Role of Antioxidants in Mitigating Plant Stress

Specificaties
Paperback, blz. | Engels
Elsevier Science | 2025
ISBN13: 9780443267994
Rubricering
Elsevier Science e druk, 2025 9780443267994
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

Role of Antioxidants in Mitigating Plant Stress explores the fundamental roles and mechanistic approaches of antioxidant stress tolerance strategies. With chapters addressing both enzymatic and non-enzymatic antioxidants, it provides a clear guide for understanding plant responses. Presenting current understanding of these components, the book features their role, molecular properties, and reaction mechanisms to various environmental conditions. This book provides an important reference for researchers and advanced level students seeking to improve plant health.

Plants are regularly exposed to various kinds of abiotic and biotic stresses in their natural environmental conditions. These stresses have significant influence on agriculture worldwide and thus, lead to massive economic losses as well as food insecurity. Research has identified many of the effects of, and mitigation techniques for, various stresses that impact plant systems. Strategies for strengthening the antioxidant defense system can increase yields and protect crop plants from a variety of stresses.

Specificaties

ISBN13:9780443267994
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

1. Current understanding of antioxidants and plant productivity: an overview<br>2. Enzymatic antioxidant defense systems in plants<br>3. Non-enzymatic antioxidant defense systems in plants<br>4. ROS/RNS metabolism, signaling in plant defense systems<br>5. Enzymatic and non-enzymatic antioxidant defense in plants under drought and flooding stress<br>6. Enzymatic and non-enzymatic antioxidant defense in plants under toxic metals stress<br>7. Enzymatic and non-enzymatic antioxidant defense in plants under temperature extremes<br>8. Enzymatic and non-enzymatic antioxidant defense in plants under cold or chilling stress<br>9. Enzymatic and non-enzymatic antioxidant defense in plants under nutrient deficiency stress<br>10. Antioxidants acceleration for crop plant leaf physiological features for stress mitigation<br>11. Coordination of antioxidants and plant hormones for higher plant performance under various stresses<br>12. Coordination of antioxidants and PGPR for higher plant performance under various stresses<br>13. Foliar exposure to various chemicals for enhancing the impact of antioxidants in plant stress mitigation<br>14. Regulation of enzymatic antioxidants and stress-related gene expression in plant system<br>15. Regulation of non-enzymatic antioxidants and stress-related gene expression in plant system<br>16. Oxidative stress suppression in plant system and elevation of antioxidant gene expression under diverse stress situations<br>17. Significance of antioxidants for stress-tolerant transgenic plant development<br>18. Antioxidants and OMICS prospectives for stress resilience in crop plants<br>19. Significance of enzymatic and non-enzymatic antioxidant defense systems under various biotic stress situations<br>20. Omics, transgenics, genome editing and use of AI with reference to stress mitigation in plants<br>21. Understanding carbon flow from photosynthesis to carbon assimilation with reference to stress mitigation in plants<br>22. Genome editing for antioxidant-based manipulation for abiotic stress tolerance in plants<br>23. Abiotic stress-induced regulation of antioxidant enzyme genes using microarray techniques<br>24. Nanoparticles and abiotic stress: Going deep into the antioxidative enzymatic resistance, signaling, and defense mechanisms in plants<br>25. Interactions of Oxidative Stress and Ultraviolet-B Radiation in Plant System<br>26. SMART Plant Breeding utilizing the antioxidant mechanism for Developing Climate-Resilient Cereals

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        Role of Antioxidants in Mitigating Plant Stress