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  • 1
    Book
    Book
    Oxfordshire [u.a.] : CABI
    UID:
    b3kat_BV039919531
    Format: XII, 525 S. , Ill., graph. Darst., Kt.
    ISBN: 9781845938857
    Language: English
    Subjects: Engineering , Geography , Agriculture, Forestry, Horticulture, Fishery, Domestic Science
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    Keywords: Energiepflanzenbau ; Nachwachsender Rohstoff ; Pflanzlicher Rohstoff ; Nachhaltigkeit ; Alternativkraftstoff ; Biokraftstoff ; Energieerzeugung ; Nachwachsender Rohstoff ; Pflanzenökologie
    Library Location Call Number Volume/Issue/Year Availability
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  • 2
    Online Resource
    Online Resource
    New York, NY : Springer
    UID:
    gbv_1651955301
    Format: Online-Ressource (XXI, 394 p. 77 illus., 48 illus. in color, digital)
    ISBN: 9781461446330
    Series Statement: SpringerLink
    Content: Plant development and productivity are negatively regulated by various environmental stresses. Abiotic stress factors such as heat, cold, drought, and salinity represent key elements limiting agricultural productivity worldwide. Thus, developing crop plants with the ability to tolerate abiotic stresses is a critical need which demands modern novel strategies for the thorough understanding of plant response to abiotic stresses. Crop Improvement under Adverse Conditions will serve as a cutting-edge resource for researchers and students alike who are studying plant abiotic stress tolerance and crop improvement. The book presents the latest trends and developments in the field, including the impact of extreme events on salt tolerant forest species of Andaman & Nicobar Islands, the overlapping horizons of salicylic acid in different stresses, and fast and reliable approaches to crop improvement through In Vitro haploid production. Written by renowned experts and featuring useful illustrations and photographs, Crop Improvement under Adverse Conditions is a concise and practical update on plant abiotic stress tolerance and crop improvement.
    Note: Description based upon print version of record , Foreword; Preface; Contents; The Editors; List of Contributors; Chapter-1; The Research, Development, Commercialization, and Adoption of Drought and Stress-Tolerant Crops; 1 The Importance of Stress-Tolerant Crops; 1.1 Background of Stress-Tolerant Crop Genetics; 1.2 Recent Advances at the Molecular Level; 1.3 Research and Development and the Commercialization of New Crop Varieties; 1.4 Roles of the Public Sector and the Private Sector; 2 The Stages of the R&D Process; 2.1 Managing R&D Risks; 2.2 Four Types of Uncertainties; 2.2.1 Technological Uncertainty , 2.2.2 Intellectual Property Uncertainty2.2.3 Regulatory Uncertainty; 2.2.4 Market Uncertainty; 2.3 Sources of Market Uncertainty: Factors Influencing Farmers' Decisions to Adopt Drought- and Stress-Tolerant Crops; 2.3.1 Interaction with Other Complementary Technologies; 2.3.2 Competition with Potential Substitute Technologies; 2.3.3 Appeal to First-Time Adopters of the Technology (Adoption on the 'Extensive' Margin); 2.3.4 The Distribution of Benefits to Adopters of the Technology over time and Different Locations; 2.3.5 Perceptions are More Important than Reality , 3 What is in the Global R&D Pipeline?3.1 Activity at the Earliest Stages of R&D: Trends in Scientific Publications; 3.2 Activity in Early-Stage Development: Patenting Trends; 3.3 Activity in Late-Stage Development: Field Trial