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  • 1
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Botanical chemistry. ; Plant physiology. ; Agriculture. ; Plant Science. ; Plant Biochemistry. ; Plant Physiology. ; Agriculture.
    Description / Table of Contents: How the three organ-produced signals: auxin, cytokinin and gibberellin, induce and regulate wood formation and adaptation -- Role of plant growth regulators in the plant-environment interaction and epigenetic regulation of auxin -- The role of auxin and cytokinin signaling components in de novo shoot organogenesis -- Mechanism of crosstalk between cytokinin and gibberellin -- In vitro responses of some Mediterranean fruit crops to auxin, cytokinin and gibberellin treatments -- Integrative approach of the root architecture by interaction between auxin and nutrients -- Insights into Biosynthesis and Signaling of Cytokinins during Plant Growth, Development and Stress Tolerance -- Cytokinin signaling in plants under salt stress -- Auxin and Cytokinin Signaling in Plant Stress Response -- Gibberellins' cross talk and signal transduction in plant stress response -- Crosstalk between Salicylic acid and Auxins, Cytokinins and Gibberellins under biotic stress -- Understanding the crosstalk between chromatin remodeling mechanism and phytohormones signaling for maintenance of plant developmental plasticity: an insight -- Phytohormone-mediated regulation of sprouting in tuber and storage root crops -- Role of phytohormones in plant-microbial interaction -- Iron toxicity tolerance in rice: roles of auxins and gibberellins -- New auxin and cytokinin related compounds based on synthetic low molecular weight heterocycles.
    Abstract: Plant hormones have pivotal roles in the regulation of plant growth, development, and reproduction. Their signaling pathways are interconnected in a complex network, which provides plants with an enormous regulatory potential to rapidly adapt to their environment and to utilize their limited resources for growth and survival in a cost-efficient manner. Auxin is a hormone molecule whose activity levels are most important for its regulatory roles during plant cell, organ, and tissue development. Therefore, the precise regulation of auxin levels is an essential mechanism to fine-tune the activity of this powerful hormone during plant growth and development. Likewise, cytokinins exhibit a wide range of physiological functions, including regulation of shoot and root apical meristems, stimulation of branching, vascular development, chloroplast differentiation, stabilization of the structure and function of the photosynthetic machinery, delay of senescence, stomata opening, and elevation of the sink strength and nutritional signaling. Moreover, gibberellins also regulate many aspects of plant growth and development including seed germination, stem elongation, leaf expansion, and flower and fruit development. The broad implication of gibberellins in plant development is strictly associated with tight regulation of their metabolism by multiple environmental and endogenous factors, ranging from light and temperature to other hormones including feedback control. Understanding the significant roles of these phytohormones in plant biology, the current subject has attracted the attention of scientists from across the globe. This comprehensive volume “Auxins, Cytokinins and Gibberellins Signaling in Plants” highlights the various prospects involved in the current scenario. The book comprises the chapters from diverse areas dealing with biotechnology, molecular biology, proteomics, genomics, metabolomics, etc.
    Type of Medium: Online Resource
    Pages: IX, 377 p. 63 illus., 39 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031054273
    Series Statement: Signaling and Communication in Plants,
    DDC: 580
    Language: English
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  • 2
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Plant biotechnology. ; Pharmaceutical chemistry. ; Agriculture. ; Proteins . ; Plant Science. ; Plant Biotechnology. ; Pharmaceutics. ; Agriculture. ; Protein Biochemistry.
    Description / Table of Contents: Chapter. 1. Molecular Farming in Plants: Introduction and Applications -- Chapter. 2. Tools and Techniques Used in Plant Molecular Farming -- Chapter. 3. Production of plant natural products in heterologous microbial species -- Chapter. 4. Sustainable Manufacturing of Vaccines, Antibodies, and other Pharmaceuticals -- Chapter. 5. Limitations, Biosafety, ethics, regulatory issues in molecular farming in plants -- Chapter. 6. Conclusion and Perspectives.
    Abstract: Molecular farming is a biotechnological approach that includes the genetic adjustment of agricultural products to create proteins and chemicals for profitable and pharmaceutical purposes. Plant molecular farming describes the manufacture of recombinant proteins and other biologically active product in plants. This approach depends on a genetic transformation of plants that can be accomplished by the methods of stable gene transfer, such as gene transfer to nuclei and chloroplasts, and unstable transfer methods like viral vectors. The requirement for recombinant proteins in terms of quality, quantity, and diversity is increasing exponentially This demand is traditionally met by recombinant protein construction technologies and the engineering of orthodox expression systems based on bacteria or mammalian cell cultures. However, majority of developing countries cannot afford the high costs of medicine derived from such existing methods. Hence, we need to produce not only the new drugs but also the cheaper versions of those already present in the market. Plant molecular farming is considered as a cost-effective technology that has grown and advanced tremendously over the past two decades. This book summarizes the advances and challenges of plant molecular farming for all those who are working on or have an interest in this rapidly emerging area of research.
    Type of Medium: Online Resource
    Pages: IX, 77 p. 10 illus., 9 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031127946
    Series Statement: SpringerBriefs in Plant Science,
    DDC: 580
    Language: English
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  • 3
    Online Resource
    Online Resource
    Singapore :Springer Nature Singapore :
    Keywords: Botany. ; Agriculture. ; Plant molecular biology. ; Botanical chemistry. ; Plant Science. ; Agriculture. ; Plant Molecular Biology. ; Plant Biochemistry.
    Description / Table of Contents: Chapter 1. Plant Metal and Metalloid Transport -- Chapter 2. Heavy Metals: Transport in Plants and their Physiological and Toxicological Effects -- Chapter 3. The Role of ABC Transporter in Metal Tranasport in Plants -- Chapter 4. Cadmium, A Non-Essential Heavy Metal: Uptake, Translocation, Signaling, Detoxification, and Impact on Amino Acid Metabolism -- Chapter 5. Natural Resistance Associated Macrophage Proteins (NRAMP): Functional Significant of Metal Transport in Plants -- Chapter 6. Role of Heavy Metal Atpases in Transport of Cadmium and Zinc in Plants -- Chapter 7. The Versatile Role of Plant Aquaglyceroporins in Metalloid Transport -- Chapter 8. The Multidrug and Toxic Compound Extrusion (MATE) Family in Plants and Their Significance in Metal Transport -- Chapter 9. Molecular Mechanism of Aluminium Tolerance in Plants: An Overview -- Chapter 10. Functional, Structural, and Transport Aspects of ZIP in Plant -- Chapter 11. The Function of HAK as K+ Transporter and AKT as Inward Rectifying Agent in The K+ Channel -- Chapter 12. The Mechanism of Silicon Transport in Plants -- Chapter 13. The Copper Transport Mechanism in Plants -- Chapter 14. Plant Metal Tolerance Proteins: Insight Into their Roles in Metal Transport and Homeostasis for Future Biotechnological Applications -- Chapter 15. Co-Transport Mechanism in Plants for Metals and Metalloids -- Chapter 16. Metal Nanoparticles Implication, Transport, and Detection in Plants -- Chapter 17. Transcription Factors and Metal Stress Signalling in Plants -- Chapter 18. Heavy Metal Transporters, Phytoremediation Potential and Biofortification -- Chapter 19. Phytoremediation and Biofortification: Contrasting Yet Similar Approaches of Manipulating Plant Metal(Loid) Homeostasis for Societal Benefit.
