- 4. Enhancing Soil Organic Carbon Sequestration in Agriculture: Plans and Policies -- 5. Plans and Policies for Soil Carbon Storage -- 6. Soil Organic Carbon Sequestration in Rice Based Cropping Systems: Estimation, Accounting & Valuation -- 7. CO2 Capture, Storage and Environmental Sustainability: Plan, Policy and Challenges -- 8. Plan and Policies for Soil Organic Carbon Management under Agroforestry System -- 9. Carbon Sequestration in Degraded Lands: Current Prospects, Practices, and Future Strategies.
    Abstract: This edited book discusses how effective soil carbon management plans and policies will ultimately make agriculture more secure against climate change and soil degradation. It is focused on initiatives to enhance soil organic carbon (SOC) and sequestration by launching different schemes and programs. An approach based on practical aspects of managing SOC in agriculture is provided with clear and concise descriptions. It has more attention to successfully implement plans and policies to meet the required level of SOC restoration. The book is covering the urgent needs of plans and policies for soil management and C restoration in agricultural ecosystems which can be beneficial to food, nutrition, environment, and economy security. There is also providing a roadmap on SOC policies to encourage the use of best management practices (BMPs) for soil health and C stock restoration, and achieve the Sustainable Development Goals of the United Nations. The book is suitable for teachers, researchers, government planners and policymakers, undergraduate and graduate students of soil science, soil microbiology, agronomy, ecology, and environmental sciences.
    Type of Medium: Online Resource
    Pages: XV, 255 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811961793
    DDC: 630
    Language: English
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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Genomic Designing For Biotic Stress Resistant Cassava -- Genomic Designing For Biotic Stress Resistant Cocoa -- Genomic Designing For Biotic Stress Resistant Coconut -- Genomic Designing For Biotic Stress Resistant Coffee -- Genomic Designing For Biotic Stress Resistant Cotton -- Genomic Designing For Biotic Stress Resistant Ornamental Crops -- Genomic Designing For Biotic Stress Resistant Jute -- Genomic Designing For Biotic Stress Resistant Mulberry -- Genomic Designing For Biotic Stress Resistant Sugarcane -- Genomic Designing For Biotic Stress Resistant Tobacco -- Genomic Designing For Biotic Stress Resistant Yam.
    Abstract: Biotic stresses cause yield loss of 31-42% in crops in addition to 6-20% during post-harvest stage. Understanding interaction of crop plants to the biotic stresses caused by insects, bacteria, fungi, viruses, and oomycetes, etc. is important to develop resistant crop varieties. Knowledge on the advanced genetic and genomic crop improvement strategies including molecular breeding, transgenics, genomic-assisted breeding and the recently emerging genome editing for developing resistant varieties in technical crops is imperative for addressing FHEE (food, health, energy and environment) security. Whole genome sequencing of these crops followed by genotyping-by-sequencing have facilitated precise information about the genes conferring resistance useful for gene discovery, allele mining and shuttle breeding which in turn opened up the scope for 'designing' crop genomes with resistance to biotic stresses. The 15 chapters dedicated to 13 technical crops and 2 technical crop groups in this volume will deliberate on different types of biotic stress agents and their effects on and interaction with crop plants; will enumerate on the available genetic diversity with regard to biotic stress resistance among available cultivars; illuminate on the potential gene pools for utilization in interspecific gene transfer; will brief on the classical genetics of stress resistance and traditional breeding for transferring them to their cultivated counterparts; will enunciate the success stories of genetic engineering for developing biotic stress resistant varieties; will discuss on molecular mapping of genes and QTLs underlying biotic stress resistance and their marker-assisted introgression into elite varieties; will enunciate on different emerging genomics-aided techniques including genomic selection, allele mining, gene discovery and gene pyramiding for developing resistant crop varieties with higher quantity and quality; and will also elaborate some case studies on genome editing focusing on specific genes for generating disease and insect resistant crops. .
    Type of Medium: Online Resource
    Pages: XXIX, 616 p. 43 illus., 36 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031092930
    DDC: 580
    Language: English
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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Chapter 1. History and Current Status of Worldwide Production -- Chapter 2. Origin, Evolution, Taxonomy, and Germplasm -- Chapter 3. Scion Cultivar Breeding -- Chapter 4. Rootstock Breeding and Propagation -- Chapter 5. D. lotus Genome -- Chapter 6. D. oleifera Genome -- Chapter 7. Chloroplast Genome of Diospyros Species -- Chapter 8. Sexual System and Its Evolution -- Chapter 9. Sex Expression in Chinese Persimmons -- Chapter 10. Chinese PCNA -- Chapter 11. Japanese PCNA -- Chapter 12. Fruit Size Control -- Chapter 13. Transcriptomics During Artificial Deastringency Treatment.
    Abstract: This book will expound the latest information on the current state of persimmon genomics and transcriptomics, with a particular focus on the latest findings and analysis in relation to the most important agronomic traits. The genus Diospyros contains about 400 species distributed all continents of the globe. Most of Diospyros species are distributed in the tropical and subtropical regions, while cultivated persimmon or simply kaki (Diospyros kaki) originates in East Asia and has been grown in China, Japan and Korea for many years. World production of persimmon has been increasing continuously since 1990s, with China being the most producer. Outside Asia, kaki production has been rapidly increasing in Spain in recent years. Because kaki is mostly hexaploid (2n = 6x =90) and its genome size is quite large with the flow cytometric analysis estimation of about 900 Mb, genetic and molecular studies in persimmon are quite complicated. Diploid close relatives of kaki, D. lotus and D. oleifera have been recently used as model species of kaki. Utilizing these species, molecular basis of several economically molecular basis of important traits such as sexuality and astringency has been studied, giving important information for kaki breeding.
    Type of Medium: Online Resource
    Pages: XVII, 176 p. 91 illus., 71 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031055843
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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    Keywords: Agriculture. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Food science. ; Environment. ; Manufactures. ; Pollution. ; Agriculture. ; Environmental Engineering/Biotechnology. ; Food Science. ; Environmental Sciences. ; Machines, Tools, Processes. ; Pollution.
    Description / Table of Contents: Preface -- Chapter 1 Hemp Production -- Chapter 2 Traditional and New Applications of Hemp -- Chapter 3 Industrial Hemp in the USA: A Brief Synopsis -- Chapter 4 Hemp Fibers in Serbia: Cultivation, Processing, and Applications -- Chapter 5 Physico-chemical Characterization and Development of Hemp Aggregates for Highly Insulating Construction Building Materials -- Chapter 6 Modelling of the Hygrothermal Behaviour of Hemp Concrete -- Chapter 7 Hempseed Protein: Processing and Functional Properties -- Chapter 8 Functional and Bioactive Properties of Hemp Proteins -- Chapter 9 Hemp Seed as a Source of Food Proteins -- Chapter 10 Hemp Fibers for Wastewater Treatment.
    Abstract: This book reviews recent research and applications, developments, research trends, methods and issues related to the applications of industrial hemp for fundamental research and technology. Contains a complete overview of traditional and new applications of hemp.
    Type of Medium: Online Resource
    Pages: XV, 326 p. 72 illus., 51 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030413842
    Series Statement: Sustainable Agriculture Reviews, 42
    DDC: 630
    Language: English
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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Agriculture. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Food science. ; Plant Science. ; Agriculture. ; Environmental Engineering/Biotechnology. ; Food Science.