Trends; 3.4 Activity at the Regulatory Stage: Regulatory Submissions; 4 Conclusion; References; Chapter-2; Impact of Extreme Events on Salt-Tolerant Forest Species of Andaman and Nicobar Islands (India); 1 Introduction; 2 Adaptations in Mangroves; 2.1 Morphological Adaptations; 2.2 Physiological Adaptations; 2.3 Anatomical Adaptations; 2.4 Reproductive Strategies , 3 Salt Stress Regulation Mechanisms3.1 Salt Exclusion; 3.2 Salt Excretion; 4 Climate Change and Mangroves; 4.1 Temperature; 4.2 CO2 Concentration; 4.3 Precipitation; 4.4 Hurricanes and Storms; 4.5 Effects of Changes in Sea Level; 4.6 Mangrove Adaptations that help them Survive Sea-Level Rise; 4.7 Environmental Factors that Affect Mangrove Response to Sea Level; 4.8 Species Response to Sea-Level Rise; 4.9 Mangroves and Carbon Sequestration; 5 Impact of Extreme Event of Tsunami on the Mangroves of Andaman and Nicobar Islands (ANI), India-A Case Study; References; Chapter-3 , Greenhouse Gases Emission from Rice Paddy Ecosystem and their Management1 Introduction; 2 Emission of Greenhouse Gases (GHGs) from Agriculture; 3 Methane Emission from Rice Cultivation; 4 Nitrous Oxide Emission from Agricultural Soils; 5 Emission of GHGs due to Field-Burning of Crop Residue; 6 Modelling GHG Emission from Agriculture; 7 Mitigation of GHG Emissions from Agriculture; 7.1 Through Sequestration of Carbon in Soils; 7.2 Conservation Agriculture; 7.3 Water Management; 7.4 Direct Seeding of Rice; 7.5 Fertilizer Management; 7.6 Silicate Fertilization; 7.7 Efficient Management of Manure , 8 Crop Improvement for Reducing GHG Emissions , The Research, Development, Commercialization, and Adoption of Drought and Stress Tolerant Crops -- Impact of Extreme Events on Salt Tolerant Forest Species of Andaman & Nicobar Islands (India) -- Greenhouse Gases Emission from Rice Paddy Ecosystem and their Management -- Remote Sensing Applications to Infer Yield of Tea in a Part of Sri Lanka -- Polyamines Contribution to the Improvement of Crop Plants Tolerance to Abiotic Stress -- Overlapping Horizons of Salicylic Acid in Different Stresses -- Genotoxic Stress, DNA Repair and Crop Productivity -- In Vitro Haploid Production - A Fast and Reliable Approach for Crop Improvement -- Production of Abiotic Stress Tolerant Fertile Transgenic Plants using Androgenesis and Genetic Transformation Methods in Cereal Crops -- Plant Diseases - Control and Remedy through Nanotechnology -- Nanobiotechnology: Scope and potential for crop improvement -- Role of Nematode Trapping Fungi for Crop Improvement under Adverse Conditions -- Sugars As Antioxidants in Plants -- Chromium Toxicity and Tolerance in Crop Plants -- Boron Toxicity and Tolerance in Crop Plants -- Arsenic Toxicity in Crop Plants: Approaches for Stress Resistance -- Mechanism of Cadmium Toxicity and Tolerance in Crop Plants.
    Additional Edition: ISBN 9781461446323
    Additional Edition: Buchausg. u.d.T. Crop improvement under adverse conditions New York, NY : Springer, 2013 ISBN 9781461446323
    Language: English
    Subjects: Agriculture, Forestry, Horticulture, Fishery, Domestic Science , Biology
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    Keywords: Pflanzenzüchtung ; Resistenzzüchtung ; Stressresistenz ; Umweltfaktor ; Pflanzenzüchtung ; Resistenzzüchtung ; Stressresistenz ; Umweltfaktor
    URL: Volltext  (lizenzpflichtig)
    URL: Cover
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  • 3
    Book
    Book
    Amsterdam [u.a.] : Elsevier
    UID:
    b3kat_BV042518284
    Format: XV, 305 S.
