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  • Plant ecology.  (23)
  • Ecology .
  • Geographical Information System.
  • Cham :Springer International Publishing :  (30)
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  • 1
    Keywords: Plant ecology. ; Soil science. ; Conservation biology. ; Ecology . ; Agriculture. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Plant Ecology. ; Soil Science. ; Conservation Biology. ; Agriculture. ; Environmental Engineering/Biotechnology.
    Description / Table of Contents: Foreword -- Preface -- Chemical fertilizers and their impact on soil health -- Microbial Bioremediation of Pesticides/Herbicides in Soil -- Pollution cleaning up techniques -- Role of Mushrooms in the Bioremediation of Soil -- Microbial degradation of organic constituents for sustainable development -- Traditional farming practices and its consequences -- Soil organic matter and its impact on soil properties and nutrient status -- Sustainable Agricultural Practices -- Values of Composting -- Introduction to Microbiota and Biofertilizers -- Fungi and their potential as Biofertilizers -- Bacillus thuringiensis as a Biofertilizer and Plant Growth Promoter -- Cyanobacteria as Sustainable Microbiome for Agricultural Industries -- Intercropping: A Substitute but Identical of Biofertilizers -- Application of Phyllosphere Microbiota as Biofertilizers -- Biofertilizers: A Viable tool for future organic agriculture -- Index.
    Abstract: The dependence of present farming on artificial input of “chemical fertilizers” has caused numerous ecological tribulations associated with global warming and soil contamination. Moreover, there is an essential requirement for realistic agricultural practices on a comprehensive level. Accordingly, biofertilizers including microbes have been recommended as feasible environmentally sound solutions for agricultural practices which not only are natural, and cost-effective but also preserve soil environs and important biota of agricultural land. In addition, it enhances the nutrient quantity of soils organically. Microbial biofertilizers promote plant growth by escalating proficient absorption of nutrients for the plants and by providing an excellent disease-fighting mechanism. Agriculture, the backbone of human sustenance, has been put under tremendous pressure by the ever-increasing human population. Although various modern agro-techniques boosted agricultural production, the excessive use of synthetic fertilizers, pesticides and herbicides have proven extremely detrimental to agriculture as well as to the environment in which it is carried out. Besides this some faulty agricultural practices like monoculture and defective irrigation, further complicate the scenario by eliminating biodiversity, increasing the efflux of nutrients into the water bodies, the formation of algal blooms, eutrophication, damaging the water quality and lowering fish stocks. Biofertilizers are the organic compounds applied to crops for their sustainable growth and the sustainability of the environment as the microbiota associated with biofertilizers interact with the soil, roots and seeds to enhance soil fertility. Application of biofertilizers results in the increased mineral and water uptake, root development, vegetative growth and nitrogen fixation besides liberating growth-promoting substances and minerals that help the maintenance of soil fertility. They further act as antagonists and play a pivotal role in neutralising soil-borne plant pathogens and thus, help in the bio-control of diseases. Application of biofertilizers instead of synthetic fertilizers could be a promising technique to raise agricultural productivity without degrading environmental quality. The present book focuses on the latest research approaches and updates from the microbiota and their applications in the agriculture industry. We believe this book addresses various challenges and shed lights on the possible future of the sustainable agricultural system.
    Type of Medium: Online Resource
    Pages: XXVII, 350 p. 174 illus., 167 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030610104
    DDC: 581.7
    Language: English
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  • 2
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Plant ecology. ; Plants Evolution. ; Soil science. ; Agriculture. ; Biotic communities. ; Plant Ecology. ; Plant Evolution. ; Soil Science. ; Agriculture. ; Ecosystems.
    Description / Table of Contents: Preface -- The weed problem -- The lives of weeds -- Controlling weeds -- Weeds, nature conservation, and global warming -- Coldwater farm habitats -- Drawings, paintings, and photographs -- Plant names -- Desert weeds identification -- Field guide -- Conclusion -- Afterword -- References -- Index.
    Abstract: In their rapid colonization of soil exposed by fires, floods, and grazing animals, weeds resemble the human specialists we label Emergency Medical Technicians (EMTs). Weeds are the first responders when disasters occur in nature. They occupy bare soil and prevent erosion by wind and water. In extreme cases such as a landslide, weeds are essential to the healing processes that replace the lost soil. Like a Band-Aid on a skinned knee, weeds protect the land while it recovers. Besides protecting the soil after disaster, weeds provide food for wildlife, and some of them provide food and medicine for people. Able to withstand harsh conditions, weeds will proliferate as global warming and other human impacts intensify. Thus, nature’s EMTs will increase while all other plants decline. The book provides a succinct definition of weeds according to their form and function in ecosystem processes. The narrative uses a representative set of weed species from a desert location to illustrate the full range of weed characteristics.
    Type of Medium: Online Resource
    Pages: XIII, 353 p. 307 illus., 194 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030458546
    DDC: 581.7
    Language: English
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  • 3
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Agriculture. ; Nutrition   . ; Plant ecology. ; Soil science. ; Refuse and refuse disposal. ; Agriculture. ; Nutrition. ; Plant Ecology. ; Soil Science. ; Waste Management/Waste Technology.
    Description / Table of Contents: Chapter 1. Organic cultivation of vegetables -- Chapter 2. Reducing arsenic accumulation in rice using advances in physiology genetics and breeding -- Chapter 3. Speciation analysis of trace antimony in environmental and biological samples based on cloud point extraction and spectrometric methods -- Chapter 4. Groundwater status and challenges in Bangladesh -- Chapter 5. Influence of organic amendments on soil properties, microflora and plant growth -- Chapter 6. Basics of waste management and disposal practices in the Indian context -- Chapter 7. Impact of the invasive Prosopis juliflora on terrestrial ecosystems -- Chapter 8. Perennial forage grass production on the marginal Arabian Peninsula land -- Chapter 9. Agricultural sustainability and food security in agro-ecological zones of Tanzania -- Chapter 10. Soil degradation, resilience, restoration and sustainable use -- Chapter 11. Integrated weed management for sustainable agriculture -- Chapter 12. Electrical impedance spectroscopy in plant biology: theory, modeling and data processing -- Chapter 13. Non-symbiotic bacteria for soil nitrogen fortification -- Chapter 14. Nutritional and medical benefits of Moringa Oleifera, the miracle tree.
    Abstract: This book presents advanced knowledge and techniques to improve food quality, such as organic farming, fertilization using waste, reducing arsenic in food, soil restoration, forage production in arid regions and weed control. Agriculture is actually facing two major challenges, feeding an ever-growing population and providing safe food in the context of pollution, climate change and the future circular economy.
    Type of Medium: Online Resource
    Pages: VII, 460 p. 53 illus., 49 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030732455
    Series Statement: Sustainable Agriculture Reviews, 52
    DDC: 630
    Language: English
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  • 4
    Keywords: Plant ecology. ; Plant physiology. ; Plant diseases. ; Agriculture. ; Environment. ; Plant Ecology. ; Plant Physiology. ; Plant Pathology. ; Agriculture. ; Environmental Sciences.
    Description / Table of Contents: Global plant invasions on the rise -- Invasion of plant communities -- Development of pathways of global plant invasions in space and time -- Plant invasions, rising CO2, and global climate change -- Plant invasions in Asia -- A historical perspective on plant invasion in Australia -- European plant invasions -- Plant invasions in North America -- Plant invasions in South America -- Biological invasions by plants in continental Central America -- Plant invasions in Africa -- Island plant invasions -- Plant invasions in mountains -- Biotic and economic impacts of plant invasions -- Advances in the management of invasive plants -- Moving towards global strategies for managing invasive alien species -- A Future planet of weeds?.
    Abstract: Invasive species have inspired concern for many reasons, including economic and environmental impacts in specific jurisdictions within particular countries. However, it is apparent that for some invasive plant species, political borders offer only weak barriers because these species have succeeded in invading many countries, emerging as threats at a global level. With this level of threat, a number of books on invasive plants and invasive species in general have been published in recent years, but none explicitly provides “global” coverage, perhaps because it is only recently that the full geographical, economic and environmental implications of widespread spread and adaptive nature of these particular invasive plants have been recognized. We plan to make this volume unique by profiling plant invasions in explicitly geographical contexts; on the world continents (Chapters 5-11), as well as islands (Chapter 12) and mountains (Chapter 13). This global approach is supported by an overview of invasion biology and recent advances (Chapter 1) and how different communities differ in invasibility (Chapter 2). Global factors influencing invasion are introduced in Chapter 3 (globalized trade) and Chapter 4 (climate change). Key species are profiled through geographic treatments, continent by continent (Chapters 5-11), and for islands (Chapter 12) and mountains (Chapter 13). The impact of invasive plants is highlighted in Chapter 14, both in biotic and economic terms, partly to counter the tendency for the young field of invasion biology to rely too much on anecdotal evidence. This chapters is also designed to bring home the message that these are serious problems that must be dealt with, as covered in the subsequent chapters. The book concludes with three chapters casting light on solutions to the many problems described in the rest of the volume. Chapter 15 features new, innovative technologies that are being developed to monitor and manage invasive plants, and Chapter 16 presents comprehensive strategies for public education and implementation of management on local and global scales. Chapter 17 describes different future scenarios depending on current trends in plant invasion and its management, just as climate change predictions employ various scenarios to project the future. The future is very much up to us, as humanity grapples with the question of how best to strategically meet the problems of global invasive plant problems that we ourselves have created that is further challenged by a changing climate. We are confident that this book will be of interest to invasion biologists, resource managers, and the legion of others who must deal with these invasive plants across the globe on a daily basis.