    Description / Table of Contents: Chapter 1 Systematics and Biogeography of the Genus Teucrium (Lamiaceae) -- Chapter 2 Morphological Characteristics of Teucrium Species: Vegetative Morphology -- Chapter 3 Morphological Characteristics of Teucrium Species: Generative Morphology -- Chapter 4 Ecology of Teucrium Species: Habitat Related Metal Content Dynamics -- Chapter 5 Ethnobotanical Features of Teucrium Species -- Chapter 6 Phenolic Compounds Diversity of Teucrium Species -- Chapter 7 Essential Oils Diversity of Teucrium Species -- Chapter 8 Secondary Metabolites of Teucrium Species With Toxic Effects -- Chapter 9 Genotoxic Activity of Secondary Metabolites of Teucrium Species -- Chapter 10 Antioxidant Activity of Secondary Metabolites of Teucrium Species -- Chapter 11 Antiviral Activity of Secondary Metabolites of Teucrium Species -- Chapter 12 Antibacterial and Antifungal Activity of Secondary Metabolites of Teucrium Species -- Chapter 13 Anticancer Activity of Secondary Metabolites of Teucrium Species -- Chapter 14 Anticholinesterase, Antidiabetic and Anti-Inflammatory Activity of Secondary Metabolites of Teucrium Species -- Chapter 15 Application of Teucrium Species: Current Challenges and Further Perspectives.
    Abstract: Teucrium species are an intersting object of research in the various aspects of science with multiple applications. With more than 300 species, Teucrium is one of the largest and well distributed genera of the Lamiaceae family. Known medicinal Teucrium species have a long traditional use as well as different potential applications in pharmacy, food and beverage industry. Teucrium species are very rich in a variety of secondary metabolites with significant biological activities. Based on that, the book contains 15 chapters which discusses recent advances in exploring the unique features of Teucriumspecies including morphology, systematics, taxonomy, biogeography, ethnobotany, phytochemistry, biological activity such as genotoxic, antioxidant, antibacterial, antifungal, antiviral, anticancer, anticholinesterase, antidiabetic and anti-inflammatory activity of secondary metabolites as well as applications including current challenges and further perspectives. Some medicinal Teucrium species in excessive use can cause certain consequences. This phenomenon and precaution is also described. Whilst this book is primarily aimed at scientists, researchers, beginners in the investigations of Teucrium species, graduate and post-graduate students in biology, botany, biotechnology, agriculture, and pharmacy, as well as science enthusiasts and practitioners involved in medicinal plants applications. Book provides complete Teucrium species list, color photographs of selected Teucrium species on natural habitats, as well as up-to-date bibliography related to Teucrium genus.
    Type of Medium: Online Resource
    Pages: XVII, 435 p. 79 illus., 41 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030521592
    DDC: 580
    Language: English
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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Tomato -- Potato -- Capsicums -- Eggplant -- Vegetable Brassicas -- Cucurbits -- Allium -- Amaranth -- Carrot.
    Abstract: Biotic stresses cause yield loss of 31-42% in crops in addition to 6-20% during post-harvest stage. Understanding interaction of crop plants to the biotic stresses caused by insects, bacteria, fungi, viruses, and oomycetes, etc. is important to develop resistant crop varieties. Knowledge on the advanced genetic and genomic crop improvement strategies including molecular breeding, transgenics, genomics-assisted breeding and the recently emerging genome editing for developing resistant varieties in vegetable crops is imperative for addressing FPNEE (food, health, nutrition. energy and environment) security. Whole genome sequencing of these crops followed by genotyping-by-sequencing have facilitated precise information about the genes conferring resistance useful for gene discovery, allele mining and shuttle breeding which in turn opened up the scope for 'designing' crop genomes with resistance to biotic stresses. The nine chapters each dedicated to a vegetable crop or crop-group in this volume will deliberate on different types of biotic stress agents and their effects on and interaction with crop plants; will enumerate on the available genetic diversity with regard to biotic stress resistance among available cultivars; illuminate on the potential gene pools for utilization in interspecific gene transfer; will brief on the classical genetics of stress resistance and traditional breeding for transferring them to their cultivated counterparts; will enunciate the success stories of genetic engineering for developing biotic stress resistant varieties; will discuss on molecular mapping of genes and QTLs underlying biotic stress resistance and their marker-assisted introgression into elite varieties; will enunciate on different emerging genomics-aided techniques including genomic selection, allele mining, gene discovery and gene pyramiding for developing resistant crop varieties with higher quantity and better quality; and will also elaborate some case studies on genome editing focusing on specific genes for generating disease and insect resistant crops.
    Type of Medium: Online Resource
    Pages: XXIII, 379 p. 19 illus., 17 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030977856
    DDC: 580
    Language: English
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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Chapter 1. Lingzhi, An Overview -- Chapter 2. The Trend of Ganoderma lucidum Research (1936-2019) -- Chapter 3. The Nuclear Genome of Lingzhi Mushroom -- Chapter 4. Lingzhi Mitochondrial Genome -- Chapter 5. Transcriptome of Lingzhi -- Chapter 6. Proteomic Characterization of Lingzhi -- Chapter 7. Noncoding RNAs in Lingzhi Mushroom -- Chapter 8. Biosynthetic Pathway and Signal Transduction Regulation of Ganoderic Acid Biosynthesis in Lingzhi -- Chapter 9. Genetic Transformation System -- Chapter 10. Cancer Immunotherapy of Ganoderma -- Chapter 11. A Comprehensive Meta-Analysis on the Effectiveness and Safety of Lingzhi -- Chapter 12. Survey of Lingzhi Health Foods and Drugs.
    Abstract: This book becomes an invaluable reference on the genetic resources, genome, genes, chemical compounds, and their therapeutic effects for the Lingzhi mushrooms. It is the first comprehensive compilation of genetic resources, nuclear genome, mitochondrial genome, genes, noncoding RNAs, such as long intergenic noncoding RNAs, microRNAs, circular RNAs, genes in the biosynthetic pathway, chemical compounds and their therapeutic effects, transformation system for the expression of key genes, a bibliometric analysis to identify the past research work and the future research direction, and a survey of products derived from the Lingzhi mushrooms. Each chapter of this book is written by authors of globally reputed experts on the relevant field who had published high-quality articles in the corresponding subject. The book has 12 chapters and each chapter has a length of approximately ten thousand words, including ten items (tables or figures), about 30–50 references. This book is useful to the students, teachers, and scientists in academia and relevant private companies interested in horticulture, genetics, physiology, molecular genetics, and breeding, in vitro culture and genetic engineering, and structural and functional genomics. This book is also useful to seed and pharmaceutical industries.
    Type of Medium: Online Resource
    Pages: XVI, 229 p. 103 illus., 83 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030757106
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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    Keywords: Agriculture. ; Botany. ; Food science. ; Biotechnology. ; Biology Technique. ; Genetics. ; Agriculture. ; Plant Science. ; Food Science. ; Biotechnology. ; Genetic Techniques.