    Abstract: This edited book stands as a one place knowledge hub for plant metal(loid) transporters. The book comprehensively covers holistic aspect of metal(loid) transporters involved in uptake and translocation of essential as well as toxic metal(loid)s. Essential and beneficial metal(loid)s are required in every biological process for normal plant growth and development, however in excess they are toxic. There are toxic metal(loid)s also whose accumulation in plants interferes with normal cellular functioning and hampers growth of plants. Hence, metal(loid) uptake and accumulation in plants is a highly regulated phenomenon involving the role of several transporters, enzymes, metabolites, transcription factors and post translational modifications. The book contains chapters from the experts and the contents of the book are presented in simple language and represented through beautiful and scientifically informative figures and tables. This book is of interest to teachers, researchers, doctoral and graduate students working in the area of plant physiology, environmental biotechnology, plant biotechnology metal(loid) stress, phytoremediation and crop biofortification.
    Type of Medium: Online Resource
    Pages: XIII, 454 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811961038
    DDC: 580
    Language: English
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  • 4
    Keywords: Botany. ; Biochemistry. ; Plant Science. ; Chemical Biology.
    Description / Table of Contents: Chapter 1. An overview of medicinal plants of the Asteraceae family and their impact on human health -- Chapter 2. Artemisia annua L.: Traditional uses, Phytochemistry and Pharmacological activities -- Chapter 3. Artemisia indica Wild.: Ethnobotany, phytochemistry, pharmacological attributes and safety profile -- Chapter 4. Arnica montana L.: Traditional uses, bioactive chemical constituents, and pharmacological activities -- Chapter 5. Aster tataricus L.f.: Ethnomedicinal uses, phytochemistry and pharmacological activities -- Chapter 6.Atractylodes lancea (Thunb.) DC.: Ethnobotany, phytochemistry, pharmacological attributes and safety profile -- Chapter 7. Carthamus tinctorius L.: Traditional uses, phytochemistry and pharmacological activities -- Chapter 8.Chrysanthemum morifolium Ramat.: A Medicinal Plant with Diverse Traditional Uses, Bioactive Constituents, and Pharmacological Activities -- Chapter 9.Crassocephalum crepidioides (Benth.) S.Moore: Traditional uses, chemical constituents and biological activities -- Chapter 10. Dolomiaea costus (Falc.) Kasana & A. K. Pandey: Ethnomedicinal uses, bioactive chemical constituents and Pharmacological activities -- Chapter 11.Eclipta prostata (L.) L.: Traditional use, phytochemistry and pharmacology -- Chapter 12. Helianthus annuus L.: Traditional uses, phytochemistry and pharmacological activities -- Chapter 13. Silybum marianum (L.) Gaertn.: Traditional uses, phytochemistry and pharmacological activities.
    Abstract: This book highlights 12 major plants in the Asteraceae family from the aspects of traditional uses as food and medicine, phytochemistry, and pharmacological activities. Asteraceae is one of the largest family of flowering plants comprising over 1,600 plant genera and 32,000 plant species. Plants belonging to this family have a long history of being used as medicinal plants for the treatment of various diseases. Many of them are also used in the preparation of foods, beverages, and also used in pharmaceutical and cosmetic industries. In addition, plants such as Artemisia annua have played an important role in the discovery of novel drugs. The book summarizes the traditional uses of the plants in the family Asteraceae and their scientific validation, which helps readers understand their relation and impact on human health. It also explains the Phytochemistry of the species and presents the pharmacological activities and mechanisms in detail. Understanding current scientific knowledge will help in the commercialization of products based on these plants and also helps to find the research gaps that should be fulfilled in the future for their optimal use. It also helps in increasing the awareness of the plant species related to conservation, cultivation, and sustainable utilization. This edited volume comprises chapters contributed by experts from around the world. .
    Type of Medium: Online Resource
    Pages: IX, 230 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811960802
    DDC: 580
    Language: English
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  • 5
    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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  • 6
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Agronomy. ; Plant diseases. ; Plant Science. ; Agronomy. ; Plant Pathology.
    Description / Table of Contents: Chapter 1. History of medicinal plants research in India -- Chapter 2. Importance of medicinal and aromatic plants in our day-to-day life -- Chapter 3. Major diseases of important medicinal and aromatic plants An Indian subcontinent perspective -- Chapter 4. Introduction to MAPs in India : Distribution , diversity and conservation and uses -- Chapter 5. Diversity of MAPs in India and its potential -- Chapter 6. Ethnomedicinal , phytochemistry and pharmacological properties of Arnebia species -- Chapter 7. Diversity of medicinal and aromatic plants with special reference to endemic plants of India -- Chapter 8. Distribution, chemical composition and ethnomedicinal appraisal of endangered medicinal plants of Kashmir Himalaya , India -- Chapter 9. Chemical diversity and ethnobotanical survey of Indian MAP species -- Chapter 10. Traditional uses of medicinal and aromatic plants among Indian tribes -- Chapter 11. Opportunities and challenges in ethnobotanical survey of Indian medicinal and aromatic plants -- Chapter 12. Breeding of MAPs in India : Achievements and prospects -- Chapter 13. Conservation of wild MAPs : Constraints achievements and prospects -- Chapter 14. Quality assurance and quality control of MAPs in India -- Chapter 15. Chromatographic analysis of medicinal plants for quality control -- Chapter 16. Expanding horizones : Role of biotechnology in MAP research, production and utilization -- Chapter 17. Role of biotechnology in MAP research, production and utilization -- Chapter 18. Integrated transcriptomics and proteomics approaches to study secondary metabolic pathways in medicinal plants: Recend trends -- Chapter 19. Demand and use of medicinal plants of India -- Chapter 20. Major diseases of medicinal and aromatic plants : An overview of constraints in production and management strategies -- Chapter 21. Role of medicinal and aromatic plants in the cosmetic industry -- Chapter 22. Harbouring the potential of medicinal and aromatic plants of India: A biotechnological approach -- Chapter 23. Quality assurance of cultivated and aromatic plants : Good agricultural and collection practices (GAP and GCP) -- Chapter 24. Breeding and Germplasm preservation of medicinal and aromatic plants of India.
    Abstract: This book is the 8th volume of the popular series ‘Medicinal and Aromatic Plants of the World’. Like the previous volumes, this volume is being introduced in a monographic format containing an extremely rich and diverse medicinal flora of India. Both well-known and somewhat still ignored species have been described in view of their traditional, present day and prospective uses. The scientific and technological achievements are also included aptly in this volume, together with a careful and critical consideration to our contemporary knowledge of this vast interdisciplinary domain with an Indian focus. In the era of global climate change and pandemics, building on the huge Indian traditions, this volume will make an important contribution to the better knowledge and understanding of MAPs. The Indian flora has always been recognized for its medicinal and aromatic plant values and this volume is explicitly focusing in that direction. With the rapidly expanding scope of natural nutraceuticals and herbal formulations, this book will be a fruitful acquisition for the interested readers globally.
    Type of Medium: Online Resource
    Pages: XVIII, 430 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030987015
    Series Statement: Medicinal and Aromatic Plants of the World, 8
    DDC: 580
    Language: English
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  • 7
    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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  • 8
    Keywords: Botany. ; Alternative medicine. ; Pharmacovigilance. ; Plant Science. ; Complementary and Alternative Medicine. ; Drug Safety and Pharmacovigilance.
    Description / Table of Contents: Adverse effects of herbal medicines -- Interactions between herbal and conventional medicines -- Molecular basis of herbal adverse drug reactions (ADRs) -- Detecting and assessing signals of herbal safety concerns -- Spontaneous reporting of suspected herbal ADRs: national and global perspectives -- Herbal-sector: initiated schemes for reporting herbal ADRs -- Industry and regulatory perspectives on herbal ADRs and ADR reporting -- Applying pharmacoepidemiological methods to investigating safety of herbal medicines -- Impact of traditional herbal medicinal products directive on pharmacovigilance of herbal medicines -- Communication of herbal safety concerns -- Risk management strategies for herbal medicines -- Pharmacogenomics and herbal medicines -- Nomenclature and quality of herbal medicines. .
