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  • 1
    Keywords: Agriculture. ; Environment. ; Plant genetics. ; Agriculture. ; Environmental Sciences. ; Plant Genetics.
    Description / Table of Contents: Chapter 1 Advances in research trends in vegetables under a changing climate: A way forward -- Chapter 2 Emerging obstacles of vegetable production due to climate change and mitigation strategies -- Chapter 3 Impact of climate change on nutraceutical properties of vegetables -- Chapter 4 Nutritional stress management in vegetable crops under changing climate scenario -- Chapter 5 Impact of climate change on tuber crops production and mitigation strategies -- Chapter 6 Impact of climate change on leafy vegetables and mitigation strategies -- Chapter 7 Impact of climate change on perennial vegetable production and mitigation strategies -- Chapter 8 Impact of climate change on vegetables seed production and mitigation strategies -- Chapter 9 Protected cultivation of high-value vegetables crop under changing climate -- Chapter 10 Impact of climate change on underexploited vegetable crops production and mitigation strategies -- Chapter 11 Improvement of vegetables through grafting techniques in changing climate scenario -- Chapter 12 Improvement of vegetables through molecular breeding in changing climate scenario -- Chapter 13 Kitchen gardening for nutritional security under changing climate -- Chapter 14 Emerging insect-pests of vegetables due to changing climate -- Chapter 15 Emerging diseases of vegetables due to changing climate -- Chapter 16 Impact of climate change on postharvest quality of vegetables.
    Abstract: This second volume on the topic will be extremely useful for the researchers and postgraduate students working on vegetable crops with a special focus on climate change. Today, the entire world is suffering from global warming and its consequent, climate change. This has emerged as the most prominent global environmental issue and there is an urgent need to mitigate its impact on agriculture. Over the past 20 years South Asia has had a robust economic growth, yet it is home to more than one fourth of the world’s hunger and 40% of the world’s malnourished children and women. Persistent climatic variability, which results in frequent drought and flood, is among the major reasons for this phenomenon. Vegetables are in general more succulent (have 90% water) and more sensitive to climatic vagaries and sudden changes in temperature, as well as irregular precipitation at any phase of crop growing, can affect the normal growth, flowering, pollination, fruit setting, fruit development and fruit ripening which eventually decreases the yield. The irregular precipitation also causes the soil salinity and is a major challenge in many vegetable growing areas. To mitigate the harmful impact of climatic change there is an urgent need to develop adequate adaptation strategies for adverse effect of climate change and preference should be given to the development of heat, cold, drought, flood and salinity stress tolerant genotypes along with climate proofing through conventional and non-conventional breeding techniques, as well as exploiting the beneficial effects of CO2 enhancement on crop growth and yield. Available evidence shows that there is high probability of increase in the frequency and intensity of climate related natural hazards due to climate change and hence increase the potential threat due to climate change related natural disasters in the world. At present protected cultivation and grafted seedlings are also popularizing among vegetable growers because of the huge scope as well as, molecular breeding, emerging insect-pests & diseases and postharvest quality of vegetables under this climate change scenario. Moreover, underexploited vegetables, perennial vegetable and tuber crops have a more tolerant ability to climate vagaries compare to major vegetables which are also discussed in this book.
    Type of Medium: Online Resource
    Pages: XVII, 369 p. 1 illus. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031208409
    Series Statement: Advances in Olericulture,
    DDC: 630
    Language: English
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  • 2
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Agricultural biotechnology. ; Biotechnology. ; Soil science. ; Botany. ; Environment. ; Agricultural Biotechnology. ; Biotechnology. ; Soil Science. ; Plant Science. ; Environmental Sciences.