    Abstract: This book highlights the recent progress on the applications of mutation breeding technology in crop plants. Plant breeders and agriculturists are faced with the new challenges of climate change, human population growth, and dwindling arable land and water resources which threaten to sustain food production worldwide. Genetic variation is the basis which plant breeders require to produce new and improved cultivars. The understanding of mutation induction and exploring its applications has paved the way for enhancing genetic variability for various plant and agronomic characters, and led to advances in gene discovery for various traits. Induced mutagenesis has played a significant role in crop improvement and currently, the technology has resulted in the development and release of more than 3600 mutant varieties in most of the crop plants with great economic impact. The field of ‘mutation breeding’ has come long way to become an important approach for crop improvement. This book covers various methodologies of mutation induction, screening of mutants, genome editing and genomics advances and mutant gene discovery. The book further discusses success stories in different countries and applications of mutation breeding in food crops, horticultural plants and plantation crops. This informative book is very useful to plant breeders, students and researchers in the field of agriculture, plant sciences, food science and genetics.
    Type of Medium: Online Resource
    Pages: XVIII, 809 p. 1 illus. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9789811697203
    DDC: 630
    Language: English
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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Genomic Design for Biotic Stresses in Soybean -- Genomic Designing For Biotic Stress Resistance In Rapeseed.-Designing Sunflower For Biotic Stress Resilience: Everlasting Challenge -- Genomic Designing For Biotic Stress Resistant Peanut -- Genomic Designing For Biotic Stress Resistance In Rape And Mustard -- Genomic Designing For Resistance To Biotic Stresses In Sesame -- Biotic Stresses In Castor Plant -- Genomic Designing For Genetic Improvement Of Biotic Stress Resistance In Flax.
    Abstract: Biotic stresses cause yield loss of 31-42% in crops in addition to 6-20% during post-harvest stage. Understanding interaction of crop plants to the biotic stresses caused by insects, bacteria, fungi, viruses, and oomycetes, etc. is important to develop resistant crop varieties. Knowledge on the advanced genetic and genomic crop improvement strategies including molecular breeding, transgenics, genomic-assisted breeding and the recently emerging genome editing for developing resistant varieties in oilseed crops is imperative for addressing FPNEE (food, health, nutrition. energy and environment) security. Whole genome sequencing of these crops followed by genotyping-by-sequencing have facilitated precise information about the genes conferring resistance useful for gene discovery, allele mining and shuttle breeding which in turn opened up the scope for 'designing' crop genomes with resistance to biotic stresses. The eight chapters each dedicated to an oilseed crop in this volume elucidate on different types of biotic stress agents and their effects on and interaction with the crop plants; enumerate on the available genetic diversity with regard to biotic stress resistance among available cultivars; illuminate on the potential gene pools for utilization in interspecific gene transfer; present brief on the classical genetics of stress resistance and traditional breeding for transferring them to their cultivated counterparts; depict the success stories of genetic engineering for developing biotic stress resistant varieties; discuss on molecular mapping of genes and QTLs underlying biotic stress resistance and their marker-assisted introgression into elite varieties; enunciate on different emerging genomics-aided techniques including genomic selection, allele mining, gene discovery and gene pyramiding for developing resistant crop varieties with higher quantity and quality of yields; and also elaborate some case studies on genome editing focusing on specific genes for generating disease and insect resistant crops.
    Type of Medium: Online Resource
    Pages: XVI, 214 p. 38 illus., 34 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030910358
    DDC: 580
    Language: English
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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Genomic Designing For Biotic Stress Resistant Crops -- Chickpea Biotic Stresses -- Development of Biotic Stress Resistant Pea in the Post-Genomics Era -- Development of Biotic Stress Resistant Cowpea -- Tackling Lentil Biotic Stresses in the Genomic Era -- Development of Biotic-stress Resistant Pigeonpea -- Application of Genetic and Genomic Strategies to Address the Biotic Stresses in Faba Bean -- Genomic Designing Towards Biotic Stress Resistance in Mungbean and Urdbean -- Genomic Designing for Biotic Stress Resistance in Grasspea.
    Abstract: Biotic stresses cause yield loss of 31-42% in crops in addition to 6-20% during post-harvest stage. Understanding interaction of crop plants to the biotic stresses caused by insects, bacteria, fungi, viruses, and oomycetes, etc. is important to develop resistant crop varieties. Knowledge on the advanced genetic and genomic crop improvement strategies including molecular breeding, transgenics, genomic-assisted breeding and the recently emerging genome editing for developing resistant varieties in pulse crops is imperative for addressing FPNEE (food, health, nutrition. energy and environment) security. Whole genome sequencing of these crops followed by genotyping-by-sequencing have facilitated precise information about the genes conferring resistance useful for gene discovery, allele mining and shuttle breeding which in turn opened up the scope for 'designing' crop genomes with resistance to biotic stresses. The nine chapters each dedicated to a pulse crop in this volume elucidate on different types of biotic stress agents and their effects on and interaction with the crop plants; enumerate on the available genetic diversity with regard to biotic stress resistance among available cultivars; illuminate on the potential gene pools for utilization in interspecific gene transfer; present brief on the classical genetics of stress resistance and traditional breeding for transferring them to their cultivated counterparts; depict the success stories of genetic engineering for developing biotic stress resistant varieties; discuss on molecular mapping of genes and QTLs underlying biotic stress resistance and their marker-assisted introgression into elite varieties; enunciate on different emerging genomics-aided techniques including genomic selection, allele mining, gene discovery and gene pyramiding for developing resistant crop varieties with higher quantity and quality of yields; and also elaborate some case studies on genome editing focusing on specific genes for generating disease and insect resistant crops.
    Type of Medium: Online Resource
    Pages: XXIV, 441 p. 28 illus., 25 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030910433
    DDC: 580
    Language: English
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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Genomics of Biotic Stress Resistance in Malus domestica -- Genomic Designing for Biotic Stress Resistant Banana -- Genetic Improvement of Citrus Limon (L. Burm f.) for Resistance to Mal Secco Disease -- Genomic Designing for Biotic Stress Resistant Grapevine -- Wild and Related Species as a Breeding Source for Biotic Stress Resistance of Peach Cultivars and Rootstocks -- Genomic Designing of new Almond-Peach Rootstock-variety Combinations Resistance to Plum pox virus -- Genomic Designing of New Plum Pox Virus Resistant Plumcot -- Integrated Genomic Designing and Insights for Disease Resistance and Crop Protection against Pathogens in Cherry -- Development of Biotic Stress Tolerant Berries.
    Abstract: This book presents deliberations on the molecular and genomic mechanisms underlying the interactions of crop plants with the biotic stresses caused by insects, bacteria, fungi, viruses, and oomycetes, etc. important to develop resistant crop varieties. Knowledge on the advanced genetic and genomic crop improvement strategies including molecular breeding, transgenics, genomic-assisted breeding and the recently emerging genome editing for developing resistant varieties in fruit crops is imperative for addressing FPNEE (food, health, nutrition. energy and environment) security. Whole genome sequencing of these crops followed by genotyping-by-sequencing have facilitated precise information about the genes conferring resistance useful for gene discovery, allele mining and shuttle breeding which in turn opened up the scope for 'designing' crop genomes with resistance to biotic stresses. The nine chapters, each dedicated to a fruit crop in this volume, deliberate on different types of biotic stress agents and their effects on and interaction with the crop plants; enumerate the available genetic diversity with regard to biotic stress resistance among available cultivars; illuminate on the potential gene pools for utilization in interspecific gene transfer; present brief on the classical genetics of stress resistance and traditional breeding for biotic stress resistance; depict the success stories of genetic engineering for developing biotic stress resistant varieties; discuss on molecular mapping of genes and QTLs underlying biotic stress resistance and their marker-assisted introgression into elite varieties; enunciate different emerging genomics-aided techniques including genomic selection, allele mining, gene discovery and gene pyramiding for developing resistant crop varieties with higher quantity and quality of yield; and also elaborate some case studies on genome editing focusing on specific genes for generating disease and insect resistant crops.