    Abstract: This remarkable new book is the first text dedicated to the topic of pharmacovigilance for herbal and traditional medicines. Taking a truly global perspective, this volume draws together contributions from a diverse group of experts, writing on current knowledge and practices in pharmacovigilance for herbal and traditional medicines, and on advances and innovation in monitoring the safety of this unique and complex category of products and preparations. In part one, the book discusses the current status of pharmacovigilance for herbal and traditional medicines, including the importance of natural products chemistry to harms, and its relevance in considering how pharmacovigilance for these products could be undertaken. Several other chapters discuss methodological approaches and ongoing challenges in pharmacovigilance for herbal and traditional medicines, including issues relating to nomenclature, coding and classification, and the nuances involved in causality assessment. Part two of the book focusses on pharmacovigilance for herbal and traditional medicines around the world, with chapters from authors in several different countries representing diverse historical, ethnic, cultural, social and political contexts. These chapters provide deeper insights and perspectives into spontaneous reporting for herbal and traditional medicines in those countries, and in the context of the local use, practice and regulatory landscape for these products. Part two also provides an overview and new analysis of international case safety reports for herbal medicines held in VigiBase (the World Health Organization's global database of individual case safety reports, maintained by the Uppsala Monitoring Centre). This book is aimed at pharmacists, doctors, nurses and other health professionals, herbal-medicine practitioners and organisations, herbal medicine and pharmaceutical industry personnel, pharmacovigilance specialists, medicines’ regulators, health and social science researchers and academics, pharmacovigilance and health professional students, and students of herbal and traditional medicine, throughout the world. It is an extremely valuable resource for all individuals whose work touches the intersection between herbal medicines and pharmacovigilance, and it provides both an introduction to the topic and a deeper, comprehensive, contemporary account of the topic.
    Type of Medium: Online Resource
    Pages: XXII, 409 p. 22 illus., 16 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031072758
    DDC: 580
    Language: English
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  • 9
    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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  • 10
    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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  • 11
    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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  • 12
    Keywords: Botany. ; Biodiversity. ; Plant ecology. ; Conservation biology. ; Ecology . ; Plant Science. ; Biodiversity. ; Plant Ecology. ; Conservation Biology.
    Description / Table of Contents: Flowering phenology in a restinga community: seven years of study -- Dioecy: the dimorphic sexual system and pollination in restinga vegetation -- Male and female sterility in flowering plants -- Broad-scale variation of phytoplankton richness in Brazilian inland waters -- The Importance of Palynology to Taxonomy -- Ecological Palynology -- Scientific Exploration Commission (1859-1861): Freire Allemão and the invisible network of collaborators -- The former Imperial Plant Nursery of Quinta da Boa Vista -- Medicinal plants used in Quilombola communities in Piranga, State of Minas Gerais, Brazil -- From mulungu to mamulengo”: The sharing of knowledge among teachers, academic researchers and mamulengueiros (traditional puppeteers) in a participatory workshop -- Biocultural heritage through museological narrative as a way of return on research in historical ethnobotany -- Conclusion of the reflections on Aspects of Brazilian Floristic Diversity: From Botany to Traditional Communities.
    Abstract: Aspects of Brazilian Floristic Diversity: From Botany to Traditional Communities offers a unique approach in floristic diversity of the Neotropical region, specifically encompassing the Brazilian flora. This volume combines both theoretical and applied aspects of scientific making knowledge in different perspectives of Botanical Science. In this volume, botanical specialists discuss the many different approaches of taxonomic, reproductive, ecological and ethnobotanical aspects of Brazilian floristic diversity, thereby enlightening the global interest in Neotropical species, in particular those from the Brazilian territory. The book addresses relevant questions from many points of view, including anatomy, reproduction, palinology, conservation and ethnobotany, creating an in-depth perception of the flora in its complexity constitution. The book provides a comprehensive outlook on Botany Sciences, considering the history and traditional knowledge of plants, and relating it to contemporary problems and concerns of flora conservation today. With this current perspective, this book reaches a vast audience from the research lines of Botany, and encompasses a broader and interdisciplinary understanding of Aspects of Brazilian Floristic Diversity.
    Type of Medium: Online Resource
    Pages: XXIV, 268 p. 49 illus., 42 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031074530
    DDC: 580
    Language: English
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  • 13
    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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  • 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: 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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  • 15
    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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  • 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: 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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  • 17
    Keywords: Botany. ; Genetics. ; Biology Technique. ; Biology. ; Molecular biology. ; Biochemistry. ; Plant Science. ; Genetics and Genomics. ; Biological Techniques. ; Biological Sciences. ; Molecular Biology. ; Chemical Biology.
    Description / Table of Contents: 1.Phytochemical genomics: integration of omics approaches for understanding genomic basis of phytochemicals -- 2.Gene-metabolite networks -- 3.Computational approaches in phytochemical genomics -- 4.Databases relevant to phytochemicals and genes responsible -- 5.Biosynthetic pathways of important metabolites using genomics and metabolomics approaches -- 6.Phytochemical diversity and the diverse roles of phytochemicals in plants -- 7.Role of genomics and metabolomics for breeding crops with higher quantity of metabolites -- 8.Metabolic quantitative trait loci mapping of medicinal plants and crops -- 9.Tools for metabolomics analysis of plants -- 10.Trichomes as an important chemical factories of metabolites -- 11.Stress and metabolites -- 12.Evolution of metabolite diversity and defense mechanisms in plants -- 13.Pathway engineering of genes -- 14.Demand-supply of phytochemicals and the need for ensuring sustainable supply of plants -- 15.Drug discovery and omics -- 16.Gene editing technologies for scaling up production of secondary metabolites -- 17.Medicinal plants and use of omics approaches -- 18.Metabolomics of important medicinal plants -- 19.Transcriptomics of important medicinal plants.
    Abstract: This book provides a comprehensive reference for various plant bioactive compounds for research and pharmacological significance across the entire spectrum of phytochemical genomics. The book opens with general information on diversity, analysis and genomic basis of phytochemicals, computational approaches, databases for responsible genes, and biosynthetic pathways, and it delves very much into the details behind phytochemical diversity and diverse roles of plant metabolites. The later parts of the book also explore the direct drug discovery and omics approaches including metabolomics, transcriptomics, as well as gene editing technology experiments to further inspire readers into its unlimited potentials. Each chapter includes detailed analysis and relevant experiments for better and deeper understanding of the concepts. The book will be an invaluable aid for medicinal plant researchers and a rich source of information and advice for advanced undergraduates and graduates in the fields of medicine, nutraceuticals, cosmetics, flavor, and fragrance studies.
    Type of Medium: Online Resource
    Pages: XVIII, 698 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811957796
    DDC: 580
    Language: English
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  • 18
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Agriculture. ; Genetics. ; Plant Science. ; Agriculture. ; Genetics and Genomics.
    Description / Table of Contents: Introduction -- Grape Species -- Grape Rootstocks Breeding -- Grape Scion And Rootstock -- Biotic Stresses And Rootstock Selection -- Abiotic Stresses And Rootstock Selection -- Rootstocks And Vineyard Design Considerations -- Function Of Grape Rootstock -- Choosing Grape Rootstock -- Nursery Stock Certification And Testing Programs -- Commercial Grape Rootstocks Selections. .
    Abstract: This book covers about 20 grape species that are vitally important in breeding programs and provide information on approximately 150 of the most familiar grape rootstocks in the world. Today, grape rootstocks play a fundamental role in resistance to biotic and abiotic stresses and adaptation of grapevine to different environmental conditions, a factor that has opened commercial grape growing up to regions that might otherwise be overlooked. Grape rootstocks can be used for adaptation to a variety of soil conditions, including soil texture, depth, nutrient availability, pH, salinity, lime content, water availability (drought), and water drainage. Rootstocks can also be used to shift scion cultivar; the timing of various key phenological events and indirectly affects vineyard design. There are around 1500 grape rootstocks developed in the world, of which around 50 are commonly used as commercial rootstock. North American species account for around 30 species, and two-third of them have already been used for rootstock breeding at one time or another. However, the most commonly available rootstocks are derived from just three American species (V. berlandieri, V. rupestris, and V. riparia). Therefore, the most common grape rootstocks have a narrow genetic base, and efforts to extend the gene pools for breeding programs by using the other species are of ongoing importance to the industry and scientific community. .
