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Full Description
This book covers various genomic and genetic modifications utilized to develop climate-resilient crops. Each subsequent chapter serves as a strategic response to this imperative, revealing advanced research and solutions aimed at enhancing adaptability and resilience of crops. The book traverses diverse aspects of crop breeding, including genomic-assisted breeding, the roles of transcription factors and DNA methylation, and the impact of metabolic and structural changes on crop adaptation to abiotic stress. The book concludes with discussion on the prospects of advancing crop resilience through the integration of genetic, breeding, genomic, biotechnological, and engineering innovations. This section provides insights into the current research landscape and the future of breeding stress-resilient crops.
Tailored for researchers, students, and extension agents, this book meets the needs of those seeking knowledge in solutions utilized in crop breeding for agricultural sustainability in extreme climates and the associated challenges.
Contents
.- Chapter 1: Genomic Innovations for Climate-Smart Crop Development
.- Chapter 2: Potential of Crop Wild Relatives in Developing Abiotic Stress Tolerant Crop Cultivars
.- Chapter 3: Integrative Phenomics Bridging Genomics and Stress Resilience in Crops
.- Chapter 4: Recent Advances in Understanding Heat Stress Responses in Major Pseudocereals
.- Chapter 5: Proteomic Strategies to Uncover Insights into Abiotic Stress Responses
.- Chapter 6: Biomacromolecular Pattern Guided Breeding for Nutritional Quality and Safety Under Heat Stress in Soybean and Peanut
.- Chapter 7: Epigenetics in Crop Abiotic Stress Adaptation and Memory
.- Chapter 8: Harnessing the Potential of Transcription Factors in Developing Drought Resilient Rice
.- Chapter 9: Microgreens for Health and Climate Adaptation Unlocking Therapeutic and Agricultural Potential
.- Chapter 10:Microgreens farming as Climate-Smart Agriculture From Soil to Supplement, Next Generation of Nutrient-Dense Foods
.- Chapter 11:Genomic Advances in Millets for Climate-Resilient Agriculture and Nutritional Security.