    Type of Medium: Online Resource
    Pages: XXII, 384 p. 20 illus., 19 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030918026
    DDC: 580
    Language: English
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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Plant ecology. ; Plants Development. ; Plant diseases. ; Biotechnology. ; Plant biotechnology. ; Plant Science. ; Plant Ecology. ; Plant Development. ; Plant Pathology. ; Biotechnology. ; Plant Biotechnology.
    Description / Table of Contents: Acknowledgements -- Introduction -- Geographic location of research -- Research methodology -- How to use this book -- Future studies -- Selected bibliography -- Plant monographs -- Index of plant names and health conditions.
    Abstract: This book highlights the results from over a year of ethnobotanical research in a rural and an urban community in Jamaica, where we interviewed more than 100 people who use medicinal plants for healthcare. The goal of this research was to better understand patterns of medicinal plant knowledge, and to find out which plants are used in consensus by local people for a variety of illnesses. For this book, we selected 25 popular medicinal plant species mentioned during fieldwork. Through individual interviews, we were able to rank plants according to their frequency of mention, and categorized the medicinal uses for each species as “major” (mentioned by more than 20% of people in a community) or “minor” (mentioned by more than 5%, but less than 20% of people). Botanical identification of plant specimens collected in the wild allowed for cross-linking of common and scientific plant names. To supplement field research, we undertook a comprehensive search and review of the ethnobotanical and biomedical literature. Our book summarizes all this information in detail under specific sub-headings.
    Type of Medium: Online Resource
    Pages: XVI, 257 p. 30 illus., 27 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030489274
    Series Statement: Advances in Economic Botany,
    DDC: 580
    Language: English
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    Keywords: Agriculture. ; Biotechnology. ; Agronomy. ; Agriculture. ; Biotechnology. ; Agronomy.
    Description / Table of Contents: PART 1. TECHNOLOGIES FOR SOIL FERTILITY MANAGEMENT -- Chapter 1. Animal manure and soil fertility management on smallholdings in South Africa -- Chapter 2. Integrated soil fertility management for soil fertility restoration in sub–Saharan Africa -- Chapter 3. Integrated Soil Fertility Management: A Basis for Sustainable Intensification of Maize-Based Cropping Systems of Southern Africa -- Chapter 4. Insights of microbial inoculants in complementing organic soil fertility management in African smallholder farming systems -- Chapter 5. Potential of Agroforestry Technologies and Mineral Fertilisers in Improving Soil Fertility and Crop Production in Semi-arid Areas of Africa -- Chapter 6. Integrated Soil Acidity Management for Sustainable Crop Production in South African Smallholder Farming Systems -- PART 2: WATER MANAGEMENT IN SMALLHOLDER FARMING SYSTEMS -- Chapter 7. Improving productivity of smallholder irrigation in Africa through adoption of best management practices and technologies -- Chapter 8. Being small does not make it easy: the management conundrum on smallholder canal schemes -- Chapter 9. Sustainable winery wastewater management for improving soil quality, environmental health and crop yields -- Chapter 10. Water harvesting technologies for sustainable crop production in African smallholder farming systems._ PART 3: CROP PRODUCTION TECHNOLOGIES AND PRACTICES -- Chapter 11. Advances in Sorghum Production in Smallholder Farming Systems of Africa -- Chapter 12. Knowledge and Innovation Approaches to Out-Scale Sorghum Adoption in Africa -- Chapter 13. Integration of cover crops into maize-based smallholder farmer systems of Southern Africa -- Part 4: CLIMATE SMART LIVESTOCK PRODUCTION SYSTEMS -- Chapter 14. Utilising Encroacher Bush in Animal Feeding -- Chapter 15. Opportunities for delivering sectoral climate-smart livestock interventions in southern Africa -- Chapter 16. The Benefits of Winter Cover Crops in Mixed Crop-Livestock Conservation Agriculture Systems of the Swartland Region, South Africa._ PART 5: URBAN AGRICULTURE AND FOOD SECURITY IN AFRICA -- Chapter 17. Urban Food Production Technologies, Innovations and Management Practices in Africa -- Chapter 18. Hydroponics in urban agriculture.
    Abstract: This edited book is focused on Sustainable Development Goal 2. It offers a comprehensive and topical collection of practices, technologies and innovations in the field of sustainable food production and security under a changing climate. It is a one-stop handbook for farmers, researchers, extensionists, policy makers and other stakeholders seeking to identify and disseminate best fit technologies for local and regional landscapes. It offers an understanding of the challenges, risks and uncertainties as well as opportunities to foster productive and sustainable food production. Smallholder farming and agriculture in general is facing a serious threat from climate change that has resulted in erratic and unpredictable rainfall and increased temperatures, among other abiotic stresses. These climate change induced pressures have reduced productivity mainly among the smallholder farmers, who are critical in driving the attainment of sustainable development goals like SDG 2, 12 and 13. The objective of the book is to document effective and practicable practices and technologies that can be adopted by smallholder African farmers as mitigation measures against the effects of climate change. This book is of interest to researchers, agricultural scientists, climate change scientists, capacity builders and policymakers.
    Type of Medium: Online Resource
    Pages: XIX, 337 p. 1 illus. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9789819924271
    Series Statement: Sustainable Agriculture and Food Security,
    DDC: 630
    Language: English
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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Cassava -- Cocoa -- Coconut -- Coffee -- Cotton -- Ornamental -- Jute -- Mulberry -- Sugarcane -- Tobacco -- Yam.
    Abstract: This book presents deliberations on molecular and genomic mechanisms underlying the interactions of crop plants to the abiotic stresses caused by heat, cold, drought, flooding, submergence, salinity, acidity, etc., important to develop resistant crop varieties. Knowledge on the advanced genetic and genomic crop improvement strategies including molecular breeding, transgenics, genomic-assisted breeding, and the recently emerging genome editing for developing resistant varieties in technical crops is imperative for addressing FHNEE (food, health, nutrition, energy, and environment) security. Whole genome sequencing in many of these crops followed by genotyping-by-sequencing has provided precise information regarding the genes conferring resistance useful for gene discovery, allele mining, and shuttle breeding which in turn opened up the scope for 'designing' crop genomes with resistance to abiotic stresses. The ten chapters each dedicated to a technical crop and one chapter devoted to a crop group in this volume elucidate different types of abiotic stresses and their effects on and interaction with the crops; enumerate the available genetic diversity with regard to abiotic stress resistance among available cultivars; illuminate the potential gene pools for utilization in interspecific gene transfer; present brief on classical genetics of stress resistance and traditional breeding for transferring them to their cultivated counterparts; depict the success stories of genetic engineering for developing abiotic stress-resistant crop varieties; discuss on molecular mapping of genes and QTLs underlying stress resistance and their marker-assisted introgression into elite varieties; enunciate different genomics-aided techniques including genomic selection, allele mining, gene discovery, and gene pyramiding for developing adaptive crop varieties with higher quantity and quality of yields, and also elaborate some case studies on genome editing focusing on specific genes for generating abiotic stress-resistant crops. .