    ISBN: 9780123979353
    Series Statement: Elsevier insights
    Additional Edition: Erscheint auch als Online-Ausgabe ISBN 0-12-398494-7
    Additional Edition: Erscheint auch als Online-Ausgabe ISBN 978-0-12-398494-4
    Language: English
    Subjects: Agriculture, Forestry, Horticulture, Fishery, Domestic Science , Biology
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  • 4
    UID:
    gbv_1652252371
    Format: Online-Ressource (XXIII, 302 p. 41 illus., 30 illus. in color, digital)
    ISBN: 9788132209744
    Series Statement: SpringerLink
    Content: Climate change, a global phenomenon, has attracted scientists to contribute in anticipatory research to mitigate adverse impacts, which are more important for horticulture, considering that the scenario is in the midst of revolution, reaching the production level of 250 million tonnes in India. Impacts of climate variability have, invariably, profound influence on production and quality. An understanding of the impacts and relevant adaptation strategies are of foremost importance to sustain the productivity and profitability of horticulture crops in the climate change scenario, which necessita
    Note: Description based upon print version of record , Climate-Resilient Horticulture: Adaptation and Mitigation Strategies; Foreword; Preface; About the Editors; About the Book; Acknowledgements; Contents; Contributors; 1: Adaptation and Mitigation Strategies for Climate-Resilient Horticulture; 1.1 Introduction; 1.2 Dynamics of Indian Horticulture; 1.3 An Insight About Climate Change; 1.4 Climate Change in Asia; 1.4.1 Likely Impact of Climate Change; 1.4.2 Changing Pattern of Cropping System; 1.5 Current Status of Impact and Adaptation Studies in Horticultural Crops; 1.5.1 Vegetables; 1.5.2 Tuber Crops; 1.5.3 Fruit Crops , 1.5.4 Plantation and Spice Crops1.6 Impact of Climate Change on Outbreak of Diseases and Pests; 1.7 Modelling to Predict the Likely Impact of Climate Change; 1.8 Adaptation Strategies; 1.9 Can the Climate Change be Mitigated?; 1.9.1 Mitigating Climate Change; 1.10 Critical Gaps; 1.11 Future Strategies; 1.12 Conclusions; References; 2: Impacts of Climate Change on Horticulture Across India; 2.1 Introduction; 2.2 Climate Change Scenarios Across India; 2.3 Effect of Climate Change on Tea Productivity; 2.4 Climate Change and Coconut Productivity; 2.5 Conclusion; References , 3: Modelling Climate Change Impacts, Adaptation Strategies and Mitigation Potential in Horticultural Crops3.1 Climate Change: Global and Indian Scenarios; 3.2 Climate Change and Indian Horticulture; 3.3 Approaches for Quantification of Crop Response to Elevated CO 2, Change in Temperature and Rainfall in Horticultural Crops; 3.4 Modelling and Climate Change Studies; 3.5 Steps in Crop Simulation Analysis; 3.5.1 Development of Database of Experimental Records; 3.5.2 Calibration and Confirmation ('Validation') of Simulation Models , 3.6 Application of Crop Models for Climate Change Impact Assessments3.6.1 Baseline Weather Data; 3.6.2 Climate Scenarios; 3.6.3 Simulating Baseline Yields; 3.6.4 Simulating Yields in Future Scenarios; 3.6.5 Simulating Yield Gains Due to Adaptation Options:; 3.7 Projections of Climate Change Impacts on Horticultural Crops; 3.8 Assessing the Potential Adaptation Strategies in Horticultural Sector; 3.9 Assessing Mitigation Potential in Horticulture; 3.10 Quantification of Ecosystem Services; 3.11 Uses of Crop Models for Managing Horticulture , 3.12 Research Thrusts for Horticultural Crops in Climate Change Watershed3.13 Conclusion; References; 4: Impact of Abiotic Stresses on Horticulture and Strategies for Mitigation in Northeastern India; 4.1 Introduction; 4.2 Horticultural Scenario; 4.3 Projected Climate Change and Its Impact on Horticultural Crops in 2030s; 4.3.1 Projected Changes in Climatic Factors; 4.3.1.1 Changes in Temperature; 4.3.1.2 Changes in Precipitation; 4.3.1.3 Changes in Evapotranspiration (ET); 4.3.2 Impacts of Climate Change on Horticulture; 4.3.2.1 Production System; 4.3.2.2 Quality Aspects , 4.3.2.3 Pest and Diseases
    Additional Edition: ISBN 9788132209737
    Additional Edition: Buchausg. u.d.T. Climate-resilient horticulture New Delhi : Springer, 2013 ISBN 9788132209737
    Language: English
    Subjects: Agriculture, Forestry, Horticulture, Fishery, Domestic Science
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    Keywords: Indien ; Pflanzenproduktion ; Klimaänderung
    URL: Cover
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  • 5
    Book
    Book
    New Delhi [u.a.] : Springer India | London : Springer
    UID:
    b3kat_BV040801748
    Format: XXIII, 302 S. , graph. Darst.
    ISBN: 9788132209737
    Language: English
    Subjects: Agriculture, Forestry, Horticulture, Fishery, Domestic Science
    RVK:
    Keywords: Indien ; Pflanzenproduktion ; Klimaänderung
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