1. Futuristic and Prospective Role of Agricultural Biotechnology in a Sustainable Environment 2. Improvement in Waterlogging Tolerance in Plants Via Melatonin 3. Abiotic Stress Tolerance: New Breeding Strategies to Improve Drought Tolerance in Canola 4. Mobility of Nutrients and Their Metabolism in Agriculture Crops 5. Proteomics Applications in Cereal Crops for Food Security under Increasing Abiotic Stresses 6. Signaling and Regulatory Pathways Between Plants and Microbial Communities Towards Environments 7. Agroecosystem Diversity and Maintenance of Soil and Environment Health 8. Recent Advances in the Use of Bionanotechnology for Bioremediation 9. Endophyte-Mediated Secondary Metabolites Synthesis in Plants: An Omics Approach 10. Nanobiosensors to Detect Environmental Pollution 11. Role of Medicinal Plants in Drug Delivery Systems in Sustainable Systems 12. Environmental Pollution and Technological Applications
Covers uses of novel technologies for production, formulation, and synthesis of biological substances from the living organisms. Explores the practical uses of biopharmaceuticals, demonstrating their effectiveness in the treatment of various illnesses, such as cancer, autoimmune disorders, and infectious diseases.
This new volume highlights the latest strides made in the fields of agricultural biotechnology, encompassing topics from molecular biology, genetic engineering, proteomics, molecular docking, and drug delivery. The book reports on biotechnological methods to improve plant tolerance to such stresses as waterlogging and drought. It discusses ways to enhance signaling and regulatory pathways between plants and microbial communities and considers agroecosystem diversity and how it affects maintenance of soil and environmental health. Recent advances in the use of bionanotechnology for bioremediation are described, such as the use of nanobiosensors to detect environmental pollution. A range of other technoll£'