    Type of Medium: Online Resource
    Pages: XXX, 457 p. 28 illus., 25 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031057069
    DDC: 580
    Language: English
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    Singapore :Springer Nature Singapore :
    Keywords: Agriculture. ; Biotechnology. ; Plant biotechnology. ; Food science. ; Plant genetics. ; Agriculture. ; Biotechnology. ; Plant Biotechnology. ; Food Science. ; Plant Genetics.
    Description / Table of Contents: Chapter 1. Plant transformation techniques -- Chapter 2. Strategies to enhance the expression of the transgene in plants -- Chapter 3. Cisgenics and crop improvement -- Chapter 4. Transgenics and crop improvement -- Chapter 5. Molecular pharming -- Chapter 6. Future prospects of GM plants.
    Abstract: This book presents up-to-date information on various vector-less/direct (physical, chemical) and vector-mediated/indirect (Agrobacterium-mediated) plant transformation techniques. It summarizes various strategies that facilitate a gene from lower organism to be expressed in higher plants and also in silico designing of synthetic gene for higher expression. It also highlights the importance of strong promoters to drive the expression of transgene(s). This book encompasses the advantages and drawbacks of cisgenesis and transgenesis, their implications towards sustainable crop improvement, and their future prospects. The importance, limitations, challenges, recent developments, and future prospects of molecular pharming is also discussed. The book concludes with a chapter that summarizes the major contribution of GM-crops towards global food security and economy, advances in genome editing for crop improvement, challenges and risk associated with the release of GM-crops, and the future of GM technology. This book is meant for students and researchers in the field of life sciences, food science, and agriculture. .
    Type of Medium: Online Resource
    Pages: XXIII, 424 p. 92 illus., 56 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811921193
    DDC: 630
    Language: English
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    Keywords: Botany. ; Genetics. ; Biotechnology. ; Plant Science. ; Genetics and Genomics. ; Biotechnology.
    Description / Table of Contents: Crocus sativus saffron: A 360 degree overview -- Reference genome of Saffron “The Golden condiment” -- “SaffronOMICS: Novel approaches towards putting saffron data at work” -- Bioinformatics for saffron-omics and crop improvement -- Genetic mapping and molecular markers in Saffron -- Soil Classification, Nutrient Management and Land Cover of Saffron Growing Areas of Kashmir Valley -- Cultromic and metabarcodic insights into saffron-microbiome associations -- “Saffron, bacteria and mycorrhiza” -- Diversity and bioprospection of fungal endophytic microbiome of Crocus sativus L. (saffron) -- Epidemiology and Management of Corm Rot of Saffron -- Pathogenicity and genetic diversity of microbes in Crocus sativus L. and various strategies combating diseases -- Tissue culture techniques for Saffron improvement -- Saffron production under control condition -- Saffron: Metabolomics and quality points of view -- Saffron in phytotherapy : Pharmocological properties and medicinal uses -- Economic Aspects of Saffron in the World -- Marketing prospects for Saffron in domestic market: the case of Moroccan PDO.
    Abstract: This book is about Saffron (Crocus sativus L.) that is the most expensive spice in the world. Though there are other books on saffron but none of them has comprehensive information on saffron genome, transcriptome, proteome, metabolome and microbiome. The book has been divided into five sections and 17 chapters that cover all the areas related to its cultivation, market & economy, genomics, transcriptomics, proteomics, metabolomics, tissue culture, microbiomics, metagenomics etc. In addition a chapter on molecular markers and their use in molecular genetic mapping in saffron that lacks genetic diversity as a sterile plant paves a way for selection of elite varieties based on the epigenetic variability. A section on in-vitro propagation elaborates on the corm production under controlled conditions. In summary this book encompasses most of the information available on this golden spice.
    Type of Medium: Online Resource
    Pages: XVIII, 300 p. 72 illus., 58 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031100000
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Genomic Designing For Biotic Stress Resistant Rice -- Globally Important Wheat Diseases: Status, Challenges, Breeding and Genomic tools to enhance resistance durability -- Resistance to Biotic Stress: Theory and Applications in Maize Breeding -- Molecular Strategies for Managing Disease Resistance in Barley -- Genomic Designing For Biotic Stress Resistance In Sorghum -- Genomic Designing for Biotic Stress Resistance in Pearl Millet -- Genomic Designing for Biotic Stress Tolerance in Foxtail millet -- Genomic Designing For Biotic Stress Resistance In Finger Millet.
    Abstract: This book presents deliberations on molecular and genomic mechanisms underlying the interactions of crop plants to the biotic stresses caused by different diseases and pests that are important to develop resistant crop varieties. Knowledge on the advanced genetic and genomic crop improvement strategies including molecular breeding, transgenics, genomic-assisted breeding, and the recently emerging genome editing for developing resistant varieties in cereal crops is imperative for addressing FHNEE (food, health, nutrition, energy, and environment) security. Whole genome sequencing of these crops followed by genotyping-by-sequencing has provided precise information regarding the genes conferring resistance useful for gene discovery, allele mining, and shuttle breeding which in turn opened up the scope for 'designing' crop genomes with resistance to biotic stresses. The eight chapters each dedicated to a cereal crop in this volume elucidate on different types of biotic stresses and their effects on and interaction with the crop; enumerate on the available genetic diversity with regard to biotic stress resistance among available cultivars; illuminate on the potential gene pools for utilization in interspecific gene transfer; present brief on classical genetics of stress resistance and traditional breeding for transferring them to their cultivated counterparts; depict the success stories of genetic engineering for developing biotic stress-resistant crop varieties; discuss on molecular mapping of genes and QTLs underlying stress resistance and their marker-assisted introgression into elite varieties; enunciate on different genomics-aided techniques including genomic selection, allele mining, gene discovery, and gene pyramiding for developing adaptive crop varieties with higher quantity and quality of yields, and also elaborate some case studies on genome editing focusing on specific genes for generating biotic stress-resistant crops. .
    Type of Medium: Online Resource
    Pages: XXII, 323 p. 24 illus., 22 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030758790
    DDC: 580
    Language: English
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    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Origin of watermelon -- Whole genome sequencing of watermelon and other relevant genomic resources -- Watermelon Genetic Resources and Diversity -- Watermelon genomic resources for disease resistance -- - The NLR family of disease resistance genes in cultivated watermelon and other cucurbits: opportunities and challenges -- Mapping of economic and quality related loci in watermelon -- Genetics and genomics of fruit and quality traits of watermelon -- Genetics and genomics of host resistance and develop disease tolerant cultivars of watermelon -- Molecular and Metabolic Regulation of Nutraceuticals in Watermelon -- Challenges of Traditional breeding in watermelon.
