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  • Microbial ecology.  (5)
  • Singapore :Springer Nature Singapore :  (5)
  • American Geophysical Union
  • Helsinki
  • PANGAEA
  • Wiley-Blackwell
  • English  (5)
Collection
Publisher
  • Singapore :Springer Nature Singapore :  (5)
  • American Geophysical Union
  • Helsinki
  • PANGAEA
  • Wiley-Blackwell
Language
  • English  (5)
Years
  • 1
    Keywords: Biotechnology. ; Microbiology. ; Plant diseases. ; Microbial ecology. ; Biotechnology. ; Microbiology. ; Plant Pathology. ; Microbial Ecology.
    Description / Table of Contents: Bacterial Endophytes: Diversity, Functional Importance, and Potential for Manipulation -- Rhizosphere Carbon Turnover from Cradle to Grave: The Role of Microbe–Plant Interactions -- Root–Soil–Microbe Interactions Mediating Nutrient Fluxes in the Rhizosphere -- Diazotrophic Nitrogen Fixation in the Rhizosphere and Endosphere -- Root Microbiome Structure and Microbial Succession in the Rhizosphere -- Rhizosphere Legacy: Plant Root Interactions with the Soil and Its Biome -- Rhizosphere Microbiome and Soil-Borne Diseases -- Root Disease Impacts on Root-Rhizosphere Microbial Communities -- Newly Introduced or Modified Genes in Plants Potentially Modulate the Host Microbiome -- Rhizosphere Plant–Microbe Interactions Under Abiotic Stress -- Arbuscular Mycorrhizal Fungi Interactions in the Rhizosphere -- Microbial–Faunal Interactions in the Rhizosphere -- Inter-Organismal Signaling in the Rhizosphere -- Molecular Mechanisms of Plant–Microbe Interactions in the Rhizosphere as Targets for Improving Plant Productivity -- Inoculation Effects in the Rhizosphere: Diversity and Function.
    Abstract: This book presents a detailed discussion on the direct interactions of plants and microorganisms in the rhizosphere environment. It includes fifteen chapters, each focusing on a specific component of plant-microbe interactions, such as the influence of plants on the root microbiome, and the downstream effects of rhizosphere microbial dynamics on carbon and nutrient fluxes in the surroundings. As such, the book helps readers gain a better understanding of diversity above the ground, and its effect on the microbiome and its functionality.
    Type of Medium: Online Resource
    Pages: XVIII, 356 p. 36 illus., 23 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9789811561252
    Series Statement: Rhizosphere Biology,
    DDC: 660.6
    Language: English
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  • 2
    Keywords: Microbiology. ; Microbial ecology. ; Microbial genetics. ; Biodiversity. ; Biotechnology. ; Microbiology. ; Microbial Ecology. ; Microbial Genetics. ; Biodiversity. ; Biotechnology.
    Description / Table of Contents: Chapter 1. Microbial Ecology -- Chapter 2. Actinobacteria in Marine environments -- Chapter 3. Terrestrial Ecology of Actinobacteria -- Chapter 4. Extremophilic Actinobacteria -- Chapter 5. Actinobacteria: Basic adaptation to the harsh environments -- Chapter 6. Diversity and classification of Streptomyces -- Chapter 7. Diversity and classification of rare Actinomycetes -- Chapter 8. Identification of Novel Actinomycetes -- Chapter 9. Screening of Novel Metabolites from Actinobacteria -- Chapter 10. Scope of Actinobacteria in Bioengineering -- Chapter 11. Recent trends of Actinomycetes in Nanotechnology -- Chapter 12. Actinomycetes in agriculture and forestry -- Chapter 13. Role of Actinomycetes in Biodegradation of Pesticides -- Chapter 14. Actinomycetes in Environmental applications -- Chapter 15. Biotechnological importance of actinomycetes -- Chapter 16. Actinomycetes in medical and pharmaceutical industries.
    Abstract: Through this book, the readers will learn about the different aspects of Actinobacteria- beginning with its ecology and occurrence, to the ways of its adaptation to harsh climates, and finally to its practical applications. The book also presents methods of identifying and characterizing this diverse group of bacteria through advanced techniques like MALDI-TOF, 16S rRNA analysis, etc. Different chapters describe the various biotechnological applications of Actinobacteria, including bioremediation, secondary metabolite production, and in producing antibiotics, anti-cancer therapeutics. It also provides insights into the applications in agriculture and forestry by inhibiting plant pathogenic bacteria's growth. .
    Type of Medium: Online Resource
    Pages: XIV, 320 p. 1 illus. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9789811633539
    Series Statement: Rhizosphere Biology,
    DDC: 579
    Language: English
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  • 3
    Keywords: Microbiology. ; Microbial ecology. ; Stress (Physiology). ; Plants. ; Microbiology. ; Microbial Ecology. ; Plant Stress Responses.
