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Présentation Cutting Edge Technologies For Developing Future Crop Plants Format Relié
- Livre Beaux arts
Résumé : 1. Farmer's Perspective on Climate Change and Agricultural Production.- 2. Greenhouse gas emission: problems, global reality and future perspectives.- 3. Improving soil properties through various soil amendments under changing climate scenario.- 4. Paradigm shift from traditional to innovative extension approaches in changing agricultural scenario for better crop productivity.- 5. Impact of Agri-based technological interventions for managing poor soils and policy insights.- 6. Advanced strategies for crop improvement against abiotic stresses: An integrated view from breeding to genomics.- 7. Breeding strategies for improved multi-stress resilient crops.- 8. Speed Breeding: A budding technique to improve crop plants for multi-stress tolerance.- 9. Epigenetics regulation of abiotic stress in crop plants.- 10. Gene editing prospective for engineering climate smart plants.- 11. Next-gen strategies in host plant resistance to insects: breakthroughs and future horizons.- 12. Underlying survival mechanisms in model trees for enhanced abiotic stress tolerance.- 13. Homeostasis of plant metabolites in mitigating abiotic stress challenges.- 14. Integrating Multi-Omics Strategies to Enhance Crop Resilience in a Changing Climate.- 15. Advancing Sustainable Agriculture Through Plant-Microbial Interactions Amid Climate Change.- 16. CRISPR/Cas-based fungal genome engineering for secondary metabolite production: progress and challenges.- 17. Microbial Contributions to Crop Adaptation: Innovation for Climate-Resilient Agriculture.- 18. Effect of Climate Change on Seed Quality Development.- 19. Recent advances towards abiotic stresses tolerance and improvement in barnyard millet: a climate-resilient crop for food security.- 20. Challenges and opportunities of cultivating sandalwood (Santalum album) under abiotic stress conditions.- 21. Potential of halophytes in greening the barren land and making use of waste lands.
Biographie:
Dr. Naresh Kumar, ...
Sommaire: Dr. Anita Mann, Principal Scientist in Plant Physiology at ICAR-CSSRI, Karnal at ICAR-CSSRI, Karnal, specializes in molecular plant physiology with a focus on enhancing abiotic stress tolerance in crop plants. She is currently leading a genome-editing project on wheat, rice, and mustard for improved salt tolerance using the CRISPR/Cas9 system, funded by the Indian Council of Agricultural Research (ICAR), New Delhi, with a grant of approximately ?7 crores. Her research emphasizes the physiological, biochemical, and molecular characterization of salt-specific traits and the identification and transformation of salt-tolerance genes in crops like rice. She has contributed significantly to the study of salt tolerance in chickpea, pomegranate, okra, and tomato through integrated physiological, biochemical, molecular, and breeding approaches. She has been awarded research fellowships from CSIR and the Department of Science and Technology, New Delhi. With over 80 publications in peer-reviewed journals, book chapters, and conference proceedings, Dr. Mann serves on the editorial and review boards of reputed national and international journals.  ...
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