    Abstract: This book is the first comprehensive compilation of deliberations on botany, genetic resources and diversity, classical genetics and traditional breeding, genetic transformation, and detailed enumeration on molecular maps and mapping of economic genes and QTLs, whole genome sequencing and comparative genomics in watermelon, and elucidation on functional genomics. The genomic resources for disease resistance, genomics of fruit and quality traits of watermelon, and molecular and metabolic regulation of nutraceuticals in watermelon are discussed. Mapping of quality traits, and biotic and abiotic resistance is also to be discussed. The genome draft of watermelon and application of genome editing are covered. The book contains approximately 250 pages and over 10 chapters authored by globally reputed experts on the relevant field in this crop. This book is useful to the students, teachers, and scientists in academia and relevant private companies interested in horticulture, genetics, breeding, pathology, entomology, physiology, molecular genetics and genomics, in vitro culture and genetic engineering, and structural and functional genomics. This book is also useful for seed industries. .
    Type of Medium: Online Resource
    Pages: V, 172 p. 33 illus., 31 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031347160
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Chapter 1. Advances in The Genomic and Transcriptomic Sequencing of North American Pines -- Chapter 2. Advances in Genetic Mapping in Pines -- Chapter 3. Transposable Elements in Pines -- Chapter 4. Genomics of Climate Adaptation in Pinus Lambertiana -- Chapter 5. Maritime Pine Genomics in Focus -- Chapter 6. Understanding the Genetic Architecture of Complex Traits in Loblolly Pine -- Chapter 7. Genomics of Disease Resistance in Loblolly Pine -- Chapter 8. Genomic Advances in Research on Genetic Resistance to White Pine Blister Rust in North American White Pines -- Chapter 9. Functional Genomics of Mediterranean Pines -- Chapter 10. Pinus Sylvestris as a Reference Plant Species in Radiation Research: Transcriptomics of Trees from the Chernobyl Zone -- Chapter 11. Genomic Selection in Scots (Pinus Sylvestris) and Radiata (Pinus Radiata) Pines -- Chapter 12. Community-Based Genome Resource Needs in Pines.
    Abstract: This book is the first comprehensive compilation of the most up-to-date research in the genomics, transcriptomics, and breeding of pine species across Europe, North America, and Australia. With chapters on the state of the reference genomes, transposon function, genome-wide diversity, functional genomics, genomics of disease resistance, genomics of abiotic stress, and genomic selection, this book is a must-read for scientists, breeders, and students of plant genomics. The book contains 12 chapters over 300 pages authored by a group of world-renowned scientists in the field of pine genomics. Pines (Pinus) are the world’s most economically important forest tree species. The recent genome sequencing of several important pine species has paved the way for understanding their complex biology and helps future management and breeding efforts.
    Type of Medium: Online Resource
    Pages: XXV, 254 p. 36 illus., 34 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030933906
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Chapter 1. Moringa and Its Importance -- Chapter 2. Botanical Descriptions of Moringa spp -- Chapter 3. Effect of Different Processing Methods on Nutritional Content of Moringa Oleifera -- Chapter 4. Medicinal and Therapeutic Properties of Moringa -- Chapter 5. Classical Genetics and Traditional Breeding in Moringa -- Chapter 6. Cytogenetical Analysis of Moringa Genome -- Chapter 7. Genetic Diversity of Moringa (Moringa oleifera Lam.) -- Chapter 8. Tissue Culture and Genetic Engineering in Moringa -- Chapter 9. Molecular Markers and DNA Barcoding in Moringa -- Chapter 10. Genome Sequencing, Organellar Genomes and Comparative Genomics in Moringa -- Chapter 11. Moringa Functional Genomics: Implications of Long Read Sequencing Technologies -- Chapter 12. Bioinformatics Tools and Moringa Genomics -- Chapter 13. Biogenic Nanomaterials Using Moringa and their Applications -- Chapter 14. Moringa Processing and Value Addition: Rice Analogue from Broken Rice Fortified with Moringa Leaves and Its Effect on Iron Availability -- Chapter 15. Moringa and Its Genome: Future Prospects.
    Abstract: This book provides updated and all-inclusive data and evidences for Moringa botany, cytogenetical analysis, genetic resources and diversity, classical genetics, traditional breeding, tissue culture, genetic transformation, whole-genome sequencing, comparative genomics and elucidation on applications of functional genomics, nanotechnology, bioinformatics, processing and value addition besides providing perspectives of medicinal and therapeutic properties of Moringa. Moringa gained global attention in the recent past owing to its unique blend of affordable nutraceutical and pharmaceutical compounds in all parts of the plants. Scientific literatures supporting its health benefits besides the studies on its utility in various fields are scattered on several reports. This book is written by renowned global subject experts by compiling and narrating it in a sober style.
    Type of Medium: Online Resource
    Pages: XXIII, 185 p. 32 illus., 27 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030809560
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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    Online Resource
    Online Resource
    Singapore :Springer Nature Singapore :
    Keywords: Agriculture. ; Plant biotechnology. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Environmental management. ; Energy policy. ; Energy and state. ; Agriculture. ; Plant Biotechnology. ; Environmental Engineering/Biotechnology. ; Environmental Management. ; Energy Policy, Economics and Management.
    Description / Table of Contents: Chapter 1: Biofuels: perspective for sustainable development and climate change mitigation -- Chapter 2: Nanoparticles for Sustainable Bioenergy and Biofuel Production -- Chapter 3: Bio-hydrogen: technology developments in microbial fuel cells and their future prospects -- Chapter 4: Recent Advances in Genetic Improvement of Jatropha curcas: a potent biodiesel plant -- Chapter 5: Catalytic approach for production of hydrocarbon rich bio-oil from a red seaweed species -- Chapter 6: Seaweed biomass and microbial lipids as a source of biofuel -- Chapter 7: Microbial Biofuels: an economic and eco-friendly approach -- Chapter 8: Biofuels: sources, modern technology developments and views on bioenergy management -- Chapter 9: Integrating omics and microbial biotechnology for the production of Biofuel -- Chapter 10: An Overview on Biomass of Bamboo as a Source of Bioenergy -- Chapter 11: Advances and challenges in sugarcane biofuel development. .
    Abstract: The depletion of petroleum-derived fuel and environmental concerns have prompted many millennials to consider biofuels as alternative fuel sources. But completely replacing petroleum-derived fuels with biofuels is currently impossible in terms of production capacity and engine compatibility. Nevertheless, the marginal replacement of diesel with biofuel could delay the depletion of petroleum resources and abate the radical climate change caused by automotive pollutants. Energy security and climate change are the two major driving forces for worldwide biofuel development, and also have the potential to stimulate the agro-industry. The development of biofuels as alternative and renewable sources of energy has become critical in national efforts towards maximum self-reliance, the cornerstone of our energy security strategy. At the same time, the production of biofuels from various types of biomass such as plants, microbes, algae and fungi is now an ecologically viable and sustainable option. This book describes the biotechnological advances in biofuel production from various sources, while also providing essential information on the genetic improvement of biofuel sources at both the conventional and genomic level. These innovations and the corresponding methodologies are explained in detail.
    Type of Medium: Online Resource
    Pages: XI, 288 p. 49 illus., 32 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9789811537615
    DDC: 630
    Language: English
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    Cham :Springer International Publishing :
    Keywords: Agriculture. ; Biotechnology. ; Microbiology. ; Bioinformatics. ; Applied ethics. ; Agriculture. ; Biotechnology. ; Microbiology. ; Bioinformatics. ; Agricultural Ethics.