    Description / Table of Contents: 1. Introduction -- 2. Biotechnology of 21st Century -- 3. Considerations on the Scaling of biological and chemical reactors -- 4. Design of a cultivation media for the production of metabolites with practical application in the biodegradation of industrial dyes -- 5. Obtaining and characterizing new biomaterials based on starch, for use in the food and health industry -- 6. Influence of immersion time in pitahaya (Hylocereus undatus) proteolytic enzyme solutions on the texture of bovine meat -- 7. Determination of free amino acids in fermented and toasted cocoa (Theobroma cacao) samples, using high performance liquid chromatography with UV detection by diode arrangement -- 8. Characterization of cassava and bee wax residues for their use in the obtaining of bioplastic -- 9. Development of a thermoplastic material from the residues of the banana (Musa paradisiaca) -- 10. Chemical ecology and its role in the conservation of threatened species: a case study in the Galapagos islands -- 11. Energy evaluation of solid biofuels made from mixtures of lignocellulosic biomass -- 12. Reforestation and conservation of vegetable germ plasm: challenges and expectations -- 13. Characterization of Moniliophthora roreri evans and evaluation of biological control alternatives in cacao (Theobroma cacao), for the Ecuadorian amazon -- 14. Application of biotechnology to the search and selection of PGPR in the control of phytosanitary problems in cocoa (Theobroma cacao) and banana (Musa acuminata) -- 15. Sustainability of organic quinoa cultivation (Chenopodium quinoa) in communities of colta Ecuador -- 16. Effects of artificial light intensity and temperature on the growth of lettuce (Lactuca sativa l.) in a vertical urban farm in low cost indoor -- 17. Efficiency of led lights in the propagation and field of summer flowers in Ecuador -- 18. Evaluation of extraction methods to obtain a natural flocculant from the tamarind seed (Tamarindus indica) -- 19. Bicomponent adsorption of Brilliant blue FCF and tartrazine under dynamic conditions using rice husk -- 20. Kinetic approach to the biocoagulation process of mixtures of Moringa oleífera and Caesalpinia spinosa in synthetic turby water -- 21. Sustainable alternatives in the treatment of liquid industrial waste -- 22. Biodegradation of industrial dyes with enzymatic extracts obtained in FES and FEL systems with Pleurotus djamor -- 23. Removal of petroleum hydrocarbons from medium and soil (lab & field conditions) by microorganisms isolated from the Ecuadorian amazon rainforest -- 24. Chemistry of natural products -- 25. Evaluation of the antimicrobial activity of natural extracts of altamisa (Ambrosia artemisiifolia) and melissa (Melissa officinallis) for the control of pathogenic agents -- 26. Phenolic compounds of cocoa (Theobroma cacao) shell extraction and antimicrobial activity -- 27. Susceptibility to antimicrobials in strains of environmental origin, a public health problem -- 28. Inhibition effect of oregano (Origanum vulgare) essential oil on an active biodegradable film -- 29. Current Challenges and Future Prospective of Biotechnology.
    Abstract: This contributed volume compiles the latest improvements in the field of biotechnology. It focuses on topics that comprises industrial, environment, agricultural and medical related issues to technology and biological studies and exhibits the correlation between the biological world and the dependence of humans on it. The book is organized into five parts covering the role of biotechnology in industrial products, environmental remediation, agriculture and pharmacological agents. Ranging from micro-scale studies to macro, it covers a huge domain of agricultural biotechnology and focuses on important commercial crops (e.g. cacao and coffee), arbuscular mycorrhizal fungi, flow and distribution of phosphorus in agricultural soils in the Latin American region. Overall, the book portrays the importance of modern biotechnology and its role in solving the problems in modern day life. The book is a ready reference for practicing students, researchers of environmental engineering, chemical engineering, agricultural engineering, and other allied fields likewise.
    Type of Medium: Online Resource
    Pages: XXII, 448 p. 67 illus., 55 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030801083
    DDC: 630
    Language: English
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  • 3
    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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  • 4
    Online Resource
    Online Resource
    Singapore :Springer Nature Singapore :
    Keywords: Agriculture. ; Environment. ; Computer science. ; Agriculture. ; Environmental Sciences. ; Computer Science.