    Type of Medium: Online Resource
    Pages: XII, 381 p. 38 illus., 22 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030896843
    DDC: 581.7
    Language: English
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  • 5
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Agriculture. ; Control engineering. ; Robotics. ; Automation. ; Geographic information systems. ; Food science. ; Agriculture. ; Control, Robotics, Automation. ; Geographical Information System. ; Food Science.
    Description / Table of Contents: Fundamentals of Tree and Vine Physiology -- Mechanical Management of Modern Planar Fruit Tree Canopies -- Orchard Water Management -- Vineyard Water Management -- Pests and diseases management -- Advanced Technologies for Crop-load Management -- Mechanical Harvesting -- Autonomous Platforms -- Management Information Systems and Emerging Technologies -- Economic and Societal Aspects.
    Abstract: Modern tree fruit orchards and vineyards constitute complex production systems that are exposed to highly dynamic and stochastic natural, financial and societal forces, and face demands for increased production using fewer resources, with reduced environmental impact. Successful operation of orchards and vineyards under these conditions is practically impossible without careful and extensive use of state-of-the-art automation technologies and careful planning of future operations (e.g., training systems when replanting) that can be enabled by knowledge of emerging technologies and future trends. Also, improvement of existing automation technologies and development of novel future systems cannot be accomplished without a working understanding of the tree and vine biological production systems, their management needs, and the capabilities and limitations of existing automation systems. The book aims to provide the necessary knowledge to achieve the above goals in a way that can engage readers without engineering or horticultural backgrounds. .
    Type of Medium: Online Resource
    Pages: VII, 241 p. 1 illus. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031269417
    Series Statement: Agriculture Automation and Control,
    DDC: 630
    Language: English
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  • 6
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Plant ecology. ; Conservation biology. ; Ecology . ; Biodiversity. ; Plants Evolution. ; Plant Ecology. ; Conservation Biology. ; Biodiversity. ; Plant Evolution.
    Description / Table of Contents: Chapter 1. Introduction -- Chapter 2 -- The Pamir-Alay Mountains (Middle Asia: Tajikistan) -- Chapter 3. The Hindu Kush / Afghanistan -- Chapter 4. The Khorassan-Kopet Dagh Mountains -- Chapter 5. The Alborz mountain range -- Chapter 6. The Yazd–Kerman massifs -- Chapter 7. The Zagros mountain range -- Chapter 8. The Anatolian High-Mountain Ranges – Plant Diversity between two Seas -- Chapter 9 -- The Transcaucasian Highlands -- Chapter 10. North-Western Caucasus.
    Abstract: This book presents an overview study about plant biogeography and vegetation of the high mountains of Central and South-West Asia, by a group of specialists familiar with its area and plant growth and ecology. This book discusses its ecological and evolutionary drivers and also its conservation priorities. Central and South-West Asia is one of the most diverse areas in the northern hemisphere and several biodiversity hotspots are concentrated in this region. Most of the biodiversity hotspots are associated with high mountain ranges of the region. Moreover, these mountains have been immigration corridors for the Central Asian flora to reach Euro-Siberian and Mediterranean regions. Despite its importance, there is no overview publication to present the plant biogeography and vegetation of these mountains and most of the publications are local or rather imprecise.
    Type of Medium: Online Resource
    Pages: XIII, 360 p. 121 illus., 96 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030452124
    Series Statement: Plant and Vegetation, 17
    DDC: 581.7
    Language: English
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  • 7
    Keywords: Agriculture. ; Mechanical engineering. ; Geographic information systems. ; Computer simulation. ; Agriculture. ; Mechanical Engineering. ; Geographical Information System. ; Computer Modelling.
    Description / Table of Contents: Chapter 1 - The Agriculture Eras -- Chapter 2 - Global Navigation Satellite Systems -- Chapter 3 - Spatial and Temporal Variability Analysis -- Chapter 4 - Images and Remote Sensing Applied to Agricultural Management -- Chapter 5 - Geoprocessing Applied to Crop Management -- Chapter 6 - Sampling and Interpretation of Maps -- Chapter 7 - Agricultural Drones’ Application -- Chapter 8 - Sensors and Actuators -- Chapter 9 - Control and Automation Systems in Agricultural Machinery -- Chapter 10 - Digital Irrigation -- Chapter 11 - Digital Livestock Farming -- Chapter 12 - Internet of Things In Agriculture -- Chapter 13 - Data transmission, cloud computing and Big Data -- Chapter 14 - Machine Learning -- Chapter 15 - Platforms, Applications and Software -- Chapter 16 - Digital Data: Cycle, Standardization, Quality, Sharing and Security -- Chapter 17 - Case Study: SLC Agrícola -- Index.
    Abstract: This textbook addresses the most recent advances and main digital technologies used in farming. The reader will be able to understand the main concepts and techniques currently used to efficiently manage agricultural production systems. The book covers topics in a general and intuitive way, with examples and good illustrations.
    Type of Medium: Online Resource
    Pages: VIII, 306 p. 145 illus., 123 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031145339
    DDC: 630
    Language: English
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  • 8
    Keywords: Plant ecology. ; Plants Development. ; Plant physiology. ; Plant diseases. ; Plant biotechnology. ; Agriculture. ; Plant Ecology. ; Plant Development. ; Plant Physiology. ; Plant Pathology. ; Plant Biotechnology. ; Agriculture.
    Description / Table of Contents: 1. Introduction—implications of climate change for pests expansion and crop protection -- 2. Herbicide metabolism, weed growth, competition and control under changing climate -- 3. Climate change and invasive weeds -- 4. Impact of climate change on plant diseases and their management -- 5. Influence of climate change on insect pests and their management -- 6. Crop protection under drought stress -- 7. Impact of climate change on crop yields and quality -- 8. Impact of global warming on society and environment; issues and solutions.
    Abstract: This book addresses the impact of important climatic changes on plant pests (including weeds, diseases and insect pests), and their interactions with crop plants. Anthropogenic activities have seriously impacted the global climate. As a result, carbon dioxide (CO2) and temperature levels of the earth are on a continuous rise. The global temperature is expected to increase by a 3°C or more by the end of this century. The CO2 concentration was below 300 parts per million (ppm) before the start of the industrial era; however, recently it has exceeded 400 ppm. This is highest ever in human history. Other than global warming and elevated CO2 concentrations, anthropogenic activities have also disturbed the global water cycle, ultimately, impacting the quantity and distribution of rainfall. This has resulted in drought conditions in many parts of the world. Global warming, elevated CO2 concentration and drought are considered the most important recent climatic changes that are impacting global ecosystems and human societies. Among other impacts, the effects of climatic changes on pests, pest-crop interactions and pest control are important with relevance to global food security, and hence require immediate attention by plant scientists. This book discusses innovative and the most effective pest control methods under an environment of changing climate and elaborates on the impact of drought on plant pests and their control.
    Type of Medium: Online Resource
    Pages: X, 204 p. 20 illus., 18 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030461119
    DDC: 581.7
    Language: English
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  • 9
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Agriculture. ; Control engineering. ; Robotics. ; Automation. ; Geographic information systems. ; Agriculture. ; Control, Robotics, Automation. ; Geographical Information System.
    Description / Table of Contents: Preface -- Chapter 1 -- Agricultural and Field Robotics: An Introduction -- Part I. Sensing and Machine Vision -- Chapter 2. Sensors I: Color Imaging and Basics of Image Processing -- Chapter 3. Sensors II: 3D Sensing Techniques and Systems -- Chapter 4. Sensors III: Spectral Sensing and Data Analysis -- Chapter 5. Crop Scouting and Surrounding Awareness for Specialty Crops -- Chapter 6. Crop Sensing and Its Application in Precision Agriculture and Crop Phenotyping -- Part II: Mechanisms, Dynamics and Control -- Chapter 7. Robotic Manipulation and Optimization for Agricultural and Field Applications -- Chapter 8. End-effector Technologies -- Chapter 9. Control Techniques in Robotic Harvesting -- Chapter 10. Guidance, Auto-Steering Systems and Control -- Chapter 11. Automated Infield Sorting and Handling of Apples -- Chapter 12. Modeling, Simulation and Visualization of Agricultural and Field Robotic Systems -- Part III: Emerging Topics in Agricultural and Field Robotics -- Chapter 13. Advanced Learning and Classification Techniques for Agricultural and Field Robotics -- Chapter 14. Digital Farming and Field Robotics - Internet of Things, Cloud Computing and Big Data -- Chapter 15. Human-Machine Interactions -- Chapter 16. Machinery-Canopy Interactions in Tree Fruit Crops -- Index.