    Type of Medium: Online Resource
    Pages: XVIII, 201 p. 32 illus., 17 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030994075
    DDC: 580
    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: 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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  • 20
    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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  • 21
    Keywords: Botany. ; Microbiology. ; Agriculture. ; Bioinformatics. ; Microbial ecology. ; Physical geography. ; Plant Science. ; Microbiology. ; Agriculture. ; Bioinformatics. ; Microbial Ecology. ; Earth System Sciences.
    Abstract: The third volume of the series ‘Bacilli and Agrobiotechnology’ is comprised of 25 chapters that bring a unique perspective to the readers about Bacillus-mediated biotic and abiotic plant stress tolerance, bioremediation and bioprospecting. These chapters are prepared by the leading scientists of global repute. The negative impacts of agrochemicals such as chemical fertilizers and pesticides on human health and environment are paramount. Bacillus and allied genera of beneficial plant-associated microbes are presenting beacon of hope to the farmers, plant scientists and stewards of environment. Several chapters of this volume focus on the induction of various signaling pathways in plants by Bacillus spp. to alleviate biotic and abiotic stresses impacted by global climate change Agricultural lands contaminated with heavy metals affect the ecological food chain starting from crop cultivation. How the toxic effects of trace metals originating from industrial effluents and agrochemicals can be remediated? This book addresses how to overcome these issues by applying elite strains of Bacillus. Bioprospecting is a systematic and organized search for conversion of bioresources to industrially important products by utilizing microbe-derived metabolites. This volume is enriched by including the bioprospecting aspects mediated by Bacillus spp. with novel insights.
    Type of Medium: Online Resource
    Pages: VII, 612 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030854652
    Series Statement: Bacilli in Climate Resilient Agriculture and Bioprospecting,
    DDC: 580
    Language: English
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  • 22
    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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  • 23
    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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  • 24
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Biology Technique. ; Cytology. ; Imaging systems in biology. ; Plant Science. ; Biological Techniques. ; Cell Biology. ; Biological Imaging.
    Description / Table of Contents: Chapter 1 - Introduction to Plant Histopathology -- Chapter 2 - Sample Preparation for light and Electron microscopy -- Chapter 3 - Plant Histopathology techniques -- Chapter 4 - Fungal detection Chapter 5 - Bacteria detection -- Chapter 6 - Virus detection.
    Abstract: This handbook presents a compilation of plant histopathology laboratory practices and microscopy techniques for study plant tissues under biotic stress. It will serve as an easy-to-reference material for professors, undergraduate and graduate students and researchers from different areas who work with the interaction between plants and pathogens, whether they are fungi, viruses or bacteria. Besides, it will also help unveil the structural, ultrastructural and histochemical changes induced by plants when challenged by plant pathogens.
    Type of Medium: Online Resource
    Pages: XI, 80 p. 22 illus., 19 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031146596
    DDC: 580
    Language: English
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    Keywords: Botany. ; Bioclimatology. ; Environment. ; Plant Science. ; Climate Change Ecology. ; Environmental Sciences.
    Description / Table of Contents: Part I Understanding and management of abiotic and biotic stress in plants -- 1. Plant responses under abiotic stress and mitigation options towards agricultural sustainability -- 2. Plant viruses: Factors involved in emergence and recent advances in their management -- 3. Crop plants under metal stress and its remediation -- 4. Exploiting host resistance in management of vascular wilt in major pulses of India -- 5. Atmospheric nitric oxide (NO) regulates ozone (O3)-induced stress in plants: Ally or Foe? -- 6. Brassinosteroids: A wonder growth regulator to alleviate abiotic stresses in plants -- 7. Structural and functional role of plant dehydrins in enhancing stress tolerance -- 8. Adaptation of microalgae to temperature and light stress -- 9. Halopriming: Sustainable approach for abiotic stress management in crops -- 10. Naturally growing native plants of wastelands: Their stress management strategies and prospects in changing climate -- 11. Vulnerability and resilience of sorghum to changing climatic conditions: Lessons from the past and hope for the future -- 12. Recent updates in plant disease management -- 13. Heat stress in wheat: Impact and management strategies towards climate resilience -- Part II Potential of microbes in plant stress management -- 14. Plant-microbe interactions in combating abiotic stresses -- 15. Cadmium stress management in plants: Prospects of plant growth promoting rhizobacteria -- 16. Harnessing the power of microbes to overcome heavy metal stress in crop plant -- 17. Halotolerant plant growth promoting rhizobacteria: A futuristic direction to salt stress tolerance -- 18. Outside the cell surface: Encoding the role of Exopolysaccharide producing rhizobacteria to boost the drought tolerance in plants -- 19. Potential of plant growth promoting rhizobacteria for enhancement of plant growth and its role in improving soil health under abiotic stress -- 20. Soil application of plant growth promoting fungi for sustainable agriculture in the new decade -- 21. Deep insights into the role of endophytic fungi in abiotic stress tolerance in plants -- 22. Post-green revolution degradation of agricultural land in India: Role of mycorrhizae in the sustainability of agriculture and ecosystems -- Part III Strategies and technological advances for crop improvement -- 23. Integrated OMICS approaches to ameliorate the abiotic stress in Brassica napus -- 24. Proteomics – A powerful tool for understanding saline stress response in germinating seed -- 25. Role of secondary metabolites and prospects of engineering secondary metabolite production for crop improvement -- 26. Interventions of nanotechnology for the growth and stress tolerance in crop plants -- 27. Remote Sensing Technology: A new dimension in the detection, quantification and tracking of abiotic and biotic stresses.
    Abstract: This book presents an inclusive approach to deal with plant stresses in light of recent technological advances. As we have entered into a new decade, researchers and scientists should review and evaluate the recent findings in the field of plant stress management and visualize what we need to focus upon in the near future to increase crop yield. Above all, global climate changes present the greatest challenges of all time for plant scientists. In this context, the book highlights the recent findings and future perspectives in crop improvement to the faculties, scientists, research scholars, and postgraduate students. Major features of the book include an inclusive approach in understanding the mechanism of stress tolerance; recent advances and innovations in the field of allied disciplines like microbiology, molecular biology, biotechnology, plant breeding, nanobiotechnology, etc., for improving plant stress tolerance; and illustrative sketches to convey the mechanism and strategies of stress alleviation.
    Type of Medium: Online Resource
    Pages: XV, 457 p. 54 illus., 50 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030953652
    Series Statement: Advances in Science, Technology & Innovation, IEREK Interdisciplinary Series for Sustainable Development,
    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 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. ; Plant anatomy. ; Plant ecology. ; Biodiversity. ; Conservation biology. ; Ecology . ; Plant Science. ; Plant Anatomy and Morphology. ; Plant Ecology. ; Biodiversity. ; Conservation Biology.
    Description / Table of Contents: Chapter 1. Hulun Buir Steppe floristic features and vegetation classification -- Chapter 2. The atlas of main communities on the Hulun Buir Steppe -- Chapter 3. The atlas of main rangeland plants on the Hulun Buir Steppe.
    Abstract: This book includes description of main morphological characteristics of 435 species (including varieties and subspecies) belonging to 57 families and 233 genera of endemic and endangered plants of Hulun Buir Rangeland in China. A brief description of the morphological characteristics of each plant, flowering period, zoning, habitat, and the usage habits of most plants, together with 1 to 4 photographs taken in the field are provided. This work is designed not only for researchers working in rangeland science, ecological restoration and protection but also for professionals working in rangeland and related fields. The work is a result of many years of rangeland plant collection and specimens identification.