    Description / Table of Contents: Chapter 1. Systems Modeling -- Chapter 2. Crop Phenotyping -- Chapter 3. Statistics and Modeling -- Chapter 4. Dynamic Modeling -- Chapter 5. Models Calibration and Evaluation -- Chapter 6. Wheat crop modeling for higher production -- Chapter 7. Genetic Analysis -- Chapter 8. Sugarcane: Contribution of process-based models for understanding and mitigating impacts of climate variability and change on production -- Chapter 9. Forecasting of rainfed wheat yield in Pothwar using Landsat 8 satellite imagery and DSSAT -- Chapter 10. Methane production in dairy cows, inhibition, measurement and predicting models -- Chapter 11. Sunflower Modeling: A Review -- Chapter 12. Disease Modeling as a Tool to Assess the Impacts of Climate Variability on Plant Diseases and Health -- Chapter 13. Chickpea Modeling under Rainfed Conditions -- Chapter 14. Potato Modeling -- Chapter 15. Application of Generalised Additive Model for Rainfall Forecasting in Rainfed Pothwar Pakistan. .
    Abstract: Achieving food security and economic developmental objectives in the face of climate change and rapid population growth requires systems modelling approaches, for example in the design of sustainable agriculture farming systems. Such approaches increase our understanding of system responses to different soil and climatic conditions, and provide insights into the effects of various variable climate change scenarios, providing valuable information for decision-makers. Further, in the agricultural sector, systems modelling can help optimise crop management and adaptation measures to boost productivity under variable climatic conditions. Presenting key outcomes from crop models used in agricultural systems this book is a valuable resource for professionals interested in using modelling approaches to manage the growth and improve the quality of various crops. .
    Type of Medium: Online Resource
    Pages: XI, 425 p. 152 illus., 101 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9789811547287
    DDC: 630
    Language: English
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  • 5
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Agriculture. ; Applied ethics. ; Soil science. ; Environment. ; Agriculture. ; Agricultural Ethics. ; Soil Science. ; Environmental Sciences.
    Description / Table of Contents: 1. Introduction -- 2. From Weed Control To Ethics -- 3. Agriculture- A Brief History -- 4. World Population - Three Views -- 5. Agricultures Moral Dilemmas -- 6. Ethics in Agriculture and Other Disciplines -- 7. Seeking Common Ground -- 8. Ethical Puzzles.
    Abstract: I write because I am concerned that I and my agricultural colleagues have avoided addressing the moral dimension of the environmental and social problems we have contributed to. I hope for an exchange of ideas about agriculture's moral dilemmas. I encourage my readers to engage in a collective conversation about the dilemmas and avoid remaining in what Merton calls "the collective arrogance and despair of his own herd." If those engaged in agriculture continue to ignore and fail to realize our common difficulties they will be addressed and resolved by societal pressure and political action, which may not yield the resolution we favor. The book's goal is not to resolve the moral dilemmas raised. It is to raise them and encourage thought and discussion. It will ask but not answer why nearly all involved in agriculture have not addressed the moral concerns voiced by the general public. The agricultural enterprise is committed to the benefits and future success of the present, very productive, chemical, capital, and energy intensive system, which is, in the minds of many, not sustainable. The internal justification invokes the moral claim that they feed the world's population. The question remains whether or not the prevailing moral justification of feeding the world is adequate given all the issues modern, developed country agriculture faces: pesticides in soil, water, and food, cruelty to animals, Biotech/GMO's, corporate agriculture, pollution by animal factory waste, exploitation of and cruelty to migrant labor.
    Type of Medium: Online Resource
    Pages: XI, 173 p. 2 illus., 1 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030489359
    DDC: 630
    Language: English
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  • 6
    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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  • 7
    Keywords: Agriculture. ; Sustainability. ; Botanical chemistry. ; Climatology. ; Environment. ; Agriculture. ; Sustainability. ; Plant Biochemistry. ; Climate Sciences. ; Environmental Sciences.