    Abstract: Over the past century, mechanization has been an important means for optimizing resource utilization, improving worker health and safety and reducing labor requirements in farming while increasing productivity and quality of 4F (Food, Fuel, Fiber, Feed). Recognizing this contribution, agricultural mechanization was considered as one of the top ten engineering achievements of 20th century by the National Academy of Engineering. Accordingly farming communities have adopted increasing level of automation and robotics to further improve the precision management of crops (including input resources), increase productivity and reduce farm labor beyond what has been possible with conventional mechanization technologies. It is more important than ever to continue to develop and adopt novel automation and robotic solutions into farming so that some of the most complex agricultural tasks, which require huge amount of seasonal labor such as fruit and vegetable harvesting, could be automated while meeting the rapidly increasing need for 4F. In addition, continual innovation in and adoption of agricultural automation and robotic technologies is essential to minimize the use of depleting resources including water, minerals and other chemicals so that sufficient amount of safe and healthy food can be produced for current generation while not compromising the potential for the future generation. This book aims at presenting the fundamental principles of various aspects of automation and robotics as they relate to production agriculture (the branch of agriculture dealing with farming operations from field preparation to seeding, to harvesting and field logistics). The building blocks of agricultural automation and robotics that are discussed in the book include sensing and machine vision, control, guidance, manipulation and end-effector technologies. The fundamentals and operating principles of these technologies are explained with examples from cutting-edge research and development currently going on around the word. This book brings together scientists, engineers, students and professionals working in these and related technologies to present their latest examples of agricultural automation and robotics research, innovation and development while explaining the fundamentals of the technology. The book, therefore, benefits those who wish to develop novel agricultural engineering solutions and/or to adopt them in the future. .
    Type of Medium: Online Resource
    Pages: XIV, 455 p. 201 illus., 161 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030704001
    Series Statement: Agriculture Automation and Control,
    DDC: 630
    Language: English
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  • 10
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Agriculture. ; Geographic information systems. ; Agriculture. ; Geographical Information System.
    Description / Table of Contents: Chapter 1. Introduction and Basic Sensing Concepts -- Chapter 2. Satellite Remote Sensing for Precision Agriculture -- Chapter 3. Sensing Crop Geometry and Structure -- Chapter 4. Soil Sensing -- Chapter 5. Sensing with Wireless Sensor Networks -- Chapter 6. Sensing for Health, Vigour and Disease Detection in Row and Grain Crops -- Chapter 7. On-Combine Sensing Techniques in Arable Crops -- Chapter 8. Sensing in Precision Horticulture -- Chapter 9. Sensing from Unmanned Aerial Vehicles -- Chapter 10. Sensing for Weed Detection -- Chapter 11. Applications of Sensing To Precision Irrigation -- Chapter 12. Applications of Optical Sensing of Crop Health and Vigour -- Chapter 13. Applications of Sensing for Disease Detection -- Chapter 14. Conclusions: Future Directions in Sensing for Precision Agriculture -- Index.
    Abstract: Sensing Approaches for Precision Agriculture aims to bring together the ‘state of the art’ of the most popular sensing techniques and the current state of research on the application of sensors in Precision Agriculture (PA). Sensing is of great value in PA because it provides cheap and immediate data for management. This book gives a broad overview of sensing in PA and a coherent introduction for new professionals and research scientists. Readers are introduced to the potential applications of a range of different sensors, how they should be used properly and their limitations for use in PA. Chapters on specific topics and case studies provide depth and enable implementation of the methods by users. A general introduction about sensing techniques in PA is followed by Chapters 2–9 on the most important specific techniques in sensing and Chapters 10–13 include mini-case studies, each showing cutting-edge applications for different sensing methods. Finally, there is an Epilogue on how we expect sensors and analysis to develop.
    Type of Medium: Online Resource
    Pages: XVII, 415 p. 105 illus., 56 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030784317
    Series Statement: Progress in Precision Agriculture,
    DDC: 630
    Language: English
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  • 11
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Plant ecology. ; Biodiversity. ; Plants Evolution. ; Botanical chemistry. ; Plant Ecology. ; Biodiversity. ; Plant Evolution. ; Plant Biochemistry.
    Description / Table of Contents: Chapter 1 – General features of the Pantanal wetland -- Chapter 2 – Classification and mapping of the vegetation of the Brazilian Pantanal -- Chapter 3 – Flora of the Pantanal -- Chapter 4 – Aquatic plants -- Chapter 5 – Leguminosae in the Pantanal -- Chapter 6 - Lichenized Ascomycota from the Pantanal in Mato Grosso do Sul state, Brazil -- Chapter 7 – Hydrology and vegetation base for classification of macrohabitats of the Brazilian Pantanal for policy-making and management -- Chapter 8 – Monodominant stands in the Pantanal -- Chapter 9 – Composition and distribution of woody and palm vegetation in the Pantanal wetland -- Chapter 10 – Natural pastures of the Pantanal: diversity, productive potential and dynamics -- Chapter 11 – Woody encroachment and its control in periodically flooded grasslands of the Pantanal, a large Brazilian wetland -- Chapter 12 – Paleovegetation inferences and landscape evolution in the Pantanal Basin -- Chapter 13 – Synthesis of the present knowledge on plant phenology of the Pantanal -- Chapter 14 – Temporal patterns of pollination and seed dispersal in capões of the southern Pantanal -- Chapter 15 – Soil seed banks in the Pantanal wetland -- Chapter 16 – Plant morphoanatomical adaptations to environmental conditions of the Pantanal wetland -- Chapter 17 – Metabolomics applied to understand and determine ecological and evolutionary relationships, and medicinal potential of plants from Pantanal -- Chapter 18 – Fire, flood and Pantanal vegetation -- Chapter 19 – Wild food plants of the Pantanal: past, present and future -- Chapter 20 – Ecological restoration of Pantanal wetlands -- Chapter 21 – Monetary value of the ecosystem services of the Pantanal and its surroundings: first approximations and perspectives -- Index.
    Abstract: This book will present information on Pantanal vegetation including an updated checklist of flora, useful plants, ecological aspects and some topics never published for this region, such as lichens. It aims to be a reference for researchers, graduate and undergraduate students as well as stakeholders and decision makers interested in the flora and vegetation of one of the world’s largest tropical wetlands.
    Type of Medium: Online Resource
    Pages: XXI, 802 p. 182 illus., 165 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030833756
    Series Statement: Plant and Vegetation, 18
    DDC: 581.7
    Language: English
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  • 12
    Keywords: Plant ecology. ; Restoration Ecology. ; Conservation biology. ; Ecology . ; Landscape ecology. ; Biodiversity. ; Plant Ecology. ; Restoration Ecology. ; Conservation Biology. ; Landscape Ecology. ; Biodiversity.
    Description / Table of Contents: Foreword -- Preface -- Introduction -- Grassy community restoration -- Restoration of abundance pasture lands in tropics -- Wetland or riparian restoration -- Mine site rehabilitation -- Farm-based restoration -- Roadside restoration -- Forest restoration -- Effects of restoration in rainforests, India -- Arid zone restoration -- Urban restoration -- Rare species restoration -- Assisted Recovery -- Importance of seed sources in future restoration programs -- Seed production area for landscape scale restoration efforts -- Restoration markets -- Broad scale restoration experiments -- Climate ready restoration -- Final synthesis.
    Abstract: Ecological restoration, although a relatively new endeavour compared to other disciplines, has gained significant momentum during the last decade as accelerating global change becomes more apparent. It is now widely accepted by the scientific community that to avoid further devastating effects of climate change and biodiversity loss, humanity must determinedly move more to protect and restore natural ecosystems. Many restoration efforts of the past have been ad hoc, site and situation-specific and have often failed to achieve desired outcomes, but over the last decade, many countries are allocating increasingly significant amounts of financial investment towards restoration with the goal of achieving more systematic and predictable outcomes. Today, activities related to restoring ecosystems, natural assets and biodiversity are a global focus. This book covers a wide range of topics related to ecological restoration including for grasslands, wetlands, temperate and tropical forests and arid zones. Importantly, it also focuses on ecological restoration in human-disturbed landscapes such as for urban areas, farmlands, mine sites and transport corridors. It highlights the necessity for evidence-based approaches that are both nuanced and complementary with prescriptions for people-based restoration, that is socially inclusive and cognisant of historic and current community sentiment. Ambitious landscape and continental scale targets for ecological restoration have been set across the globe. However, without practical guidelines developed from restoration evaluations from the recent past to follow, future efforts are unlikely to be successful, nor -expected targets met. To that end, this book reviews and highlights a large number and variety of restoration stories from around the world. Most are presented as reader-friendly case studies, that feature innovative and systematic techniques for undertaking species-rich ecological restoration. Together they provide inspiration for current and future professionals and offer unique glimpses into state-of-the-art practice for this critically important discipline.