    Description / Table of Contents: Chapter 1. Detection and identification of soil borne pathogens: Classical to Recent updates -- Chapter 2. Microarray-based detection and identification of bacterial and viral plant pathogens -- Chapter 3. Application molecular ecology approaches in sustainable agriculture for a better understanding of plant microbiome interactions -- Chapter 4. Advancements in detection and diagnosis of important soil-borne diseases -- Chapter 5. Omics approaches to revisit rhizo-bacterial biome -- Chapter 6. Engineering the Plant Microbiome for Biotic Stress tolerance: Biotechnological Advances -- Chapter 7. Potential of bacterial endophytes in biological control of soil borne phytopathogens -- Chapter 8. Endophytes: Rendering systemic resistance to plant -- Chapter 9. Arbuscular Mycorrhizal Fungi (AMF) as Potential Biocontrol Agents -- Chapter 10. Rhizosphere microbes and Wheat Health Management -- Chapter 11. Exploring the potential of secondary metabolites from indigenous Trichoderma spp. for their plant growth promotion and disease suppression ability in pulses -- Chapter 12. Uncultivable soil microbes contributing to sustainable agriculture -- Chapter 13. Rhizosphere microbiome: Significance in sustainable crop protection -- Chapter 14. Bacterial inoculants for control of fungal diseases in tomatoes (Solanum lycopersicum L.): A comprehensive overview -- Chapter 15. Plant-Microbe Interaction and Rhizosphere Biology Lab, ICAR-National Bureau of Agriculturally Important -- Chapter 16. Prior weakening as a tool to control soilborne plant pathogens and associated disease pressure.
    Abstract: This edited book volume aims to bringing out a comprehensive collection of latest information and developments on the management of biotic stresses by the use of rhizospheric microbes across the globe. The main focus of this book is to address the scientific and practical significance of rhizosphere microbes in biotic stress management. The microbial communities in the rhizosphere ecosystem play multitude of microbe-microbe, microbe-insect/pest and plant-microbe interactions and they have not yet been fully exploited to gain benefits in this field as well as to achieve sustainability in agriculture. Among the more recent strategies, stress tolerance/resistance induced by environment-friendly elicitors of microbial origin and/or rhizosphere microorganisms has emerged as a promising supplement in the approaches to crop protection. The proposed book entitled "Rhizosphere Microbes: Biotic Stress Management” is pertinent to rhizospheric microbe-mediated biotic stress management covering all spheres of biotic stress tolerance viz., bio-resources, diversity, ecology, and functioning of microbial bio-control agents, host–parasite interaction, strategies to characterize microbial bioinoculants, interactions of rhizosphere microbes by developing a fundamental understanding of the microbial communities, exploration of the diverse roles of microbes and microbial communities and their role in biotic stress tolerance, microbe-mediated mitigation of biotic stresses, quorum sensing, microbial signalling and cross-talk in the rhizosphere, biofilm formation, cell-to-cell communication, role of microorganisms in ecosystems functioning under various biotic stress conditions, application of microbial bio-pesticides, molecular studies using microbial systems, etc. This book is of interest to teachers, researchers, crop protection scientists, capacity builders and policymakers. Also the book serves as additional reading material for under-graduate, post-graduate, and post-doctorate fellow of agriculture, forestry, ecology, life science, and environmental sciences. National and international agricultural scientists, policy makers will also find this to be a useful read.
    Type of Medium: Online Resource
    Pages: XVII, 370 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811958724
    Series Statement: Microorganisms for Sustainability, 40
    DDC: 579
    Language: English
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  • 4
    Keywords: Biology Technique. ; Microbial ecology. ; Biotechnology. ; Environmental chemistry. ; Biological Techniques. ; Microbial Ecology. ; Biotechnology. ; Environmental Chemistry.
    Description / Table of Contents: Chapter 1. Principles and methods for the removal of microplastics in wastewater -- Chapter 2. The impacts of plastics on environmental sustainability and ways to degrade microplastics -- Chapter 3 Biosurfactants for plastic biodegradation -- Chapter 4. zinc oxide nanoparticles for the treatment of textile dye effluent -- Chapter 5. Advancements on biotechnological and microbial biodegradation of textile wastewater -- Chapter 6. Emergence of antimicrobial resistance among microbiome in wastewater treatment plant and strategies to tackle their effects in environment -- Chapter 7. The role of wastewater treatment technologies in municipal landfill leachate treatment -- Chapter 8. Fungal bioremediation of soils contaminated by petroleum hydrocarbons -- Chapter 9. Microbial biosurfactant in the removal of hydrophobic (oily) pollutants laden industrial wastes -- Chapter 10. Hazardous Organic Pollutant Contamination in Indian Holistic Rivers Risk Assessment and Prevention Strategies -- Chapter 11. Is marine waste a boon or bane? An insight on its source, production, disposal consequences and utilization -- Chapter 12. A waste-to-wealth prospective through biotechnological advancements -- Chapter 13. Industrial perspectives of the three major generations of liquid and gaseous based biofuel production -- Chapter 14. Metabolic Engineering Approaches for Bioenergy production -- Chapter 15. Exploitation of Marine Waste for Value Added Products synthesis.