    Description / Table of Contents: Chapter 1. Salicylic acid-mediated salt stress tolerance in plants -- Chapter 2. Biotechnology for Extraction of Plant Phenolics -- Chapter 3. Exploitation of Plant Phenolics in Animal Farming -- Chapter 4. FLAVONES AND FLAVONOLS: BIOACTIVITIES AND RESPONSES UNDER LIGHT STRESS IN HERBS -- Chapter 5. Interactive Biology of Auxins and Phenolics in Plant Environment -- Chapter 6. Bioavailability and Nutritional analysis of Flavonoids -- Chapter 7. Newly Identified Phenolic Compounds from Different Plant Families -- Chapter 8. Phenolic alleochemicals from crops and weed management -- Chapter 9. Phenolic Compounds against Fungal and Viral Plant Diseases -- Chapter 10. Phenolic compounds from medicinal herbs: their role in animal health and diseases: A new approach for sustainable welfare and development -- Chapter 11. Phenolics- A game changer in the life cycle of plants -- Chapter 12. Phenolics as plant protective companion against abiotic stress -- Chapter 13. Phenolics: A key defence Secondary Metabolite to Counter Biotic Stress -- Chapter 14. Phenolics From Agro-Industrial By-Products -- Chapter 15. Plant Phenolics and Post Harvesting Technologies -- Chapter 16. Plant Phenolics as Natural Preservatives in Food System -- Chapter 17. Plant phenolics for overcoming multidrug resistance in human fungal pathogen -- Chapter 18. Plant Phenolics: their biosynthesis, regulation, evolutionary significance and role in Senescence -- Chapter 19. Plant phenolics under water deficit conditions: Biosynthesis, accumulation and physiological roles in water stress alleviation -- Chapter 20. Plants as Biofactories for Phenolic Compounds -- Chapter 21. QUANTITATIVE GENETICS AND THE GENETIC BASIS FOR POLYPHENOLICS TRAIT IN PLANTS -- Chapter 22. Role of Phenolic Compounds in Plant Defensive Mechanisms -- Chapter 23. Role of Salicylic Acid in Biotic and Aboitic Stress Tolerance in Plants -- Chapter 24. Root Phenolics Profile Modulates Microbial Ecology of Rhizosphere -- Chapter 25. Defensive role of plant phenolics against pathogenic microbes for sustainable agriculture.
    Abstract: This book presents the latest research on plant phenolics, offering readers a detailed, yet comprehensive account of their role in sustainable agriculture. It covers a diverse range of topics, including extraction processes; the role of plant phenolics in growth and development; plant physiology; post-harvesting technologies; food preservation; environmental, biotic and abiotic stress; as well as nutrition and health. Further the book provides readers with an up-to-date review of this dynamic field and sets the direction for future research. Based on the authors’ extensive experience and written in an engaging style, this highly readable book will appeal to scholars from various disciplines. Bringing together work from leading international researchers, it is also a valuable reference resource for academics, researchers, students and teachers wanting to gain insights into the role of plant phenolics in sustainable agriculture.
    Type of Medium: Online Resource
    Pages: XVI, 594 p. 86 illus., 27 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9789811548901
    DDC: 630
    Language: English
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  • 8
    Keywords: Agriculture. ; Sustainability. ; Environment. ; Conservation biology. ; Ecology . ; Plant biotechnology. ; Agriculture. ; Sustainability. ; Environmental Sciences. ; Conservation Biology. ; Plant Biotechnology.
    Description / Table of Contents: Chapter 1. Achieving Food and Nutrition Security and Climate Change: Clash of the Titans or Alignment of the Stars? -- Chapter 2. Climate Change, Hunger and Food Security in Asia with special reference to Sri Lanka: Can the SDGs be Achieved by 2030? -- Chapter 3. The Status of Climate Variability and Food Accessibility: A Case of Households in Gauteng Province, South Africa -- Chapter 4. Climate resilient mariculture technologies for food and nutritional security -- Chapter 5. Climate change and adaptation: Recommendations for agriculture sector -- Chapter 6. Integrated Farming Systems: Climate Resilient Sustainable Food Production System in the Indian Himalayan Region -- Chapter 7. Adaptation mechanism of methylotrophic bacteria to drought condition and its strategies in mitigating plant stress caused by climate change -- Chapter 8. Synergies and Trade-offs between Climate Change and the Sustainable Development Goals in the Context of Marine Fisheries -- Chapter 9. Increasing Synergies between Climate Change and Sustainable Development in Energy Policy -- Chapter 10. Ensuring Domestic Water Security for Cities under Rapid Urbanisation and Climate Change Risks -- Chapter 11. Improving Water Productivity for Smallholder Rice Farmers in the Upper West Region of Ghana: A Review of Sustainable Approaches -- Chapter 12. Synergies between climate change, biodiversity, ecosystem function and services, indirect drivers of change and human well-being in forests -- Chapter 13. Climate change projections of current and future distributions of the endemic Loris lydekkerianus (Lorinae) in peninsular India -- Chapter 14. Climate Change, Air Pollution and SDG 3: An Indian Perspective -- Chapter 15. Empowerment of fisherwomen through marine farming.