    Type of Medium: Online Resource
    Pages: XIV, 601 p. 183 illus., 168 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031254123
    DDC: 581.7
    Language: English
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  • 13
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Agricultural biotechnology. ; Plant ecology. ; Stress (Physiology). ; Plants. ; Plant biotechnology. ; Bioclimatology. ; Agricultural Biotechnology. ; Plant Ecology. ; Plant Stress Responses. ; Plant Biotechnology. ; Climate Change Ecology.
    Description / Table of Contents: 1. Climate Change and Global Crop Production: An Inclusive Insight -- 2. Uptake and Use Efficiency of Major Plant Nutrients for Climate Resilient Agriculture -- 3. Improving Land Use Efficiency for Climate Resilient Agriculture -- 4. Climate Resilient Fertilizer Management for Crop Production -- 5. Modern Agronomic Measurement for Climate Resilient Agriculture -- 6. Crop Management for Sustainable Wheat Production -- 7. Climate Resilient Weed Management for Crop Production -- 8. Climate Resilient Technology for Maize Production -- 9. Climate Resilience Technologies for Wheat production -- 10. Improving Plant Nutrient Use Efficiency for Climate Resilient Agriculture -- 11. Biochar for Plant Stress Tolerance for Climate Resilient Agriculture -- 12. Chitosan for Plant Growth and Stress Tolerance -- 13. Exogenous Application of Biostimulants and Commercial Utilization -- 14. Crosstalk of Biostimulants with Other Signaling Molecules under Abiotic Stress -- 15. Abiotic Stress Sensitivity and Adaptation in Field Crops,- 16. Biostimulants for Plant Abiotic Stress Resistance and Climate-Resilient Agriculture -- 17. Approaches in Enhancing Salt Tolerance in Plants -- 18. Mechanism and Approaches to Enhance Salt Stress Tolerance in Crop Plants -- 19. Mechanisms and Approaches of Enhancing Drought Stress Tolerance in Crops Plants -- 20. Conferring Plant Tolerance to Drought and Salinity by the Application of Biochar -- 21. Accumulation and Toxicity of Arsenic in Rice and its Practical Mitigation -- 22. Mechanism and Approaches to Enhancing Heat Stress Tolerance in Crop Plants -- 23. Mechanisms and Responses to Enhancing Pollutants Stress Tolerance in Crop Plants -- 24. Phytohormones as Stress Mitigator in Plants -- 25. Role of Plant Extracts and Biostimulant in Mitigating of Plant Drought and Salinity Stress -- 26. Secondary Metabolism and its Role in Enhancing Drought Stress Tolerance -- 27. Seed Priming for Abiotic Stress Tolerance -- 28. Advances in Biotechnological Tools and their Impact on Global Climate Change and Food Security -- 29. Biotechnological Attributes of Bio-stimulants for Relieving Abiotic Stress -- 30. Biotechnological Techniques for Sustainable Waste Management -- 31. Role of Biotechnology in Management of Solid Waste -- 32. Bioremediation of Sites Contaminated with Heavy Metals, Techniques and their Application -- 33. MicroRNAs (miRNAs): Crosstalk with Regulatory Networks of Abiotic Stress Tolerance in Plants -- 34. Orchestration of Omics Technologies for Crop Improvement -- 35. Transgenic Approaches for Stress Tolerance in Crops -- 36. Translationally Controlled Tumor Protein and its Relationship with Responses of Plants to Abiotic Stresses -- 37. Plant Tissue Culture and Crop Improvement -- 38. Nanotechnology for Climate-Resilient Agriculture -- 39. Mitigation of Plant Abiotic Stress by Plant Growth Promoting Bacteria, Hormones and Plant Extracts -- 40. Bioremdiation and Phytoremediation Aspects of Crop Improvement -- 41. Ecofriendly Management of Insect Pests for Sustainable Agriculture -- 42. Ecofriendly Management of Disease for Sustainable Agriculture -- 43. Use of Advance Composting Techniques and Areas of Improvement in Pakistan.
    Abstract: Under ongoing climate change, natural and cultivated habitats of major food crops are being continuously disturbed. Such condition accelerates to impose stress effects like abiotic and biotic stressors. Drought, salinity, flood, cold, heat, heavy metals, metalloids, oxidants, irradiation etc. are important abiotic stresses; and diseases and infections caused by plant pathogens viz. fungal agents, bacteria and viruses are major biotic stresses. As a result, these harsh environments affect crop productivity and its biology in multiple complex paradigms. As stresses become the limiting factors for agricultural productivity and exert detrimental role on growth and yield of the crops, scientists and researchers are challenged to maintain global food security for a rising world population. This two-volume work highlights the fast-moving agricultural research on crop improvement through the stress mitigation strategies, with specific focuses on crop biology and their response to climatic instabilities. Together with "Climate Resilient Agriculture, Vol 1: Crop Responses and Agroecological Perspectives", it covers a wide range of topics under environmental challenges, agronomy and agriculture processes, and biotechnological approaches, uniquely suitable for scientists, researchers and students working in the fields of agriculture, plant science, environmental biology and biotechnology.
    Type of Medium: Online Resource
    Pages: XXVI, 998 p. 111 illus., 107 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031374289
    DDC: 630
    Language: English
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  • 14
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Plant ecology. ; Environmental monitoring. ; Physical geography. ; Ecology . ; Plant Ecology. ; Environmental Monitoring. ; Physical Geography. ; Ecology.
    Description / Table of Contents: 1. Physical, Geographical and Geological Description of the Retezat Mountains -- 2. History of Floristic and Vegetation Research -- 3. Areal-Geographical Characterization of the Retezat Flora and the Endangered Species -- 4. Mapping Rare, Endangered Angiosperm Species of Phytogeographical Interest from the Retezat National Park -- 5. Vegetation of the Retezat Mountains -- 6. Description of the Plant Associations Distinguished in the Retezat National Park -- 7. Considerations on the Flora, Vegetation and Conservation of the Plant Gene Pool in the Retezat National Park.
    Abstract: The floristic studies carried out during the 19th and 20th centuries in the Retezat Massif identified 1,152 plant species and 104 subspecies within the Cormobionta sub-regnum. Of these, about 12% are endemic Carpathian and Dacian-Balkan taxa that induce a regional specificity to the hosting communities. The phytocoenological research led to the description of 67 plant associations, grouped in 28 alliances, 19 orders and 13 vegetation classes. These classes are: Asplenietea trichomanis, Thlaspietea rotundifolii, Salicetea herbaceae, Montio-Cardaminetea, Scheuchzerio-Caricetea fuscae, Oxycocco-Sphagnetea, Molinio-Arrhenatheretea, Caricetea curvulae, Loisleurio-Vaccinietea, Elyno-Seslerietea, Mulgedio-Aconitetea, Carpino-Fagetea and Vaccinio-Piceetea. The following plant associations herein described are new syntaxa: Phyteumo confusi-Junicetum trifidi, Salici kitaibelianae-Dryadetum octopetalae and Aconito taurici-Rumicetum alpine. For the protection of some rare plant species and vulnerable plant associations, two natural reserves are proposed to be created within the “Limestone Retezat” area.
    Type of Medium: Online Resource
    Pages: XI, 259 p. 77 illus., 76 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031056185
    Series Statement: Geobotany Studies, Basics, Methods and Case Studies,
    DDC: 581.7
    Language: English
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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Plant ecology. ; Biodiversity. ; Anthropology. ; Plant Ecology. ; Biodiversity. ; Anthropology.
    Description / Table of Contents: Explorers and Botany -- Our expeditions through personal memories -- Flora -- Plant Communities -- Water and Aborigines -- Man and Vegetation { Conservation -- The Pignatti Rockholes -- Sketches.
    Abstract: The book contains detailed descriptions of the unique desert environment with particular emphasis on vegetation and survival strategies of plants. Nine expeditions through the Southwest of Western Australia over a period of 15 years triggered the interest of the authors to explore also some deserts in the region, which leads to three further excursions into the sandy dunes of the desert. Observations of plant life in the deserts focused not only on identifying plants, but also on gaining some understanding of the aboriginal desert people of centuries past, and their own survival strategies in such extreme conditions. Also part of the Canning Stock Route was followed and explored, but the most rewarding and interesting finds were done criss-crossing the desert away from highways, tracks, and paths. The most remote areas showed species richness and surviving strategies which by far exceeded expectations.
    Type of Medium: Online Resource
    Pages: XIII, 441 p. 385 illus., 97 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030853297
    Series Statement: Geobotany Studies, Basics, Methods and Case Studies,
    DDC: 581.7
    Language: English
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  • 16
    Keywords: Agriculture. ; Plant ecology. ; Plants Development. ; Plant biotechnology. ; Plant physiology. ; Agriculture. ; Plant Ecology. ; Plant Development. ; Plant Biotechnology. ; Plant Physiology.