    Type of Medium: Online Resource
    Pages: IX, 956 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031072772
    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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    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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    Keywords: Botany. ; Plant ecology. ; Plants Reproduction. ; Plants Evolution. ; Conservation biology. ; Ecology . ; Plant Science. ; Plant Ecology. ; Plant Reproduction. ; Plant Evolution. ; Conservation Biology.
    Description / Table of Contents: 1. Melastomataceae diversity and distribution -- 2. History of Classification of the Melastomataceae -- 3. General morphology and terminology -- 4. Historical biogeography of Melastomataceae -- 5. An overview of Melastomataceae classification and phylogenetics -- 6. Revisiting character evolution in the Myrtales and its bearing on classification: Should the circumscription of Melastomataceae include the “memecyloids”? -- 7. Systematics of Kibessieae -- 8. Systematics of Astronieae -- 9. Phylogeny and systematics of Henrietteeae -- 10. The tribe Miconieae: many genera or one genus? -- 11. Systematics and taxonomy of the Merianieae -- 12. Systematics of Bertolonieae and Trioleneae -- 13. Systematics of Blakeeae -- 14. The tribe Cyphostyleae; exceptions that prove the rules -- 15. Systematics of Sonerileae and Dissocheteae: creating order out of chaos -- 16. Systematics of Cambessedesieae -- 17. Systematics of Rhexieae -- 18. Systematics of Microlicieae -- 19. Systematic studies in the Neotropical tribe Marcetieae -- 20. Melastomateae: a review on the taxonomic history- morphology- molecular phylogeny and biogeography -- 21. Comparative floral ontogeny of Melastomataceae -- 22. Seed morphological features in Melastomataceae -- 23. Patterns of Chromosome Number Diversity and Evolution in the Melastomataceae -- 24. Apomixis in Melastomataceae: Diversity of developmental mechanisms and ecological consequences -- 25. Pollination syndromes and flower diversification in Melastomataceae -- 26. Stamen diversity in Melastomataceae: morphology- color and function -- 27. Patterns of diversification of Miconia (Miconieae) in the Greater and Lesser Antilles -- 28. Colonization by Melastomataceae and its diversification in the Atlantic Forest -- 29. A review of the paleobotanical record of Melastomataceae -- 30. Shapes of species responses to soil fertility in lowland Amazonian Melastomataceae -- 31. Seed germination ecology in Neotropical Melastomataceae -- 32. Seed dispersal ecology in Neotropical Melastomataceae -- 33. Myrmecophytism in the Melastomataceae -- 34. How non-native invasive Melastomataceae inform a greater understanding of the biology and genetics of the family -- Conclusions.
    Abstract: This book presents a synthesis of critical new information for the Melastomataceae, one of the ten richest families among flowering plants with over 5,800 species that has its diversity highly concentrated in the tropics tropical or subtropical areas. It describes the family’s global diversity and distribution and summarizes recent advances in systematics, evolution, biogeography, reproductive biology and ecology.
    Type of Medium: Online Resource
    Pages: XXIV, 793 p. 83 illus., 63 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030997427
    DDC: 580
    Language: English
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    Online Resource
    Online Resource
    Singapore :Springer Nature Singapore :
    Keywords: Botany. ; Plants Evolution. ; Plants Development. ; Plant Science. ; Plant Evolution. ; Plant Development.
    Description / Table of Contents: Chapter 1. The two contrary theories about organogenesis in morphology of the higher plants.-chapter 2. Saunders’ Leaf-skin Theory of Stem -- Chapter 3. Leaves are split axes -- Chapter 4. Re-evaluation of the evidences for the Telome Theory -- Chapter 5. What do hooded-awn barley, bitter bamboo, tortoise shell bamboo, paspalum and crabgrass show us? -- Chapter 6. The ontogenesis of higher plants -- Chapter 7. The organogenesis of higher plants -- Chapter 8. Conclusion.
    Abstract: This book written by Professor Chi Yen of Sichuan Agricultural University in Chinese was published by China Agriculture Press (ISBN 978-7-109-22791-0). It describes a new theory on the constitution of organs of the higher plants based on experimental evidence, the multiple secondary axis theory. This theory states that all organs of the higher plants are the constitution of multiple secondary axes. The primary axis extends bipolarly to initiate the above- and the below-ground parts of a plant, from which secondary axes develop. Leaves are split, expanded upper ends of terminal secondary axes. Stems are merged lower ends of the secondary axes, Vascular bundles are secondary structures developed within the axes which interconnect with each other to form the central core of the stem and branches and the veins in the leaves. Roots form through the downward extension of the lower ends of the axes toward or within the underground and branch roots are unsplit secondary axes. All new axes emerge from the inner side of existing, split axes. All floral organs including fruits, seeds and vegetative reproduction organs such as bulbils and plantlets, are deformed axes. This theory is significant in guiding the scientific design of the ideotype of crops to optimize the development of the economically important organ(s) of a crop.
    Type of Medium: Online Resource
    Pages: XII, 160 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811916854
    DDC: 580
    Language: English
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    Online Resource
    Online Resource
    Singapore :Springer Nature Singapore :
    Keywords: Botany. ; Forestry. ; Agriculture. ; Plant Science. ; Forestry. ; Agriculture.
    Description / Table of Contents: Chapter 1. Wood degradation, challenges and mitigation -- Chapter 2. Wood Decay by fungi: Challenges and Prevention -- Chapter 3. Wounding of Trees: The Precursor of Wood Decay -- Chapter 4.Economically important wood feeding insects - their Diversity, Damage -- Chapter 5. Wood degradation by termites: ecology, economics and protection -- Chapter 6. Wood borers of important fruit trees with special reference to Cerambycids -- Chapter 7. Prospects and advances in management of coconut wood borers -- Chapter 8. Teak heart wood borer Alcterogystia cadambae(Cossidae :Lepidoptera) a potential wood pest of teak and its Management -- Chapter 9. Hoplocerambyx spinicornis Newman: major heartwood borer of Sal Shorea robusta and its management in India -- Chapter 10.Bio-deterioration of Sandalwood (Santalum album L.): Agents and their Management -- Chapter 11.Insect borers of bamboo and their management -- Chapter 12. Wood Biodeterioration in marine environment -- Chapter 13. Natural durability of timber in terrestrial and marine realms of India: A contrasting feature -- Chapter 14. Degradation of Wood and Wooden products by insects and their Management -- Chapter 15. Basics of Wood Drying /Seasoning -- Chapter 16. Chemical Preservatives in Wood Protection . Chapter 17. Potential of Botanicals for Wood Protection -- Chapter 18. Preservation of Engineered Wood Composites (Solid wood Plywood, Block boards/Flush doors) made from Plantation Timbers -- Chapter 19. Wood modification for wood protection -- Chapter 20. Advancements in Nanotechnological Applications for Wood protection -- Chapter 21. Biodegradation: A Vital Component in Life Cycle Assessment of Wood -- Chapter 22.Invasion of wood degraders through wood import and need to strengthen the plant quarantine measures in India.