    Abstract: The existential environmental crisis prompted the United Nations to formulate the Millennium Development Goals at the turn of the 21st century in order to embark on an era of sustainable development. The progress and deficiencies in achieving the Millennium Development Goals provided impetus to the intelligentsia and policymakers to map out the pertinent goals for a sustainable growth trajectory for humanity and the planet. The United Nations’ 2030 Agenda for Sustainable Development, which was adopted in September 2015, took the shape of 17 Sustainable Development Goals (SDGs) and 169 targets. In effect, the 17 Sustainable Development Goals focus on protecting the earth's life support systems for intra- and inter-generational equity and for development that is rooted in sustainability science. Attaining these goals is an uphill task; nevertheless, scientific knowledge, trans and interdisciplinary inquiries, concerted global action and capacity building would provide an enabling environment for achieving the SDGs. This book explores the synergies and trade-offs between climate change management and other SDGs. It highlights the policy imperatives as well as the interrelations between combating climate change and its impacts (SDG 13) and food and nutritional security (SDG 2), water security (SDG 6), soil security (SDG 15), energy security (SDG 7), poverty eradication (SDG 1), gender equality (SDG 5), resilient infrastructure (SDG 9), and sustainable and resilient cities (SDG 11).
    Type of Medium: Online Resource
    Pages: XIV, 402 p. 115 illus. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9789811573019
    DDC: 630
    Language: English
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  • 9
    Keywords: Environment. ; Physical geography. ; Conservation biology. ; Ecology . ; Freshwater ecology. ; Marine ecology. ; Environmental Sciences. ; Earth System Sciences. ; Conservation Biology. ; Freshwater and Marine Ecology.
    Description / Table of Contents: Part I - Tropical and Subtropical Brazilian Coastal Zone -- 1. Brazilian Coastal Zone: Mangroves and Salt Marshes -- 2. Zonation and succession of mangrove and salt marsh ecosystems: typical and associated vegetation species -- Part II - The Mangrove Ecosystem -- 3. Variability of Mangroves along the Brazilian Coast -- 4. Ecophysiological and phenology aspects of mangrove species on the Brazilian coast -- 5. Genetic and epigenetic diversity of mangrove plants: markers of adaptation in a changing environment -- 6. A Review on litterfall in Brazilian mangroves -- Part III - The Salt Marsh Ecosystem -- 7. Brazilian salt marshes -- Part IV - The Mangroves and Salt Marshes Associates -- 8. Microbial diversity and microbial food chain -- 9. Brazilian mangrove and salt marsh macroalgal communities -- 10. Invertebrates: Ecology macro and meiofauna associated with mangroves and marshes Brazilian -- 11. Biodiversity, ecology and socioeconomic importance of brachyuran crabs from Brazilian mangroves and salt marshes -- 12. Fish composition in mangroves and salt marshes along the Brazilian coast -- 13. Birds associated with mangroves and salt marshes in Brazil -- 14. Marine mammals and mangroves and mangroves and salt marshes in Brazil: past, present and potencial scenarios -- Part V - Conservation Strategies -- 15. Historical ecology of mangroves: investigating the past to conserve the future -- 16. Economic valuation as a tool for conservation of the Brazilian marine biodiversity of mangrove and salt marsh ecosystems -- 17. Mangrove protected areas in Brazil: controversies and perspectives -- 18. Contributions of environmental education to mangrove conservation -- 19. Magrove and salt marsh ecosystems: what to expect from climate changes -- 20. Coastal zone adaptive management -- Index.