    Description / Table of Contents: Preface -- Organic and Inorganic Fertilizer Contaminants in Agriculture -- Role of Nutrients in Plant Growth and Development -- Practice and Impact of Pesticides in Agricultural Crops -- Response of Organic and Inorganic Fertilizers on Soil Microbial Population and Yield of Plants -- An Overview of the Effect of Heavy Metals on Soil and Plant Growth -- Effect of Acid Rain on Crop Plants and its Mitigation Approaches -- Heavy Metals -- Heavy Metal Induced Gene Expression in Plants -- Nano-contaminants -- Heavy Metal Toxicity and Tolerance in Crop Plants -- Planning and Engineering Applications of Agricultural Wastes and their Remediation Strategies -- The Use of Constructed Wetlands to Mitigate Pollution from Agricultural Runoff -- Role of Nitrogen and Agricultural Management in Changing Environment -- Efficient Biotransformation of Agricultural Waste in India -- Impact of Bio-fertilizers/ Mineral Fertilizers on Crop Production under Contaminated Soils -- Nutrient Management for Medicinal Plants grown in Calcareous Soils -- Intimidating Effects of Heavy Metals on Mentha Species and Its Mitigation Using Scientific Approaches -- Impact of Heavy Metals on Catharanthus roseus and Its Amelioration through Conceivable Approaches -- Role of Cobalt in Plants -- Phytoremediation of Contaminated Soils of Mining Areas -- Bioremediation of Toxic Pollutants -- Ecological Implications of Atmospheric Nutrient Deposition in Low-Nutrient Ecosystems -- Utilization of Sericulture Waste by Employing Possible Approaches -- Inimical Effects of Arsenic on the Plant Physiology and Possible Biotechnological Solutions to Mitigate Arsenic Induced Toxicity -- The Use of Vermicompost Leachate for Irrigation in Two South American Plant Species -- Index.
    Abstract: This comprehensive volume covers recent studies into agricultural problems caused by soil and water contamination. Considering the importance of agricultural crops to human health, the editors have focused on chapters detailing the negative impact of heavy metals, excessive chemical fertilizer use, nutrients, pesticides, herbicides, insecticides, agricultural wastes and toxic pollutants, among others, on agricultural soil and crops. In addition, the chapters offer solutions to these negative impacts through various scientific approaches, including using biotechnology, nanotechnology, nutrient management strategies, biofertilizers, as well as potent PGRs and elicitors. This book serves as a key source of information on scientific and engineered approaches and challenges for the bioremediation of agricultural contamination worldwide. This book should be helpful for research students, teachers, agriculturalists, agronomists, botanists, and plant growers, as well as in the fields of agriculture, agronomy, plant science, plant biology, and biotechnology, among others. It serves as an excellent reference on the current research and future directions of contaminants in agriculture from laboratory research to field application.
    Type of Medium: Online Resource
    Pages: XIV, 446 p. 58 illus., 43 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030415525
    DDC: 630
    Language: English
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  • 17
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Plant ecology. ; Environment. ; Plants Evolution. ; Conservation biology. ; Ecology . ; Plant Ecology. ; Environmental Sciences. ; Plant Evolution. ; Conservation Biology.
    Description / Table of Contents: Chapter 1. Arctic Tundra: Where There Are No Trees -- Chapter 2. Arctic Is Not One -- Chapter 3. Arctic Plants in Different Tundras -- Chapter 4. Arctic Plants in Svalbard- Who are they and what do they do?/Svalbard, cold shore -- Chapter 5. The Past Shows the Future.
    Abstract: The Arctic is a special world. The Arctic Ocean is covered by white sea ice, and its margins are surrounded by bare terrestrial regions, known as tundra. Tundra is a cold and dry environment without trees, but even in the absence of trees, tundra plants such as dwarf shrubs, grasses, herbs and moss support the harsh environment by providing sustenance and shelter. This book introduces representative arctic plants and their function in Svalbard, revealing the unique tundra ecosystem, and discussing the direct and indirect effects of climate change in the Arctic.
    Type of Medium: Online Resource
    Pages: XIV, 107 p. 66 illus., 63 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030345600
    DDC: 581.7
    Language: English
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  • 18
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Agriculture. ; Plant ecology. ; Plant physiology. ; Pharmacology. ; Conservation biology. ; Ecology . ; Agriculture. ; Plant Ecology. ; Plant Physiology. ; Pharmacology. ; Conservation Biology.
    Description / Table of Contents: Chapter 1. Crop protection for agricultural intensification systems in sub-Saharan Africa (Alain Ratnadass) -- Chapter 2. Coffee diversity and conservation in Ethiopia (Kifle Zerga and Birhanu Tsegaye) -- Chapter 3. Phytochemistry, toxicity and pharmacology of Pistacia lentiscus, Artemisia herba-alba and Citrullus colocynthis (Mohamed Amine Gacem, Aminata Ould El Hadj-Khelil, Badreddine Boudjemaa and Hiba Gacem) -- Chapter 4. Role of osmolytes in the mechanisms of antioxidant defense of plants (Shah Fahad, Muhammad Akbar Anjum, Aamir Nawaz, Safina Naz, Sajjad Hussain and Shakeel Ahmad) -- Chapter 5. Basmati rice production and research in Pakistan (Muhammad Akhter and Zulqarnain Haider) -- Chapter 6. Site-specific fertilizer nitrogen management in cereals in South Asia (Bijay-Singh, Varinderpal-Signh and Ali M. Ali) -- Chapter 7. Materials and methods for biodiesel production (Soham Chattopadhyay and Ramkrishna Sen).
    Abstract: This book reviews recent research advances in sustainable agriculture, with focus on crop production, biodiversity and biofuels in Africa and Asia. .
    Type of Medium: Online Resource
    Pages: VII, 204 p. 35 illus., 2 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030388812
    Series Statement: Sustainable Agriculture Reviews, 39
    DDC: 630
    Language: English
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  • 19
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Plant ecology. ; Plants Evolution. ; Biotic communities. ; Biogeography. ; Botany. ; Plant Ecology. ; Plant Evolution. ; Ecosystems. ; Biogeosciences. ; Plant Science.
    Description / Table of Contents: Chapter 1. Fundamentals towards Understanding Global Vegetation -- Chapter 2. Zonal Vegetation of the Tropical Zone with Year-Round Rain -- Chapter 3. Zonal Vegetation of the Tropical Zone with Summer Rain -- Chapter 4. Tropical Azonal Vegetation -- Chapter 5. Vegetation of the Tropical High Mountains -- Chapter 6. Zonal Vegetation of the Tropical-Subtropical Dry Zone -- Chapter 7. Zonal Vegetation of the Subtropical (Warm-Temperate) Zone with Year-Round Rain -- Chapter 8. Zonal Vegetation of the Subtropical (Warm-Temperate) Zone with Winter Rain -- Chapter 9. Temperate Azonal Vegetation -- Chapter 10. Vegetation of the Temperate High Mountains -- Chapter 11. Zonal Vegetation of the Humid Nemoral (Cool-Temperate) Zone -- Chapter 12. Zonal Vegetation of the Dry Nemoral (Cool-Temperate) Zone -- Chapter 13. Vegetation of the Boreal (Cold-Temperate) Zone -- Chapter 14. Vegetation of the Polar Zone.
    Abstract: This up-to-date textbook of global vegetation ecology, which comprises the current state of knowledge, is long overdue and much-needed. It is a translation of the textbook “Vegetation der Erde” (Springer-Spektrum, Heidelberg). A short introductory chapter deals with the fundamentals of vegetation ecology that are of importance for the delimitation and characterization of the global vegetation presented in this book (chorology, evolution of plants, physiognomic and structural characteristics, phytodiversity and the human impact on it as well as general terminology concerning both plant growth forms and on vegetation structure types). In the following chapters the zonal and azonal vegetation from the tropics to the polar regions including high mountains is described and discussed. The main focus is on the characterization of interactions between the spatial location of plants and plant communities on the one hand and site conditions, historic and genetic processes, spatial and temporal patterns, ecophysiology and anthropogenic influences on the other hand. Additional information on specific topics is provided in 51 boxes. .
    Type of Medium: Online Resource
    Pages: XXII, 858 p. 302 illus., 260 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030498603
    DDC: 581.7
    Language: English
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  • 20
    Keywords: Plant ecology. ; Forestry. ; Botany. ; Agricultural ecology. ; Biodiversity. ; Plant Ecology. ; Forestry. ; Plant Science. ; Agroecology. ; Biodiversity.
    Description / Table of Contents: Preface -- Potential role of forest-based plants in essential oil production: an approach to cosmetic and personal health care applications -- Aromatic oils from forest and their application -- Role of traditional chewing sticks in oral hygiene and other benefits -- Plant-based sweeteners and their applications in modern lifestyle -- Nutritional, pharmaceutical and industrial potential of forest-based plant gum -- Commercial, cosmetic and medicinal importance of sandal (Santalum album): a valuable forest resource -- Forest-based edible seeds and nuts for healthcare and disease control -- Medicinal plants of Himalayan forests -- Forest-based medicinal plants for cardiovascular diseases -- Potential role of medicinal plants in cure of liver and kidney diseases -- Forest-based medicinal plants for cancer cure -- Health benefit, traditional and modern uses of natural honey -- Spices obtained from forest and other resources -- Ganoderma lucidum: king of mushroom -- Health-promoting benefits, value-added products and other uses of banana -- Forest-based plants in beautification and their medicinal significance -- Food, fodder and fuel-woods from forest -- Fibre from forest and their importance in modern time.
