Botanical Microbiomes: Sustainable Practices in Agriculture and Ecosystem Management
Editat de Shobhit Raj Vimal, Jay Shankar Singh, Ashwani Kumaren Limba Engleză Paperback – aug 2026
- Provides an overview of beneficial plant microbiomes in managing plant health under environmental change
- Discusses the impact of microbial community structure and functional dynamics on plant development and adaptation
- Describes advanced multiomics technologies and next-generation tools for exploring plant-microbiome dynamics
- Includes expert contributions on microbial metabolites, soil microbiome engineering, and biopesticides in crop productivity and restoration
- Offers supplementary PowerPoint slides and videos for enhanced learning
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Specificații
ISBN-13: 9780443276286
ISBN-10: 0443276285
Pagini: 450
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
ISBN-10: 0443276285
Pagini: 450
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
Cuprins
1. Microbial Metabolites Production Efficacy in Management of Environmental Stress in Plants
2. The Role of Soil Microbiome Engineering in Stress Agriculture and Sustainable Crop Productivity
3. Microbes-Based Amendments, Microbiome Engineering, and Their Impact on Crop Health Dynamics
4. Exploring the Role of Soil Microbial Communities in Eco-Restoration Services and Crop Sustainability
5. Next-Generation Multi-Omics Tools to Explore Environmental Change–Microbiome Dynamics for Enhanced Plant Development
6. The Promising Concept of Biopesticides: Exploring the Potential of Microbial Inclusion
7. Soil Contamination Under Climate Change: Challenges and Solutions
8. Environmental Microbiome Composition and Functional Dynamics with Next-Generation Tools and Techniques
9. Microbiomes’ Resilience to Climatic Change
10. Application of Advanced Microbiome-Based Membrane Bioreactors for Wastewater Management to Ensure Regeneration of Soil Ecosystem Services
11. Microbial Services in Mitigation of Environmental Stresses and Plant Health Development
12. Crop–Environment Microbiome Functional Dynamics to Enhance Productivity for Next-Generation Hunger
13. Plant Endomicrobiome Services as Natural Engineers to Configure Environmental Change and Ensure Crop Sustainability
14. Endophytic *Bacillus* as a Crop Stimulator for Sustainable Sugarcane (*Saccharum officinarum* L.) Production Under Drought-Stress Conditions
2. The Role of Soil Microbiome Engineering in Stress Agriculture and Sustainable Crop Productivity
3. Microbes-Based Amendments, Microbiome Engineering, and Their Impact on Crop Health Dynamics
4. Exploring the Role of Soil Microbial Communities in Eco-Restoration Services and Crop Sustainability
5. Next-Generation Multi-Omics Tools to Explore Environmental Change–Microbiome Dynamics for Enhanced Plant Development
6. The Promising Concept of Biopesticides: Exploring the Potential of Microbial Inclusion
7. Soil Contamination Under Climate Change: Challenges and Solutions
8. Environmental Microbiome Composition and Functional Dynamics with Next-Generation Tools and Techniques
9. Microbiomes’ Resilience to Climatic Change
10. Application of Advanced Microbiome-Based Membrane Bioreactors for Wastewater Management to Ensure Regeneration of Soil Ecosystem Services
11. Microbial Services in Mitigation of Environmental Stresses and Plant Health Development
12. Crop–Environment Microbiome Functional Dynamics to Enhance Productivity for Next-Generation Hunger
13. Plant Endomicrobiome Services as Natural Engineers to Configure Environmental Change and Ensure Crop Sustainability
14. Endophytic *Bacillus* as a Crop Stimulator for Sustainable Sugarcane (*Saccharum officinarum* L.) Production Under Drought-Stress Conditions