    Abstract: This contributed volume comprises of detailed chapters covering the biotechnological approaches employed for the removal of toxic recalcitrant xenobiotics such as petroleum hydrocarbons, textile dyes, microplastics and synthetic polymers that pose serious threat to the environment. It also includes the waste to energy conversion strategies that provides a deep insight on the need for waste circular economy for different developing countries and its implication on sustainable development goals such as SDG 12 (responsible consumption and production) SDG 14 (Life below water); and SDG 15 (Life on land). Emerging pollutants sourced from both industries and anthropogenic activity have created havoc in recent years for public health and destruction of biodiversity at multiple levels. The alarming increase in the global population and rapid industrialization might aggravate the problems associated with these hazardous pollutants in near future. Effluent from different industries may contain high amounts of xenobiotic hazardous contaminants such as dyes, hydrocarbons, synthetic surfactants, microplastics, etc. Industries and public sewers handling such waste streams are facing a plethora of challenges in the effluent treatment and solid waste disposal due to various factors that start from production to adoption of appropriate technologies. Therefore, there is an immediate circumvention of bottlenecks through sustainable mitigation strategies. This book is of interest to teachers, researchers, climate change scientists, capacity builders and policymakers. Also, the book serves as additional reading material for undergraduate and graduate students of agriculture, forestry, ecology, soil science, and environmental sciences. National and international agricultural scientists, policy makers also find this to be a useful read.
    Type of Medium: Online Resource
    Pages: XIV, 364 p. 1 illus. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9789819911790
    DDC: 570.28
    Language: English
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  • 5
    Keywords: Microbial ecology. ; Immune response. ; Pathogenic microorganisms. ; Pharmacology. ; Microbiology. ; Microbial populations. ; Microbial Ecology. ; Antimicrobial Responses. ; Pharmacology. ; Microbiology. ; Microbial Communities.
    Description / Table of Contents: Chapter 1. Dimensional Research on Actinomycetes -- Chapter 2. Isolation of Actinobacteria from uncommon habitats like insects and mollusks -- Chapter 3. Diversity, Chemical biology and Ecology of Actinomycetes and the Discovery of Natural Products -- Chapter 4. Actinobacteria from Arid Environments and their Biotechnological Applications -- Chapter 5. Endophytic actinobacteria in biosynthesis of bioactive metabolites and their application in improving crop yield and sustainable agriculture -- Chapter 6. An overview on natural product from endophytic actinomycetes -- Chapter 7. Regulation of Secondary Metabolites through Signaling Moleculesin Streptomyces -- Chapter 8. New strategies to activate secondary metabolism in Streptomyces -- Chapter 9. Novel Agroactive Secondary Metabolites from Actinomycetes in The Past Two Decades with Focus on Screening Strategies and Discovery -- Chapter 10. Quorum sensing and quorum quenching Metabolites in Actinomycetes -- Chapter 11. Metabolic engineering of Actinomycetes for natural product discovery -- Chapter 12. Application of CRISPR Cas9 editing for production of secondary metabolites in actinomycetes -- Chapter 13. Synthetic biology in actinomycetes for natural product discovery -- Chapter 14. Endophytic actinomycetes: secondary metabolites and genomic approaches -- Chapter 15. Mining for NRPS and PKS genes in Actinobacteria using Whole-genome sequencing and Bioinformatics Tools -- Chapter 16. Glycopeptide antibiotics: genetics, chemistry, new screening approaches -- Chapter 17. Biotechnological aspects of siderophore biosynthesis by actinobacteria -- Chapter 18. An overview of biomedical, biotechnological and industrial applications of Actinomycetes.-.
    Abstract: This book provides in-depth information about the ecology, diversity and applications of Actinomycetes. The book is divided into two major parts. The first part discusses the diversity, chemical biology and ecology of Actinomycetes. It also covers the discovery of natural products from soil, endophytic and marine-derived Actinomycetes. It includes natural product discovery, chemical biology, new methods for discovering secondary metabolites, structure elucidation and biosynthetic research of natural products. The chapters in this part focus on the effects of biological and chemical elicitation at molecular level on secondary metabolism in Actinomycetes. The second part of the book discusses genomic and synthetic biology approaches in Actinomycetes drug discovery. This part includes chapters focused on the application of metabolic engineering to optimize natural product synthesis and the use of omics data in engineering of regulatory genes. It covers the advanced tools of synthetic biology and metabolic engineering including cluster assembly, CRISPR/Cas9 technologies, and chassis strain development for natural product overproduction in Actinomycetes. It describes the use of bioinformatics tools for reprogramming of biosynthetic pathways through polyketide synthase and non-ribosomal peptide synthetase engineering. These advanced genomic and molecular tools are expected to accelerate the discovery and development of new natural products from Actinomycetes with medicinal and other industrial applications. The book is useful to researchers and students in the field of microbiology, pharmaceutical sciences and drug discovery.
    Type of Medium: Online Resource
    Pages: XIV, 508 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811661327
    DDC: 579.17
    Language: English
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