    Abstract: Forests cover thirty-one percent of the world’s land surface, provide habitats for animals, livelihoods for humans, and generate household income in rural areas of developing countries. They also supply other essential amenities, for instance, they filter water, control water runoff, protect soil erosion, regulate climate, store nutrients, and facilitate countless non-timber forest products (NTFPs). The main NTFPs comprise herbs, grasses, climbers, shrubs, and trees used for food, fodder, fuel, beverages, medicine, animals, birds and fish for food, fur, and feathers, as well as their products, like honey, lac, silk, and paper. At present, these products play an important role in the daily life and well-being of millions of people worldwide. Hence the forest and its products are very valuable and often NTFPs are considered as the ‘potential pillars of sustainable forestry’. NTFPs items like food, herbal drugs, forage, fuel-wood, fountain, fibre, bamboo, rattans, leaves, barks, resins, and gums have been continuously used and exploited by humans. Wild edible foods are rich in terms of vitamins, protein, fat, sugars, and minerals. Additionally, some NTFPs are used as important raw materials for pharmaceutical industries. Numerous industry-based NTFPs are now being exported in considerable quantities by developing countries. Accordingly, this sector facilitates employment opportunities in remote rural areas. So, these developments also highlight the role of NTFPs in poverty alleviation in different regions of the world. This book provides a wide spectrum of information on NTFPs, including important references. We hope that the compendium of chapters in this book will be very useful as a reference book for graduate and postgraduate students and researchers in various disciplines of forestry, botany, medical botany, economic botany, ecology, agroforestry, and biology. Additionally, this book should be useful for scientists, experts, and consultants associated with the forestry sector.
    Type of Medium: Online Resource
    Pages: XVII, 473 p. 53 illus., 39 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030730772
    DDC: 581.7
    Language: English
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  • 21
    Keywords: Agriculture. ; Ecology . ; Forestry. ; Agriculture. ; Ecology. ; Forestry.
    Description / Table of Contents: Part 1. INTRODUCTION -- Chapter 1. Historical Developments: The Coming of Age of Agroforestry -- Chapter 2. Definition and Concepts of Agroforestry -- Chapter 3. Classification of Agroforestry Systems -- Chapter 4. Global Distribution of Agroforestry Systems -- Part 2. AGROFORESTRY SYSTEMS AND PRACTICES -- Chapter 5. Shifting Cultivation and Taungya -- Chapter 6. Tropical Alley Cropping and Improved Fallows -- Chapter 7. Tropical Homegardens -- Chapter 8. Shaded Perennial Agroforestry Systems -- Chapter 9. Silvopastoral Systems in the Tropics and Subtropics -- Chapter 10. Agroforestry in the Temperate Zone -- Chapter 11. Other Agroforestry Systems and Practices -- Part 3. BIOPHYSICAL FOUNDATIONS OF AGROFORESTRY: PLANT PRODUCTIVITY -- Chapter 12. General Principles of Plant Productivity -- Chapter 13. Multipurpose Trees (MPTs) and Other Agroforestry Species -- Chapter 14. Plant–to–Plant (Tree-Crop) Interactions in Agroforestry Systems -- Part 4. BIOPHYSICAL FOUNDATIONS OF AGROFORESTRY: SOIL PRODUCTIVITY AND PROTECTION -- Chapter 15. Soils and Agroforestry: General Principles -- Chapter 16. Soil Organic Matter and Nutrient Cycling -- Chapter 17. Biological Nitrogen Fixation and Nitrogen-Fixing Trees -- Chapter 18. Soil Conservation and Control of Land Degradation -- Part 5. ECOSYSTEM SERVICES OF AGROFORESTRY -- Chapter 19. Ecosystem Services of Agroforestry: An Introduction -- Chapter 20. Carbon Sequestration and Climate Change Mitigation -- Chapter 21. Agroforestry for Biodiversity Conservation -- Chapter 22. Other Ecosystem Services of Agroforestry -- Part 6. SUSTAINABLE DEVELOPMENT, AGROFORESTRY, AND LAND MANAGEMENT IN THE FUTURE -- Chapter 23. Sustainable Development Goals, Food security, and Agroforestry -- Chapter 24. Agroforestry and Land Management in the Future.
    Abstract: Agroforestry – the practice of growing trees and crops in interacting combinations – is recognized the world over as an integrated approach to sustainable land-use. Agroforestry systems, being multifunctional, facilitate not only the production of food and wood products but also provide a variety of ecosystem services such as climate-change mitigation, biodiversity conservation, and soil quality improvement. Agroforestry research has made rapid strides since organized efforts started in the late 1970s. Today, a vast body of scientific knowledge and an impressive array of publications on agroforestry are available. Four World Congresses on Agroforestry conducted once every five years since 2004 have brought together the global community of agroforestry professionals and practitioners to share and discuss the emerging trends and paradigm shifts in this field. The fifth Congress is scheduled to be held in Québec, Canada. However, a comprehensive college-level textbook incorporating these research findings did not exist until this book was first published. The first edition of this book in 1993 (Nair, P. K. R., 1993) is out of print and somewhat dated. This revised edition, with emphasis on the scientific developments during the past more than four decades, addresses this long-felt need. .
    Type of Medium: Online Resource
    Pages: XXI, 666 p. 266 illus. in color. , online resource.
    Edition: 2nd ed. 2021.
    ISBN: 9783030753580
    DDC: 630
    Language: English
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  • 22
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Agriculture. ; Control engineering. ; Robotics. ; Automation. ; Geographic information systems. ; Soil science. ; Agriculture. ; Control, Robotics, Automation. ; Geographical Information System. ; Soil Science.
    Description / Table of Contents: 1 Soil and Crop Sensing for Precision Crop Production: An Introduction -- 2 Sensing Technology of Soil Physical Properties -- 3 Theories and Methods for Soil Nutrient Sensing -- 4 Application of Soil Sensing in Precision Agriculture -- 5 Theories and Methods for Spectroscopy-based Crop Nutrient Sensing -- 6 Remote sensing technologies for crop disease and pest detection -- 7 Plant Phenotyping -- 8 Crop Sensing in Precision Agriculture -- 9 Perspectives of Soil and Crop Sensing in Smart Agriculture -- Index -- .
    Abstract: Soil and crop sensing is a fundamental component and the first important step in precision agriculture. Unless the level of soil and crop variability is known, appropriate management decisions cannot be made and implemented. In the last few decades, various ground-based sensors have been developed to measure spatial variability in soil properties and nutrients, crop growth and yield, and pest conditions. Remote sensing as an important data collection tool has been increasingly used to map soil and crop growth variability as spatial, spectral and temporal resolutions of image data have improved significantly in recent years. While identifying spatial variability of soil and crop growth within fields is an important first step towards precision management, using that variability to formulate variable rate application plans of farming inputs such as fertilizers and pesticides is another essential step in precision agriculture.The purpose of this book is to present the historical, current and future developments of soil and crop sensing technologies with fundamentals and practical examples. The first chapter gives an overview of soil and crop sensing technologies for precision crop production. The next six chapters provide details on theories, methods, practical applications, as well as challenges and future research needs for all aspects of soil and crop sensing. The last two chapters show how soil and crop sensing technologies can be used for plant phenotyping and precision fertilization. The chapters are written by some of the world’s leading experts who have contributed significantly to the developments of precision agriculture technologies, especially in the area of soil and crop sensing. They use their knowledge, experiences, and successful stories to present informative and up-to-date information on relevant topics. Therefore, this book is an invaluable addition to the literature and can be used as a reference by scientists, engineers, practitioners, and college students for the dissemination and advancement of precision agriculture technologies for practical applications.
    Type of Medium: Online Resource
    Pages: XII, 324 p. 93 illus., 71 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030704322
    Series Statement: Agriculture Automation and Control,
    DDC: 630
    Language: English
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  • 23
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Agricultural biotechnology. ; Plant ecology. ; Stress (Physiology). ; Plants. ; Plant biotechnology. ; Bioclimatology. ; Soil science. ; Agricultural Biotechnology. ; Plant Ecology. ; Plant Stress Responses. ; Plant Biotechnology. ; Climate Change Ecology. ; Soil Science.