    Abstract: This book offers a new ecosystemic approach to the understanding of mangrove and salt marsh ecosystems. Brazil has one of the largest areas of mangroves in the world, where salt marshes might or might not be associated. Different landscapes comprise the extensive coastline, where mangrove and salt marsh species’ composition is discussed through the analysis of physiography, zonation, and succession processes. Both salt marsh and mangrove plants and the associated macroalgae will be characterized in their ecophysiological and phenological aspects, as well as genetic and epigenetic diversity. The chapters on microbial diversity and litterfall expose the well-known importance of these ecosystems as highly productive carbon sinks and pumps. The associated fauna of invertebrates (benthic meio and macrofaunas, especially brachyuran crabs) and vertebrates (fishes, birds, and mammals) are presented in a special section. The conservational approach encompasses issues, such as historical ecology, economic valuation, protected areas, environmental education, climate changes, and adaptive management.
    Type of Medium: Online Resource
    Pages: XIX, 394 p. 54 illus., 41 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031134869
    Series Statement: Brazilian Marine Biodiversity,
    DDC: 333.7
    Language: English
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  • 10
    Keywords: Agriculture. ; Water. ; Hydrology. ; Climatology. ; Plant physiology. ; Biodiversity. ; Agriculture. ; Water. ; Climate Sciences. ; Plant Physiology. ; Biodiversity.
    Description / Table of Contents: Chapter 1. Introduction to the book -- Chapter 2. Best practices for saline and brackish water management -- Chapter 2.1 Salt-affected soils and their management in the Middle East and North Africa (MENA) region: A holistic approach -- Chapter 2.2 Innovation and practical experience of using saline water at farm level in Tunisia -- Chapter 2.3 Soil and nutrient management under saline conditions -- Chapter 2.4 Irrigation management under saline conditions in MENA and Sub-Saharian conditions: Lessons learned -- Chapter 2.5 Irrigation Water Management under Salinity Conditions in Arid Regions -- Chapter 2.6 Seed priming and Nano priming techniques as tools to alleviate osmotic stress in legumes -- Chapter 3. Using saline water for conventional, nonconventional and forage crops -- Chapter 3.1 Exploration and collection of quinoa’s wild ancestor in Argentina -- Chapter 3.2 Multilocality evaluation of alternative forage crops grown under salinity conditions in the south of Morocco -- Chapter 3.3 Innovation and Practical Experience of Using Saline Water at the Farm Level in Tunisia -- Chapter 4. Land management when irrigating with saline water -- Chapter 4.1 Do cultivating methods improve crop yield under saline condition in semi-arid areas? -- Chapter 4.2 Posphoypsum as potential amendment and fertilizer for crop nutrition and salt affected soils remediation -- Chapter 5. The challenges faced when using of non-Conventional water in agriculture -- Chapter 5.1 Status, Drivers and Suggested Management Scenarios of salt affected soils in Africa -- Chapter 5.2 The use of nonconventional water resources in agriculture in the Gulf Cooperation Council Countries: Key challenges and opportunities for the use of treated wastewater -- Chapter 6. Use of models as management tools -- Chapter 6.1 SALTMED model as a tool for water, crop, field and N-fertilizers management -- Chapter 7. Use of desalination technology to produce non-saline water for irrigation -- Chapter 7.1 Is desalination for agriculture sustainable? -- Chapter 7.2 The Technological Challenges of Desalination for Irrigation in Morocco.
    Abstract: This book presents recent research work on Biosaline Agriculture presented during First International Forum on Biosaline Agriculture in Laayoune, Morocco from May 3rd to May 4th 2019. The aim of this book is to showcase the global potential of Biosaline agriculture, provide an update on the development of recent innovations in the field of Biosaline agriculture, the best management practices to safely use brackish and saline water, highlight the use of non-conventional water in marginal environment production and the current advanced technologies of desalination of brackish and seawater. The different chapters will also discuss solutions that are adapted to local conditions as part of a sustainable development perspective. The book provides up-to-date technical and scientific data on growing crops under marginal environment so as to encourage the dissemination of this knowledge in the best practices to increase the productivity in Biosaline agriculture, in view of the potential to contribute to food security. The book is expected to stimulate interest in the non-conventional water resources and crops among junior and senior researchers and among those who are increasingly focused on exploiting marginal environments. It will also be of interest to decision-makers and the public and private sectors to jointly address the issues of food security especially of the poor and vulnerable people living in marginal environments worldwide by providing innovative technology transfer.
    Type of Medium: Online Resource
    Pages: XXII, 422 p. 138 illus., 114 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031242793
    DDC: 630
    Language: English
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