    Abstract: This edited book covers all aspects of wood degradation from its formation and growing in trees to its end usages when it is put into human usage. Wood is an age-old traditional fascinating material with a sensory-rich immersive experience that kindles aesthetics and creativity. The utility, durability, and functionality of wood render it a cosmopolitan material. It constitutes an integral part of human lives from ancient times to modern societies being used by various sectors viz., construction, furniture, panel products, paper and pulp, sports goods, agricultural implements, etc., Wood, being a biological material, is susceptible to degradation both by physical and biological means, and the need to protect the wood and prevent heavy economic losses constitutes a major challenge. Also, wood formed by the trees is the major sinks of carbon and the carbon remains locked-up for the life of the wood, thereby serving as important tool to mitigate the climate change. But the carbon stored in wood returns to the atmosphere when it degrades and will have positive effect on climate change. Hence, wood protection aiming for extending the service life of wood plays a key role in locking the carbon for a longer period in the wood and also substantially reduce the demand and depletion of forest resources. The book focuses on wood as an important natural bio-resource, inventory of wood protection, usage, utilization, preservatives, protection technologies and wood protection from all forms of degradation. Special focus is given on the eco-friendly way of protecting wood and its importance in mitigating climate change. The book is useful for Indian and international readers, who are working in wood domains. It is of interest to wood technologists, teachers, researchers, climate change scientists, capacity builders, and policymakers. It is of immense importance as a guide and study material to the graduate and postgraduate students of wood science in various universities of India and abroad.
    Type of Medium: Online Resource
    Pages: VII, 744 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811687976
    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 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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    Keywords: Botany. ; Environment. ; Agronomy. ; Plant physiology. ; Plant Science. ; Environmental Sciences. ; Agronomy. ; Plant Physiology.
    Description / Table of Contents: 1)Sources of selenium and nano-selenium in soil and plants -- (2)Use of selenium and nano-selenium in agro-biotechnologies -- (3)Selenium and nano-selenium as a new frontier of biostimulants -- (4)Selenium and nano-selenium in plant nutrition and crop quality -- (5)Uptake and metabolism of selenium in plants: recent progress and future perspectives -- (6)Synthesis and characterization of nano-selenium using plant biomolecules and their potential applications -- (7)Selenium and nano-selenium mediated salt stress tolerance in plants -- (8)Selenium and nano-selenium mediated drought stress tolerance in plants -- (9)Selenium and nano-selenium mediated heat stress tolerance in plants -- (10)Selenium and nano-selenium mediated cold stress tolerance in plants -- (11)Selenium and nano-selenium mediated heavy metal stress tolerance in plants -- (12)Selenium and nano-selenium mediated biotic stress tolerance in plants -- (13)Selenium bioavailability and nutritional improvements in crop plants -- (14)Effect of selenium application on quality improvements of seeds and fruits -- (15)The genetics of selenium accumulation by plants: recent progress and future perspectives -- (16)Agronomic bio-fortification crops with exogenous selenium application -- (17)Selenium toxicity and tolerance in plants: recent progress and future perspectives -- (18) Selenium bio-fortification for quality and nutritional improvements -- (19)Manipulation of selenium metabolism in plants for tolerance and accumulation -- (20)Selenium hyper-accumulation and phytoremediation: recent progress and future perspectives -- (21) Selenium in food chain in relation to human and animal nutrition and health.
    Abstract: Crop plants growing under field conditions are constantly exposed to various abiotic and biotic stress factors leading to decreased yield and quality of produce. In order to achieve sustainable development in agriculture and to increase agricultural production for feeding an increasing global population, it is necessary to use ecologically compatible and environmentally friendly strategies to decrease the adverse effects of stresses on the plant. Selenium is one of the critical elements from the biological contexts because it is essential for human health; however, it becomes toxic at high concentrations. It has been widely reported that selenium can promote plant growth and alleviate various stresses as well as increase the quantity and quality of the yield of many plant species. Nonetheless, at high concentrations, selenium causes phytotoxicity. In the last decade, nanotechnology has emerged as a prominent tool for enhancing agricultural productivity. The production and applications of nanoparticles (NPs) have greatly increased in many industries, such as energy production, healthcare, agriculture, and environmental protection. The application of NPs has attracted interest for their potential to alleviate abiotic and biotic stresses in a more rapid, cost-effective, and more sustainable way than conventional treatment technologies. Recently, research related to selenium-NPs-mediated abiotic stresses and nutritional improvements in plants has received considerable interest by the scientific community. While significant progress was made in selenium biochemistry in relation to stress tolerance, an in-depth understanding of the molecular mechanisms associated with the selenium- and nano-selenium-mediated stress tolerance and bio-fortification in plants is still lacking. Gaining a better knowledge of the regulatory and molecular mechanisms that control selenium uptake, assimilation, and tolerance in plants is therefore vital and necessary to develop modern crop varieties that are more resilient to environmental stress. This book provides a comprehensive overview of the latest understanding of the physiological, biochemical, and molecular basis of selenium- and nano-selenium-mediated environmental stress tolerance and crop quality improvements in plants. It helps researchers to develop strategies to enhance crop productivity under stressful conditions and to better utilize natural resources to ensure future food security and to reduce environmental contamination. Finally, this book is a valuable resource for promoting future research into plant stress tolerance, and a reference book for researchers working on developing plants tolerant to abiotic and biotic stressors as well as bio-fortification and phytoremediation.
    Type of Medium: Online Resource
    Pages: XIII, 458 p. 40 illus., 37 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031070631
    Series Statement: Sustainable Plant Nutrition in a Changing World,
    DDC: 580
    Language: English
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    Keywords: Botany. ; Plant diseases. ; Agriculture. ; Plant Science. ; Plant Pathology. ; Agriculture.
    Description / Table of Contents: Part 1. Organic Management of Nematodes: Paradigms and Mechanisms -- 1. Biochemical Biopesticides for Phytonematode Sustainable Management: Status and Future Prospects (Thales Lima Rocha; Vera Lucia Perussi Polez; Lívia Cristina de Souza Viol; Reinaldo Rodrigues Pimentel, Danielle Biscaia; Jadir Borges Pinheiro) -- 2. Organic Nematicides: A Green Technique and its Overview for the Nematode Disease Management (Faryad Khan, Mohammad Shariq, Mohd Asif, Taruba Ansari, Saba Fatima, Arshad Khan, Mohd Ikram, Mansoor Ahmad Siddiqui) -- 3. Nematode Management Through Compost (Fisayo Yemisi Daramola, Samuel B. Orisajo and Omorefosa Osarenkhoe Osemwegie) -- 4. Biochemical/Molecular Mechanisms Associated with Nematode Management Through Organic Amendments: A critical Review (John Fosu-Nyarko, Rhys G. R. Copeland, Sadia Iqbal, Michael G. K. Jones) -- 5. Organic By-Products in the Suppression of Plant-Parasitic Nematodes (Alixelhe Pacheco Damascena, Marylia Gabriella Silva Costa, Júlio César Antunes Ferreira, Silvia Renata Siciliano Wilcken) -- 6. Nematode Management by Humic Acid (Seenivasan Nagachandrabosea, Sankaranarayanan Chellappab, and Devrajan Kandasamya) -- 7. Conventional and Organic Management as Divergent Drivers for Plant Parasitic Nematodes (PPNs) control (Kanika Khanna, Vandana Gautam, Dhriti Kapoor, Nandni Sharma, Pooja Sharma, Tamanna Bhardwaj, Puja Ohri, Renu Bhardwaj) -- Part 2. Organic Management of Nematodes: Global Case studies and Success Stories -- 8. Plant Extracts and Their Effect on Plant-parasitic nematodes: Case Studies from Africa (Ebrahim Shokoohi) -- 9. Organic Management of the Citrus, Pine and Related Nematodes (Reza Ghaderi, Manouchehr Hosseinvand) -- 10. Organic Management of Rice Root-Knot Nematode Meloidogyne graminicola (Ziaul Haque and Mujeebur Rahman Khan) -- 11. Strategies for the Organic Management of the Root-Knot Nematode (Meloidogyne spp.) in Grapevine Under Desert Conditions in the North Coast of Peru (César Augusto Murguía Reyes) -- 12. Organic Fumigant Alternatives for Nematode Management in High-Value Crops in Florida (Johan Desaeger, Kaydene Williams, and Erin Rosskopf) -- 13. The False Root-Knot Nematode Nacobbus aberrans and its Ecological Management (Edgar Villar-Luna, Olga Gómez-Rodríguez, Hernán Villar-Luna, Liliana Aguilar-Marcelino, Laith Khalil Tawfeeq Al-Ani, and Ernesto Fernández-Herrera) -- 14. Plant Extracts, Sorghum and Crucifers Amendments and Pochonia chlamydosporia for the Management of Meloidodyne spp. and Nacobbus aberrans in Tomato and Chile Crops: the Mexican Experience (Ignacio Cid del Prado-Vera, Marco Antonio Magallanes-Tapia, Raúl Velasco-Azorsa, Arely Pérez-Espíndola) -- 15. Non-Conventional Management of Plant-Parasitic Nematodes in Musaceas Crops (Donald Riascos–Ortiz, Ana Teresa Mosquera–Espinosa, Francia Varón De Agudelo, Claudio Marcelo Gonçalves De Oliveira, Jaime Eduardo Muñoz–Florez) -- 16. Neem Cake Amendment Changes Soil Nematode Spatio-temporal Dynamics Across a Guava Orchard in the Brazilian Semiarid Region (Diego Arruda Huggins de Sá Leitão, Ana Karina dos Santos Oliveira, Douglas Barbosa Castro, Elvira Maria Régis Pedrosa).