    Description / Table of Contents: 1. Global Prospects of Climate-resilient Agriculture -- 2. Climate Change and Global Crop Production -- 3. Crop Responses to Climate Change -- 4. Impact of Climate Change on Vegetable Production -- 5. Impacts of Climate Change on Fruit Physiology and Quality -- 6. Effect of Climate Change on Medicinal Plants and their Active Constituents -- 7. Climate Change and Wine Quality -- 8. Crop Responses to Drought Stress -- 9. Crop Responses to High Temperature Stress -- 10. Crop Responses to Metal Toxicity -- 11. Water Logging and Crop Productivity -- 12. Phytoremediation of Atmospheric Pollutants in the Era of Climate Change -- 13. Water Stress and Crop Productivity in the Water-limited Environment -- 14. Climate Change and Nutrient Use Efficiency of Plants -- 15. Conservation Tillage for Sustainable Agriculture -- 16. Prospect of Underutilized (minor) Crops for Climate Resilient Agriculture -- 17. Crop Protection for Sustainable Agriculture in the Era of Climate Change -- 18. Biofertilizers and Biofortification in Future Agriculture -- 19. Plant Secondary Metabolites in Stress Tolerance -- 20. Sustainable Crop Management for Drylands -- 21. Crop Improvement in Desert -- 22. Importance of Soil Management in Sustainable Agriculture -- 23. Sustainable Plant Production from the Soils Degraded with Microplastics -- 24. Biostimulants in Sustainable Agriculture,- 25. Vermicompost for Sustainable Future: Nature based Solution for Environmental Degradation, Climate Change, and Food Security -- 26. Biofertilizer: Boon for Sustainable Sugarcane Production -- 27. Beneficial Role of Microbial Diversity for Sustainable Agriculture -- 28. Crop Production and Soil Management Interventions for Increased Organic Carbon Sequestration in Soils -- 29. Microclimate Modification in Field Crops: A Way Towards Climate-Resilience -- 30. Bioremediation: A Substantive Potential for Clean Earth -- 31. Consolidating the Knowledge of Black Soldier Fly Larva Compost: A Resilience Response to Climatic Variations, Resource Conservation, and Food Security Challenges -- 32. Roles of Organic Acids in Plant Stress Tolerance, Food Security, and Soil Remediation -- 33. Role of Microbial Ecology to Manage Remediation and Degradation Processes in the Environment -- 34. Principles and Applications of Environmental Biotechnology for Sustainable Future -- 35. Fungal Nanobionics: Principles and Applications in Environment -- 36. Plant Parasitic Nematodes: A Silent Threat to Agricultural Output and Sustainable Approaches for their Management -- 37. Accelerating Crop Improvement through Speed Breeding -- 38. Crop Improvement of Rice (Oryza sativa L.) utilizing Wild Species and Transgenic Rice -- 39. Unlocking CRISPR/Cas-mediated Editing Potential for Designing Climate Smart Crop Plants -- 40. Biochemical, Physiological and Molecular Mechanisms of Plant Adaptation to Salinity -- 41. Managing Soil Salinity for Sustainable Agriculture -- 42. Climate Resilient Livestock Production System in Tropical and Sub-tropical Countries.
    Abstract: Under ongoing climate change, natural and cultivated habitats of major food crops are being continuously disturbed. Such condition accelerates to impose stress effects like abiotic and biotic stressors. Drought, salinity, flood, cold, heat, heavy metals, metalloids, oxidants, irradiation etc. are important abiotic stresses; and diseases and infections caused by plant pathogens viz. fungal agents, bacteria and viruses are major biotic stresses. As a result, these harsh environments affect crop productivity and its biology in multiple complex paradigms. As stresses become the limiting factors for agricultural productivity and exert detrimental role on growth and yield of the crops, scientists and researchers are challenged to maintain global food security for a rising world population. This two-volume work highlights the fast-moving agricultural research on crop improvement through the stress mitigation strategies, with specific focuses on crop biology and their response to climatic instabilities. Together with "Climate Resilient Agriculture, Vol 2: Agro-Biotechnological Advancement for Crop Production", it covers a wide range of topics under environmental challenges, agronomy and agriculture processes, and biotechnological approaches, uniquely suitable for scientists, researchers and students working in the fields of agriculture, plant science, environmental biology and biotechnology.
    Type of Medium: Online Resource
    Pages: XXIV, 1018 p. 94 illus., 84 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031374241
    DDC: 630
    Language: English
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  • 24
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Agriculture. ; Plant ecology. ; Plants Evolution. ; Science History. ; Agriculture. ; Plant Ecology. ; Plant Evolution. ; History of Science.
    Description / Table of Contents: Introduction -- Origins Of World Crops And Livestock -- Evolution Of European Agriculture -- Agriculture In The Americas Before The European Conquest -- Spanish Conquest And Colonization Of The Americas -- Advance Of Spanish Agriculture In Colonial America -- Portugal And The South Atlantic Exchange -- The Two Worlds Become One -- Dispersal Of New World Crops Into The Old World -- Five Hundred Years After The Great Encounter -- Index.
    Abstract: The year 2022 is the 50th anniversary of Alfred Crosby’s celebrated book - The Columbian Exchange: Biological and Cultural Consequences of 1492. In the book, Crosby was the first to discuss the impact that the Spanish and Portuguese colonial period had on world agriculture and human culture. How the crops of the world became homogenized, and how an indigenous culture was destroyed by disease after Columbus landed. His landmark study broke new ground in its broad conceptualization of the Atlantic exchange. Building on what Crosby so succinctly and brilliantly presented, the main goal of this new work is to present the depth of information that has emerged since "The Columbian Exchange" and to discuss more fully the development of crops and agriculture before and after the Iberian contact. It follows the journey of crops and livestock in the Old and New Worlds and end’s with their distribution in today’s world.
    Type of Medium: Online Resource
    Pages: XII, 150 p. 31 illus., 16 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031155239
    DDC: 630
    Language: English
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  • 25
    Keywords: Agriculture. ; Bioclimatology. ; Sustainability. ; Conservation biology. ; Ecology . ; Food security. ; Agriculture. ; Climate Change Ecology. ; Sustainability. ; Conservation Biology. ; Food Security.
    Description / Table of Contents: Introduction -- 1. Linkage between Primary and Secondary Agriculture: Role of High Value Field Crops in Increasing Farmers Income -- 2.Agro-techniques and Management of Aromatic Rice for Higher Income and Livelihood Security -- 3. New Innovations in Agriculture: A way Forward for Enhancing Agricultural Production and Productivity -- 4. Integrated Farming Systems for Doubling Farmers’ Income -- 5. Integrated Farming Systems: Research, Extension and Scope in Punjab, India -- 6. Speciality Food Crops – An Alternate way for Increasing Farm Income -- 7. Prospects of Crop Residues in Secondary Agriculture -- 8. Marketing of Agricultural Produce - Problems and Prospects -- 9. Downsizing Risks While Increasing Productivity – A Must in Climate Change Scenario -- 10. Accelerated Composting of Organic Solid Waste Under Temperate Conditions -- 11. Sustainable Innovations to Improve Agricultural Productivity and Profitability -- 12. Post-Harvest Management and Value Addition of Food Crops -- 13. Role of Botanicals in Integrated Pest Management for Sustained Crop Production -- 14. Conservation Agriculture-Based Sustainable Intensification to Achieve Food, Water and Energy Security While Reducing Farmers’ Environmental Footprint in the Eastern Gangetic Plains of South Asia -- Conclusion.
    Abstract: This book on ‘Secondary Agriculture’ discusses the goal of doubling farmers’ incomes. The term ‘secondary’ has a bearing on climate change adaptation and its mitigation, small farm viability and profitability, food security, nutrition, sustainable utilization of natural resources, and optimal usage of produce from primary agriculture and farm incomes. Promoting secondary agriculture has implications on attaining sustainable development goals, which aim to connect primary, secondary and tertiary sectors by using slack/idle factors of production, such as land and labour, contributing to primary agriculture production, capturing ‘value’ in primary agricultural activities, and generating additional income at the enterprise level. In context to same, the chapters of this book have been designed to promote secondary agriculture through low-cost skills and technology applications in agriculture and by upscaling knowledge via integrating primary, secondary and tertiary sectors of agriculture. The motivation behind this book is to address the challenges of biotic and abiotic stresses facing the farming community; to increase farmers income through low-cost skills and technology applications in agriculture; to upscale knowledge by integrating primary, secondary and tertiary sectors of agriculture. The food processing sector in India is still in a nascent stage with only 8 per cent of the produce being processed as against 80-98 per cent in case of high-income countries (Government of India, 2008, 2010). The food processing sector is now receiving the boost with the annual growth of 13.2 per cent in registered food processing units during 2004-10 (Government of India, 2011). Against this backdrop, there is a strong need to strategically handle the situation in order to facilitate a self-sustainable and long-run growth of the sector, which is felt possible by focusing on Secondary Agriculture. Though not a panacea for all ailments of the primary sector, but it can definitely drive the growth.
    Type of Medium: Online Resource
    Pages: VIII, 211 p. 1 illus. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783031092183
    DDC: 630
    Language: English
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    Keywords: Plant ecology. ; Soil science. ; Conservation biology. ; Ecology . ; Agriculture. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Plant Ecology. ; Soil Science. ; Conservation Biology. ; Agriculture. ; Environmental Engineering/Biotechnology.