    Description / Table of Contents: Section I: Endophytes in Agriculture -- 1. Endophytes in the Course of Mineral Nutrient Management in Agriculture: An Introduction; D.K. Maheshwari, S. Dheeman -- 2. Biological control by fungal and bacterial endophytes; M. Romero -- 3. Microbial endophytes mediated phosphorus solubilization: Sustainable approach to improve soil fertility and plant growth; S. S. Sindhu -- 4. Cattle dung inhabiting bacteria enhance yield of Foeniculum vulgare Mill; Sandhya Dhiman -- Section II: Endophytes and Mineral Nutrition -- 5. Contribution of endophytic non–rhizobial bacteria to improve nitrogen–fixation efficiency of legume crops; Hassan Etesami -- 6. Endophytes and Sustainable Agriculture: Recent Prospects of Nutrient Management; M. Ghorbhanpour -- 7. Role of Endophytes- PGPR in yield enhancement of Sesamum indicum L. under integrated nutrient management; S. Kumar, R.C. Dubey -- 8. Beneficial Effects of Dark Septate Endophytes to Crop Mineral Nutrition; Jerri Zilli -- 9. Tropical endophytic Bacillus enhance plant growth and nutrient uptake in maize; Eliane Aparecida Gomes -- Section III: Beneficial Microbes and Mineral Nutrition -- 10. Mycorrhizal inhabiting endophytic actinobacteria in plant growth promotion; W. Pathom-Aree -- 11. Fungal endophytes in the improvement of Biomass Yield, Nutritive Value and Accumulation of Minerals in certain crops; Oscar Santamaria -- 12. Mineralization by plant growth promoting bacteria: What we know so far and where we are headed to in the genomic era?; Chokchai Kittiwongwattana -- 13. Re-evaluating the potential functions of endophytic PGPR for acquisition of mineral nutrients by plants; Becky Nancy Aloo -- 14. Bacillus sp. as PGPR and their significance in enhancement of nutrient use efficiency of certain Millet crops; Yogesh Kumar Negi, Chitra Pandey -- Conclusion: Current approaches of endophytes in mineral nutrient management; K.G. Ramawat, D.K. Maheshwari .
    Abstract: The challenges to meet the food requirement of the burgeoning population and stabilized productivity of agriculture lands can only be met by a second green revolution. After steadily declining for over a decade hunger is on the rise again, affecting million people of the global population. Therefore, crop yields must be increased substantially over the coming decades to keep pace with global food demand. The plant rhizosphere is a multidimensional and dynamic ecological environment of complicated microbe–plant interactions for harnessing essential macro and micronutrients from a limited nutrient pool. This book will showcase naturally-occurring endophyte which can be explored for nutrient mineralization and mobilization for sustainable agriculture. This will cover recent trends, prospects, critical commentaries and advancement in the research area focusing on naturally-occurring beneficial endophytic microbes. Thus, it is proposed to bring out new scientific insights and frontiers of research that have exploration of endophyte for mineral nutrient management in soil and crops. The chapters are contributed by leading scientists across the globe. The book will be useful to agronomists, microbiologists, ecologists, plant pathologists, molecular biologists, environmentalists, policy makers, conservationists, and NGOs working for the crop production and productivity development and consequently over all agricultural significance.
    Type of Medium: Online Resource
    Pages: XIII, 340 p. 33 illus., 29 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030654474
    Series Statement: Sustainable Development and Biodiversity, 26
    DDC: 630
    Language: English
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    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Agriculture. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Agriculture.
    Description / Table of Contents: Chapter 1. Economic Importance of Jute -- Chapter 2. Botany of Jute (Corchorus spp.) -- Chapter 3. Chemistry of Jute and Its Applications -- Chapter 4. Germplasm Resources in Jute -- Chapter 5. DUS Test and DNA Fingerprinting Construction of Jute Varieties -- Chapter 6. Jute Interspecific Hybrids: Development, Characterization and Utilization -- Chapter 7. Classical Genetics, Cytogenetics and Traditional Breeding in Jute -- Chapter 8. Challenges of Jute Transformation -- Chapter 9. Molecular Linkage Mapping: Map Construction and Mapping of Genes/Qtls -- Chapter 10. Jute Genome Sequencing: An Indian Initiative -- Chapter 11. Jute Genome Sequencing: A Bangladeshi Initiative -- Chapter 12. Jute Genome Sequencing: A Chinese Initiative -- Chapter 13. Comparative Genomics and Synteny within Cochorus Species and Among Malvaceaes Genomes -- Chapter 14. Organelle Genome Sequencing and Phylogenetic Relationship of Jute -- Chapter 15. Functional Genomics of Jute -- Chapter 16. Jute Genomic Resources and Data Base -- Chapter 17. Genetics and Genomics of Bast Fiber Development -- Chapter 18. Genetics and Genomics of Biotic Stress Resistance of Jute -- Chapter 19. Genomics and Genetics of Drought and Salt Tolerance in Jute -- Chapter 20. Flowering Pathway of Jute Based on Genomic Data -- Chapter 21. Power of Molecular Markers and Genomics Technology on Jute Breeding.
    Abstract: This book is the first comprehensive compilation of deliberations on jute botanical descriptions, germplasm resources, genetic diversity and population structure, DUS test and DNA fingerprinting, interspecific hybridization, classical genetics, cytology and cytogenetics, genetic transformation; and detailed enumeration on molecular mapping, genome sequencing initiatives of three major jute fiber producing countries, interspecific and intergeneric comparative genomics, organellar genomes, elucidation on functional genomics and genomics resources and database. Genetics and genomics of bast fiber development, biotic stress resistance, abiotic stress tolerance, and flowering pathways have also been discussed. It also presents a narrative on the power of molecular markers and genomics technology on jute breeding. Altogether, the book contains about 400 pages over 21 chapters authored by internationally reputed experts on the relevant field in this crop. This book will be useful to the students, teachers and scientists in the academia and relevant private companies interested in agronomy, genetics, pathology, entomology, physiology, molecular genetics and breeding, genetic engineering, and structural and functional genomics.
    Type of Medium: Online Resource
    Pages: XXXII, 342 p. 88 illus., 61 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030911638
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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    Cham :Springer International Publishing :
    Keywords: Botany. ; Genetics. ; Biotechnology. ; Pharmacology. ; Plant Science. ; Genetics and Genomics. ; Biotechnology. ; Pharmacology.
    Description / Table of Contents: Chapter 1. Botanical Features of Periwinkle, Catharanthus roseus -- Chapter 2. Catharanthus roseus: A Source of Anticancer Phytomedicines -- Chapter 3. Classical Breeding and Trait Genetics in Catharanthus -- Chapter 4. Somatic Embryogenesis in Catharanthus roseus: Proteomics of Embryogenic and Nonembryogenic Tissues; and Genome Size Analysis of Regenerated Plant -- Chapter 5. Alkaloid Synthesis in in vitro Cultures of Catharanthus roseus: Capabilities and Limitations -- Chapter 6. Genetic Transformation in Catharanthus roseus -- Chapter 7. Molecular Markers and Descriptor’s Suitable for Quantitative Trait Loci and Genome Mapping in Catharanthus roseus -- Chapter 8. Sequencing the Genome of Catharanthus roseus: Status and Prospects -- Chapter 9. Functional Genomics Approaches for Gene Discovery Related to Terpenoid Indole Alkaloid Biosynthetic Pathway in Catharanthus roseus -- Chapter 10. Future Prospects for Research on Catharanthus roseus.