    Abstract: The present work covers many aspects of plant nematode management using organic strategies. These range from applications of latest understandings of fundamental concepts/mechanisms of nematode control, to modern tools and techniques used in efficacy evaluation. The Volume also includes some case studies/applied aspects of organic nematode pest management. Chemical and physical control measures used for nematode management have their own implications. Against this backdrop, organic management of plant nematodes appears as a more rational and sustainable approach. However, concise information on the current topic is scarce. This book is a sincere effort to bridge this void as we aim to provide the most updated, critical and in-depth knowledge synthesized by many experts working in the field of plant nematology, worldwide.
    Type of Medium: Online Resource
    Pages: XI, 440 p. 51 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031099434
    Series Statement: Sustainability in Plant and Crop Protection, 18
    DDC: 580
    Language: English
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  • 38
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Paleontology . ; Plant ecology. ; Plants Evolution. ; Plant Science. ; Paleontology. ; Plant Ecology. ; Plant Evolution.
    Description / Table of Contents: Introduction -- The miracle of amber -- Floral characteristics -- Chapter1. Burmese amber flowers -- Chapter2. Baltic amber flowers -- Chapter3. Dominican amber flowers -- Chapter4. Mexican amber flowers -- General conclusions -- References.
    Abstract: While much attention has been given to animal life in amber, the remains of a variety of plants, including angiosperm flowers, also exist in fossilized resin. Presented here is a pictorial synopsis of 94 flowers that occur in four major amber deposits around the world. These deposits are from Burma (Myanmar), the Baltic area, the Dominican Republic and Mexico, and range in age from the mid-Cretaceous to the mid-Tertiary. The basic features of these flowers are presented and their relationship with existing plant lineages discussed. This work will be of interest to amber enthusiasts, plant taxonomists, plant morphologists, plant ecologists, plant evolutionists and plant paleontologists.
    Type of Medium: Online Resource
    Pages: XV, 215 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031090448
    Series Statement: Fascinating Life Sciences,
    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: 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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    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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    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. 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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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Agriculture. ; Plant physiology. ; Agronomy. ; Sustainability. ; Plant Science. ; Agriculture. ; Plant Physiology. ; Agronomy. ; Sustainability.
    Description / Table of Contents: Aspects of biology and ecophysiology, survival mechanisms and weed classifications -- Weed competition and interference in crops -- Parameters of the phytosociological survey to evaluate the abundance, distribution and diversity of the weed community -- Methods of control and Integrated management of weeds in agriculture -- Retention, absorption, translocation and metabolism of herbicides in plants -- Induced hormesis in plants with herbicide underdoses -- Evolution of weed resistance to herbicides -- Genetically modified crops resistant to herbicides and weed control.
    Abstract: This textbook explores aspects of biology and ecophysiology of weeds, weed competition and interference in crops, phytosociological survey, methods of control and weed integrated management. Herbicides are of great importance in weed management and are one of the most widely used pesticide groups for weed control across the globe. Offering a new direction for research that focuses on herbicide behavior in plants, hormesis, evolution of weed resistance to herbicides, and genetically modified crops resistant to herbicides, this book covers the recent research in applied weed and herbicide science. This book provides essential and updated information on various subjects regarding the advances in herbicide science; and it is intended for professors, undergraduate, and graduate students, rural producers and other professionals involved in the area of applied weed and herbicide science. Agriculturists, analytical chemists, and toxicologists will find this book rewarding.
    Type of Medium: Online Resource
    Pages: XIII, 299 p. 103 illus., 74 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031019388
    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. 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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  • 44
    Keywords: Botany. ; Fungi. ; Mycology. ; Microbiology. ; Food Microbiology. ; Medical microbiology. ; Biomaterials. ; Nanomedicine. ; Plant Science. ; Fungi. ; Food Microbiology. ; Medical Microbiology. ; Plant Materials. ; Nanomedicine and Nanotoxicology.
    Description / Table of Contents: Part 1-General Identity and Taxonomy -- Phoma: An Overview -- Phoma Diseases-Identification, Epidemiology and Management -- Taxonomical Evaluation of Phoma-History of Classification, Current Status and Future Directions -- Part 2-Diversity, Diseases and Host Range -- Biodiversity of the Genus Phoma in Different Habitats -- Phoma on Medicinal and Aromatic Plants -- Types of Plant Diseases Caused by Phoma Species and Their Integrated Management -- Plant Pathogenic Phoma Species: Host Range, Symptoms and Distribution -- Overview of Phoma-like Fungi on Legumes: Papilionaceous plants): Pea, Beans, Soybean, Chickpea and Faba Beans -- Vegetable Diseases Caused by Phoma SSP -- Part 3: Phoma Spp. as a Human Pathogen -- Phoma as an Infectious Pathogen in Medical Practice -- Part 4- Bioactivities and Nanotechnology -- Genus Phoma; A Review of Its Potential Bioactivities, Implications and Prospects -- Bioherbicidal Activity of Phoma macrostoma -- Fruitful Decade for Phoma Secondary Metabolites From 2011 to 2020: Chemistry, Chemical Diversity and Biological Activities -- Plant Growth Promoting Phoma spp. -- Biological Management of Plant Diseases by Non-Pathogenic Phoma spp. -- Endophytic Phoma: Potentials and Limitations -- Bioactive Secondary Metabolites of Endophytic Phoma: Biochemistry and Signifigance -- Exploitation of Phoma for Fabrication of Silver Nanoparticles.
    Abstract: This reference covers the taxonomy, diversity, bioactivity, and nanotechnology involved in the study of Phoma. It presents the most recent molecular taxonomic approach, secondary metabolites, combating microbial threats and biohazards, and its use in nanotechnology from a basic research to an applied perspective. Expert contributors provide the latest research and applications to present thorough coverage of an important genus in human and plant pathology and bio management. Addresses the key issues in enigmatic taxonomy of the genus Phoma, and provides the current trends in taxonomy Discusses different secondary metabolites, their bioactivities (antifungal, antibacterial, antiviral, antiprotozoal, cytotoxic and herbicidal, etc.) and formulations Presents the role of different Phoma spp. in nanobiotechnology for synthesis of nanoparticles Provides the fossil-based evolutionary trends in Phoma spp.
    Type of Medium: Online Resource
    Pages: XVII, 342 p. 62 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030812188
    DDC: 580
    Language: English
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  • 45
    Keywords: Botany. ; Bioclimatology. ; Plant Science. ; Climate Change Ecology.
