Sustainable Agriculture under Drought Stress

Sustainable Agriculture under Drought Stress

Integrated Soil, Water and Nutrient Management

Etesami, Hassan; Chen, Yinglong

Elsevier Science Publishing Co Inc

10/2024

500

Mole

9780443239564

15 a 20 dias

Descrição não disponível.
Section 1: Water scarcity, climate change and agriculture sustainability 1. Impact of climate change and drought stress on arid land agriculture 2. Growing water scarcity in agriculture: Future challenge to global water security 3. Wastewater reuse, water conservation and management in semi-arid and arid lands for sustainable agriculture 4. Strategies for deficit irrigation of crops 5. New approaches to irrigation scheduling of agronomic crops 6. A Contribution to soil fertility assessment for arid and semi-arid lands 7. Sustainable crops to cope with water scarcity and low nutritional demand 8. Sustainable fruit trees to cope with water scarcity and low nutritional demand 9. Impacts of climate change/drought stress on plant Metabolome 10. Impacts of drought on disease development and management Section 2: Linking water stress and crop nutrition 11. Problems of soil nutrient availability for crop production under drought stress 12. Effects of drought stress on soil nitrogen cycling 13. Plant growth under drought stress: Significance of mineral nutrients 14. Novel aspects of fertilization in arid and semiarid regions Section 3: Improving the soil fertility under drought conditions 15. Improving the efficiency of nutrient transfer from fertilizers under drought conditions 16. Changes of soil microbial, physical and chemical characteristics under drought stress 17. The impact of drought stress on soil microbial community, enzyme activities and microbial diversity 18. Drought stress and root-Associated bacterial communities 19. Drought stress and root-Associated fungal communities 20. Dynamics of soil fertility management practices in arid and semi-arid regions 21. Soil fertility management for cereal crops in semi-arid and arid conditions 22. Improving soil fertility and moisture in arid and semi-arid regions using organic amendments Section 4: Positive Interactions between crops and soil microorganisms to enhance the drought tolerance 23. Reclamation of arid and semi-arid soils: The role of plant growth-promoting archaea and bacteria 24. Reclamation of arid and semi-arid soils: The role of arbuscular mycorrhizal fungi 25. Improved soil water retention and reduced evaporation in drought-stressed agriculture by soil beneficial microbes 26. Rhizosphere engineering for managing agriculture in arid and semi-arid regions Section 5: Crop physiological and yield responses to water stress 27. Effect of soil drought on plant root systems and nutrient availability 28. Plant drought stress tolerance: understanding its physiological, biochemical and molecular mechanisms 29. Crop root responses to drought stress: Molecular mechanisms, nutrient regulations, and interactions with microorganisms in the rhizosphere 30. Water management in irrigated rice: coping with water scarcity
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Action mechanisms; Adaptation to global change; Agricultural production systems; Agricultural science; Agricultural soil science; Agriculture; Agriculture production; Agronomy; Agronomy discipline; Almond kernel yield; Ammonification; Applications; Applied microbiology; Aquatic botany; Arbuscular mycorrhizal fungi; Arid and semiarid regions; Arid environments; Arid land agriculture; Arid regions; Biofertilizer; Biological control agents; Biological sciences; Biological substances; Biopesticides; Biostimulants; Carbon sequestration; Cereal production; Changing climate; Chemical compound; Climate change; Conservation agriculture; Crop production; Crop productivity; Crop resilience; Crop stress; Crop yield; Crops; Customized fertilizer mixture; DNA stable isotope probing; Deficit irrigation strategies; Deficit irrigation techniques; Denitrification; Digital soil mapping; Drought; Drought events; Drought stress; Drought tolerance; Dry land; Ecological engineering; Ecology; Ecosystem ecology; Ecosystem resilience; Environmental chemical engineering; Environmental issues of natural resources; Environmental management tool; Environmental pollution; Environmental science; Enzyme activities; Evapotranspiration; Food products; Fruit crops; Fruit trees; Functional genes; Future directions; Geography; Greenhouse cultivation; High-throughput sequencing; Horticulture; Hydrology; Innovative assessment approaches; Integrated disease management; Integrated soil fertility management; Intermediary metabolism; Irrigation efficiency; Legumes; Mechanisms; Metabolic engineering; Microbial communities; Microbial community; Microbial fertilizers; Molecular mechanism; Molecular mechanisms; Nanotechnology in agriculture; Natural resources; Nitrification; Nitrogen fixation; Nutrient cycling; Nutrient deficiency; Nutrient efficiency; Nutrient management; Nutrient-microbes synergy; Organic amendments; PGPR; Plant (plant biology); Plant cover crops; Plant diseases; Plant growth-promoting rhizobacteria; Plant growth-promoting traits; Plant nutrition management; Plant physiology