    Abstract: This book is the first comprehensive compilation of deliberations on botany, medicinal importance, genetic diversity, classical genetics and breeding, in vitro biosynthesis, somatic embryogenesis, genetic transformation, molecular mapping, genome sequence, and functional genomics of Catharanthus roseus. Catharanthus is the most important medicinal plant in the world that contains about 130 therapeutic alkaloids out of which vinblastine and vincristine are the two highly used anticancer drugs sold by the pharmaceutically industries. Altogether, the book contains about 10 chapters authored by globally reputed experts on the relevant field of this plant. This book is useful to the students, teachers and scientists in the academia and relevant private companies interested in horticulture, genetics, breeding, pathology, entomology, physiology, molecular genetics and breeding, in vitro culture and genetic engineering, and structural and functional genomics. This book is also useful to pharmaceutical industries.
    Type of Medium: Online Resource
    Pages: XXV, 183 p. 86 illus., 62 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030892692
    Series Statement: Compendium of Plant Genomes,
    DDC: 580
    Language: English
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    Singapore :Springer Nature Singapore :
    Keywords: Agriculture. ; Food science. ; Biotechnology. ; Nutrition   . ; Botanical chemistry. ; Agriculture. ; Food Science. ; Biotechnology. ; Nutrition. ; Plant Biochemistry.
    Description / Table of Contents: Chapter 1. Overview -- Chapter 2. Impact of forage availability on livestock rearing and socio- economic aspects -- Chapter 3. Forage resources in Himalayan region -- Chapter 4. Constraints affecting forage availability in Himalayan region -- Chapter 5. Factors influencing forage nutritional quality -- Chapter 6. Forage genetic resources (FGR) -- Chapter 7. Approaches for nutritional quality improvement in forages -- Chapter 8. Nutritional and anti-nutritional constituents in forages -- Chapter 9. Nutritional quality estimation of forages -- Chapter 10. Nutritional quality of major forage grasses of Himalayan region -- Chapter 11. Forage legumes in Himalayan region -- Chapter 12. Fodder trees in mitigating forage demand -- Chapter 13. Prospects of non-conventional feed resources of Himalayan region -- Chapter 14. Improving quality and digestibility of crop residues -- Chapter 15. Biotechnological techniques for nutritional quality improvement in forages.-Chapter 16. Lignin: possible manipulations in forages -- Chapter 17. Post-harvest processing and conservation of forages -- Chapter 18. Effect of harvest and storage on forage quality -- Chapter 19. Challenges and opportunities in forage and livestock production in Himalayan region.
    Abstract: The book discusses up-to-date and detailed information about the nutritional quality of forage in the biodiversity-rich Himalayan region and their potential in livestock feeding. • Provides a comprehensive discussion on the prospects of Himalayan forages. • Collates findings and data based on more than two decades of research on nutritional quality of different temperate grasses, fodder trees, legumes and non-conventional forage resources. • Includes information on different forage resources, nutritional quality of forages, niche based nutritive forage species, varietal improvement of different species for nutritionally rich forages, non-conventional forages and modern biotechnological intervention for quality improvement of forages. • Offers a valuable resource of information on forages for researchers and policymakers • Include information oriented toward livestock feeding, influencing their health, production and productivity affecting economic status of farmers. • Presents exhaustive information on forage species along with pictorial presentations. The target audience will be researchers and scientists in public and private institutions (e.g. government, academia, dairy industry), policy planners, animal nutritionists and students. The monograph is relevant for the readers interested in understanding forage quality for livestock feeding and suggest models for quality improvement of forages worldwide, in similar topographies. It is also relevant to the researchers studying forage improvement and biofortification for nutritional enhancement for improving livestock health and productivity.
    Type of Medium: Online Resource
    Pages: XXIX, 590 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811654374
    DDC: 630
    Language: English
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  • 60
    Keywords: Agriculture. ; Biotechnology. ; Botany. ; Agriculture. ; Biotechnology. ; Plant Science.
    Description / Table of Contents: Chapter 1. Introduction: Growth of agricultural waste, its disposal, and related environmental issues -- Chapter 2. Global status of agricultural waste-based industries, challenges and future prospects -- Chapter 3. Technoeconomic and Sustainability Analysis of Agricultural Waste Conversion Technologies -- Chapter 4. Biochemical approach for transformation of agricultural waste to bioenergy production and other value-added products through the bioelectrochemical system -- Chapter 5. Energy-efficient Bio-electrochemical system for treatment of agricultural wastes and wastewater: mechanism, scope and challenges -- Chapter 6. Microbial Conversion of Agricultural Residues into Organic Fertilizers -- Chapter 7. Thermochemical approach for sustainable transformation of agricultural waste into value-added end-products -- Chapter 8. Advances in Thermochemical Valorization of Agricultural Waste -- Chapter 9. Conversion of Agricultural Waste with Variable Lignocellulosic Characteristics into Biochar and its Application -- Chapter 10. Agricultural waste-based biochar for soil carbon sequestration and emission reduction: Preparation, evaluation, application, and mechanism -- Chapter 11. Contemporary Approaches for Biochar Production from Agro-Waste and Its Current and Prognostic Applications in Environment Health -- Chapter 12. Valorisation of Sugarcane Bagasse Fly Ash into a Low Cost -Adsorbent Material for Removal of Heavy Metals: A Review -- Chapter 13. Extraction of lignin from various agricultural biomass: Its characterization and applications -- Chapter 14. Rice husk: from agro-industrial to modern applications -- Chapter 15. Production and application of nano-materials from agricultural waste -- Chapter 16. Agricultural waste as a source of fine chemicals -- Chapter 17. Centralized approach for the agricultural waste-based industry -- Chapter 18. Decentralized Composting and Vermicomposting for Agricultural Waste Management: Recycle at Source.
    Abstract: This edited book provides a comprehensive review of the current agricultural waste disposal techniques focusing on the ongoing research in the production of various agro waste-derived value-added products. Further topic includes the techno-economic aspects in up-scaling the technology from lab scale to commercial/pilot scale. Sustainable waste management and alternative renewable energy sources are the most important requirements in this era of rapid industrialization and urbanization. Agricultural waste, which is one of the major contributors to overall waste production, has the ability to be an essential source of renewable energy and other valuable products. The ongoing research and technical advancements in agro-waste treatment lead to the efficient conversion of waste into different value-added products. This book is of primary interest to academicians, researchers, scientists and engineers working in the field of agro-residue management, and biomass to bio-energy conversion technologies. Also, the book serves as reading material for students of Environmental Engineering/Civil and Environmental Engineering and Agricultural Engineering. Rural Management authorities, Industrial and Government policy-making agencies may also find it useful read.
    Type of Medium: Online Resource
    Pages: XVII, 419 p. 1 illus. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9789819944729
    DDC: 630
    Language: English
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