    Abstract: An increasing population has put tremendous pressure on agricultural productivity to fulfill the demands of human consumption. Numerous agricultural activities and techniques have been developed to raise annual crop production globally. While agriculture has succeeded in enhancing the yearly crop productivity, this achievement is at the cost of environmental degradation by applying synthetic persistent substances, such as industrial fertilizers, pesticides, herbicides, etc. Chemical fertilizers are nearly as destructive as they are productive, causing monocultures and consequences associated with elimination of diversity, nutrient pollution as evidenced by algae blooms, eutrophication, water quality issues, lower oxygen levels and dangers to fish stocks. Therefore, the scientific approach to maintain sustainable fertility in soil and plants is to switch over to biofertilisers. Biofertilisers are compounds of organic matter that are applied to crops for growth and health. Their constituent micro-organisms interact in an ecofriendly manner with the soil, root and seeds of plants, promoting the growth of micro-flora that enhances soil fertility. They are known to play a number of vital roles in soil fertility, crop productivity and production in agriculture. Application of biofertilisers results in increased mineral and water uptake, root development, vegetative growth and nitrogen fixation. They liberate growth promoting substances and vitamins and help to maintain soil fertility. They act as antagonists and play a pivotal role in neutralising the soil borne plant pathogens, thereby assisting in the bio-control of diseases. Application of biofertilisers in lieu of synthetic fertilizers could be the promising technique to raise agricultural productivity without degrading the environmental quality. The present book focuses on the latest research approaches and updates from the microbiota ecosystem and their applications in agriculture industry. It also highlights the great potential and possible future of action of microbiota in the development of sustainable agricultural systems.
    Type of Medium: Online Resource
    Pages: XXI, 297 p. 53 illus., 34 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030487713
    DDC: 581.7
    Language: English
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  • 27
    Keywords: Plant ecology. ; Environment. ; Physical geography. ; Biotic communities. ; Botany. ; Plant Ecology. ; Environmental Sciences. ; Earth System Sciences. ; Ecosystems. ; Plant Science.
    Description / Table of Contents: Chapter 1 Carbon Cycle in Response to Global Warming -- Chapter 2 Agricultural Land Degradation: Processes and Problems Undermining Future Food Security -- Chapter 3 Promising technologies for Cd-contaminated soils: drawbacks and possibilities -- Chapter 4 Climate Change and costal plant lives -- Chapter 5 Climate Change Forecasting and Modeling for the year of 2050 -- Chapter 6 Effects of Climate Change on Irrigation Water Quality -- Chapter 7 Prospects of biochar in alkaline soils to mitigate climate change -- Chapter 8 Biochar; a remedy for climate change -- Chapter 9 Biofortification under Climate Change: The Fight between Quality and Quantity -- Chapter 10 QTL Mapping for Abiotic Stresses in Cereals -- Chapter 11 Effectiveness of conventional crop improvement strategies vs. Omics -- Chapter 12 Development and Applications of Transplastomic Plants; A way towards Eco-friendly Agriculture -- Chapter 13 Alternative and non-conventional soil and crop management strategies for increasing water use efficiency -- Chapter 14 Role of Biotechnology in climate resilient agriculture -- Chapter 15 Insect Pests of cotton crop and management under climate change scenarios -- Chapter 16 Plant-Microbes interactions and functions in changing climate -- Chapter 17 Measuring Vulnerability to Environmental Hazards: Qualitative to Quantitative -- Chapter 18 Soil microarthropods and nutrient cycling -- Chapter 19 Environment, climate change and Biodiversity -- Chapter 20 Consequences of salinity stress on the quality of crops and its mitigation strategies for sustainable crop production: An outlook of arid and semi-arid regions -- Chapter 21 Advances in pyrolytic technologies with improved carbon capture and storage to combat climate change -- Chapter 22 The Effects of Climate Change on Human Behaviors -- Chapter 23 Role of Plant Bioactives in Sustainable Agriculture -- Chapter 24 Microbes and Environment: Global Warming Reverting the Frozen Zombies -- Chapter 25 Extent of climate change in Saudi Arabia and its impacts on agriculture: A case study from Qassim region -- Chapter 26 Rice Production under Climate Change: Adaptations and Mitigating Strategies.
    Abstract: This book provides an up-to-date account of the current understanding of climate change and global warming related to environment, climate, plant and vegetation growth. The aim of this book is to provide a platform for scientists and academics world-wide to promote, share, and discuss various new issues and developments in the area of plant and vegetation growth related to climate change. Over the next decades, it is predicted that billions of people, particularly those in developing countries, face shortages of water and food and greater risks to health and life as a result of climate change. Concerted global action is needed to enable developing countries to adapt to the effects of climate change that are happening now and will worsen in the future. The book will also enhance the understanding on issues related to climate change, giving a clear indication of a looming global warming crisis. Addressing global climate change is a monumental battle that can only be fought by the leaders of tomorrow, but future leaders are molded through education and shaped by the leaders of today.
    Type of Medium: Online Resource
    Pages: XXVII, 686 p. 103 illus., 69 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030497323
    DDC: 581.7
    Language: English
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    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Agriculture. ; Soil science. ; Agronomy. ; Stress (Physiology). ; Plants. ; Plant ecology. ; Water. ; Hydrology. ; Agriculture. ; Soil Science. ; Agronomy. ; Plant Stress Responses. ; Plant Ecology. ; Water.
    Description / Table of Contents: Chapter. 1. Soil Physics and Plant Growth -- Chapter. 2. Soil Water and Plant Growth -- Chapter. 3. Irrigation Management -- Chapter. 4. Drainage -- Chapter. 5. Soil Structure and Plant Growth -- Chapter. 6. Soil Air and Plant Growth -- Chapter. 7. Soil Temperature and Plant Growth -- Chapter. 8. Soil Strength and Plant Growth -- Chapter. 9. Management of Soil Physical Environment in Relation to Plant Growth.
    Abstract: This textbook on the applied aspects of soil physics covers introduction to soil physical properties and processes, and their evaluation and management in relation to plant growth. It distinguishes physical properties that directly influence plant growth from those that indirectly affect agricultural productivity. Chapters are also devoted to the concept of soil health and the role of soil physics on preservation of soil health and environmental quality. As such, this book fills a unique knowledge gap for agriculture and agronomy students, course directors as well as field professionals. .
    Type of Medium: Online Resource
    Pages: XII, 254 p. 19 illus., 2 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031280573
    DDC: 630
    Language: English
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  • 29
    Keywords: Agriculture. ; Climatology. ; Sustainability. ; Plant ecology. ; Environmental management. ; Botany. ; Agriculture. ; Climate Sciences. ; Sustainability. ; Plant Ecology. ; Environmental Management. ; Plant Science.
    Description / Table of Contents: Chapter1: Introduction -- Chapter2: Changing environmental constraints facing agricultural system -- Chapter3: Adaptive agronomic practices for sustaining food production -- Chapter4: Increasing resilience in crops for future changing environment -- Chapter5: Modelling as a tool for future climate predictions and adaptation -- Chapter6: Sustainability challenges for agricultural system and food security -- Chapter7: Farmers role in agricultural adaptation under changing climate -- Chapter8: Policy implications and future prospects -- Chapter9: Conclusion .
    Abstract: This brief explores several adaptive agricultural practices from around the world to fulfill current and future agricultural demands for food security due to the challenges posed by climate change and growing global population. Readers will discover how farmers adapt to environmental changes by adopting various agronomic practices at crop, farm and landscape levels. Particular attention is given to systemic and transformational adaptation strategies employed by farmers such as mulching, organic farming and crop diversification. This is a highly informative and carefully presented book that provides insights on how crops can build up resilience against periods of drought, high salinity, disasters such as floods, and diseases. The policy implications and future prospects of these adaptation strategies are also addressed. Environmental and plant scientists, agronomists and researchers in climate sciences will find this book interesting.
    Type of Medium: Online Resource
    Pages: XVIII, 132 p. 40 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030155193
    Series Statement: SpringerBriefs in Environmental Science,
    DDC: 630
    Language: English
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    Keywords: Plant ecology. ; Physical geography. ; Applied ecology. ; Plant Ecology. ; Physical Geography. ; Applied Ecology.
    Abstract: The second-longest European river after the Volga, the Danube is one of the world’s most important rivers in terms of its geographical and historical significance. In recent history, it has served as a major international waterway and numerous cities, including four capitals, have been founded on its banks. The 2826km-long Danube has a watershed measuring 801,093 km2 that is now shared between 19 countries, from its source in the Black Forest to the Black Sea, into which it pumps an average of 827 km3 of water a year. This book describes and explains key landscape values interactions (geographical, cultural and natural heritage). It also identifies the threats and various types of human impact affecting this system in all the countries of the Danube River Basin, based on the investigations and perspectives of a team of experienced naturalists, and in the context of the early 21st century, in which the human-nature relationship is still far from balanced. These studies demonstrate how biodiversity, conservation and ecological studies can help us successfully promote mutual cooperation and combine our efforts to address problems as a responsible continent.
    Type of Medium: Online Resource
    Pages: VI, 437 p. 121 illus., 107 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030372422
    Series Statement: Geobotany Studies, Basics, Methods and Case Studies,
    DDC: 581.7
    Language: English
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