    Description / Table of Contents: Current Status of Medicinal Plants in Perspective of Environmental Challenges and Global Climate Changes -- Environmental Challenges for Himalayan Medicinal Plants -- Wild-Growing Species in the Service of Medicine: Environmental Challenges and Sustainable Production -- Favourable Impacts of Drought Stress on the Quality of Medicinal Plants: Improvement of Composition and Content of Their Natural Products -- Adaptation Strategies of Medicinal Plants in Response to Environmental Stresses -- Physiological and Biochemical Responses of Medicinal Plants to Salt Stress -- Horizontal Natural Product Transfer: A Phenomenon Which Is Responsible for the Widespread Alkaloidal Contaminations of Herbal Products -- Effect of Abiotic Stresses and Adaptation Strategies of Medicinal Plants -- Impact of Various Environmental Factors on Biosynthesis of Alkaloids in Medicinal Plants -- Regulation of Expression of Transcription Factors for Enhanced Secondary Metabolites Production Under Challenging Conditions -- Sustainable Use Practices of Medicinal Plants and Environmental Challenges: A Case Study in Pakistan -- Profiling of Trace Elements and Regulatory Landscape of Dietary Herbal Supplements -- Sustainable Economic Systems Against Biotic and Abiotic Stress in Medicinal Plants: Aeroponics, Hydroponics and Organoponics -- Influence of Salinity on the Growth, Development and Primary Metabolism of Medicinal Plants -- Role of Nano-Biotechnology in Medicinal Plant Production -- An Insight into Plant Nanobionics and Its Application to Overcome the Impact of Environmental Stress on Medicinal and Aromatic Plants -- Phytoremediation Capacity of Medicinal Plants in Soils Contaminated with Heavy Metals -- Stress Tolerant Species of Medicinal Plants and Phytoremediation Potential -- Breeding Advancements in Fenugreek for Environmental Stresses -- Conservation Strategies for Medicinal Plants in the Face of Environmental Challenges -- Integration of Medicinal Plants into Comprehensive Supply Chains: The Threats and Opportunities of Environmental Devastation.
    Abstract: Medicinal plants supply the ever-growing needs of humankind for natural chemicals, such as pharmaceuticals, nutraceuticals, agrochemicals, and chemical additives. These plants contain bioactive secondary metabolites, which possess antimalarial, anthelminthic, anti-inflammatory, analgesic, antimicrobial, antiarthritic, antioxidant, antidiabetic, antihypertensive, anticancer, antifungal, antispasmodic, cardioprotective, antithyroid, and antihistaminic properties. Secondary metabolites play a major role in the adaptation of plants to the changing environment and stress condition as they are affected by both biotic and abiotic stress. Humans rely on medicinal plants for various needs since ancient time, and their population still seems enough for fulfilling our demands. However, in the foreseeable future, we will be forced to think about the accessibility of resources for future generations. For these reasons, we must look for alternative sustainable options of resources which can protect these immensely important medicinal plants from various stresses induced by challenging environment. Evolving eco-friendly methodologies and mechanisms to improve these plants’ responses to unfavorable environmental circumstances is important in creating significant tools for better understanding of plant adaptations to various abiotic stresses and sustaining the supply of pharmaceuticals as global climate change intensifies. One of the great challenges in the near future will be the sustainable production of medicinal plants under increasing adverse effects of climate change. A combination of adverse demographic factors and climatological perturbations is expected to impact food and pharmaceutical production globally. Despite the induction of several tolerance mechanisms, medicinal plants often fail to survive under environmental extremes. To ensure their sustainable production under adverse conditions, multidisciplinary approaches are needed, and useful leads are likely to emerge. However, improving plants' performance under restrictive growth conditions requires a deep understanding of the molecular processes that underlie their extraordinary physiological plasticity. This edited volume emphasizes the recent updates about the current research on medicinal plants covering different aspects related to challenges and opportunities in the concerned field. This book is an attempt to bring together global researchers who have been engaged in the area of stress signaling, crosstalk, and mechanisms of medicinal plants. The book will provide a direction towards implementation of programs and practices that will enable sustainable production of medicinal plants resilient to challenging environmental conditions. Moreover, this book will instigate and commence readers to state-of-the-art developments and trends in this field.
    Type of Medium: Online Resource
    Pages: XV, 512 p. 61 illus., 52 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030920500
    Series Statement: Environmental Challenges and Solutions,
    DDC: 580
    Language: English
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    Online Resource
    Online Resource
    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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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Botany. ; Environmental economics. ; Plant ecology. ; Economic geography. ; Environmental management. ; Plant Science. ; Environmental Economics. ; Plant Ecology. ; Economic Geography. ; Environmental Management.
    Description / Table of Contents: Chapter 1. Introduction -- Chp 2: Amchur -- Chp.3:Anardana -- Chp 4:Balm or Lemon Balm -- Chp.5:Basil or Sweet Basil (Tulsi) -- Chp.6:Bay or Laurel Leaves -- Chp 7: Kokam or Kokum -- Chp 8:Juniper -- Chp.9: Hyssop -- Chp 10: Marjoram -- Chp 11: Japanese Mint -- Chp: 12: Peppermint -- Chp 13: Spearmint -- Chp 14. Origanum -- Chp 15: Parsley -- Chp 16: Rosemary -- Chp 17: Ashwagndha -- Chp 18.:Manathakkali.
    Abstract: This book discusses leafy spices or herbs known as “aromatic herbs”, which, apart from being used in culinary art for flavoring of foods and beverages, are also known to possess antiseptic, anti-oxidant and other medicinal properties, in addition to many nutraceutical and cosmetic properties. Of the numerous herbs twelve of the commercially important herbs are imported into 4 major European markets, namely, France, Germany, United Kingdom and The Netherlands to the tune of 12000 to 13000 tonnes per annum. This book discusses these leafy herbs and their tremendous commercial potential in international trade. The book offers a comprehensive insight into commercial herbs, with an objective of enhancing their yield, and provides a platform for further research into the global trade potential.
    Type of Medium: Online Resource
    Pages: XIV, 141 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031043604
    DDC: 580
    Language: English
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  • 48
    Keywords: Botany. ; Food security. ; Plant Science. ; Food Security.
    Description / Table of Contents: Hemp (Cannabis sativa L.)-Taxonomy, Distribution and Uses -- Hemp Varieties: Genetic and Chemical Diversity -- Legality of Worldwide Cannabis Use and Associated Economic Benefits -- Hemp Usage in Textile Industry -- Pharmaceutical Applications of Hemp Cannabis sativa -- Hemp Usage as Regular Food and in Nutraceutical Industry -- Hemp Usage in Cosmeceutical and Personal Care Industry -- Hemp Usage as a Green Building Material, Plastic, and Fuel -- Demand and Supply Gaps: Seeds and Raw Material -- Selective Breeding for Cannabis Variety -- Pre- and Post-harvest Processing and Quality Standardization -- Scientific Testing, Forensic Identification, Evidences, and Differences in Policy Frameworks of Hemp.
    Abstract: This book provides the current status, research advances, challenges and opportunities of hemp products along with recommendations for future research. The surge in demand is fueling a global Green Rush, even in countries where a legal market for hemp products was unthinkable just a few years ago. The hemp market is growing globally and its products (fiber, food, medicine, etc.) are overwhelmingly accepted by the customers. With increasing market demand for more natural and greener products, the revolutionizing potential of hemp and its products in changing economy plays a major role. Moreover, considering their high demand and development of new varieties for producing raw material of need, breeding tools provide an effective means of development of varieties. This book aims to highlight the revolutionizing potential of hemp and its products in changing the economy, current status, and challenges. In addition, it provides the multi-functional and multi-industrial potential of hemp.
    Type of Medium: Online Resource
    Pages: VI, 241 p. 30 illus., 25 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031051449
    DDC: 580
    Language: English
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