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Reactive Oxygen, Nitrogen and Sulfur Species in Plants
Production, Metabolism, Signaling and Defense Mechanisms
Mirza Hasanuzzaman (Edited by), M Hasanuzzaman (Author), Vasileios Fotopoulos (Edited by), Kamrun Nahar (Edited by), Masayuki Fujita (Edited by)
9781119468691, Wiley
Hardback, published 30 August 2019
1024 pages
25.2 x 17.8 x 4.8 cm, 2.041 kg
Presents a multidisciplinary analysis of the integration among reactive oxygen species (ROS), reactive nitrogen species (RNS), and reactive sulfur species (RSS). Since plants are the main source of our food, the improvement of their productivity is the most important task for plant biologists. In this book, leading experts accumulate the recent development in the research on oxidative stress and approaches to enhance antioxidant defense system in crop plants. They discuss both the plant responses to oxidative stress and mechanisms of abiotic stress tolerance, and cover all of the recent approaches towards understanding oxidative stress in plants, providing comprehensive information about the topics. It also discusses how reactive nitrogen species and reactive sulfur species regulate plant physiology and plant tolerance to environmental stresses. Reactive Oxygen, Nitrogen and Sulfur Species in Plants: Production, Metabolism, Signaling and Defense Mechanisms covers everything readers need to know in four comprehensive sections. It starts by looking at reactive oxygen species metabolism and antioxidant defense. Next, it covers reactive nitrogen species metabolism and signaling before going on to reactive sulfur species metabolism and signaling. The book finishes with a section that looks at crosstalk among reactive oxygen, nitrogen, and sulfur species based on current research done by experts. Providing a comprehensive collection of up-to-date knowledge spanning from biosynthesis and metabolism to signaling pathways implicated in the involvement of RONSS to plant defense mechanisms, Reactive Oxygen, Nitrogen and Sulfur Species in Plants: Production, Metabolism, Signaling and Defense Mechanisms is an excellent book for plant breeders, molecular biologists, and plant physiologists, as well as a guide for students in the field of Plant Science.
Volume 1 Section I Reactive oxygen species metabolism and antioxidant defense 1. Regulated Suicide for Survival: Towards Programmed Cell Death during Reactive Species Mediated-Oxidative Stress of Plant Cells 2. Iron and its catalytic properties on radical generation: Role of chelators on the Labile Iron Pool (LIP) 3. Superoxide Dismutases (SODs) and their Role in Regulating Abiotic Stress induced Oxidative Stress in Plants 4. The Role of Ascorbate-Glutathione Pathway in Reactive Oxygen Species Balance under Abiotic Stresses 5. Oxidative stress and antioxidant defense under combined waterlogging and salinity stresses 6. Role of Polyamines in Protecting Plants from Oxidative Stress 7. Role of Glutathione in Plant Abiotic Stress Tolerance 8. Molecular approaches in enhancing antioxidant defence in plants 9. Omics in oxidative stress tolerance in crops 10. Role of reactive oxygen species signaling in plant growth and development 11. Oxidative Stress and Antioxidant Defense in Germinating Seeds: A Q&A Session 12. Oxidative stress and antioxidant defense in plants under salinity 13. ROS modulation in crop plants under drought stress 14. Oxidative Stress and Antioxidant Defense in Plants under High Temperature 15. Oxidative stress and antioxidant defense in plants exposed to metal/metalloid toxicity 16. Oxidative Stress and Antioxidant Defense in Plants Exposed To Ultraviolet Radiation 17. Methods/protocols for determination of oxidative stress in crop plants 18. Does seed priming play a role in regulating reactive oxygen species under saline conditions? 19. Computer-assisted image analysis of the distribution and intensity of reactive oxygen species accumulation in plant leaves Section-II: Reactive nitrogen species metabolism and signalling 20. Role of nitric oxide in physiological and stress responses of plants under darkness 21. Nitric oxide and phytohormones cross-talk during abiotic stresses responses in plants 22. The role of nitric oxide in the antioxidant defense of plants exposed to UV-B radiation 23. Reactive oxygen species and nitric oxide production, regulation and function during defence response 24. Role of nitric oxide in growth regulation and re-orientation of pollen tubes 25. Nitric oxide (NO)-Mediated Plant Stress Signaling 26. S-nitrosoglutathione (GSNO) and plant stress responses Volume 2 Section-III: Reactive sulfur species metabolism and signaling 27. Hydrogen sulfide in guard cell signaling 28. Hydrogen sulfide: a new gasotransmitter in plant defenses 29. Interplay between Hydrogen Sulfide and Calcium Signaling in Plant Abiotic Stress Response and Adaptation 30. Reactive Sulfur species-Key regulators of abiotic stress tolerance in plants 31. Reactive Sulfur Species: A new player in plant physiology? 32. Role of reactive sulfur species in the oxidative metabolism in plants 33. Hydrogen Sulfide in Plant Abiotic Stress Tolerance: Progress and Perspectives Section-IV: Crosstalk among reactive oxygen, nitrogen and sulfur species 34. Reactive oxygen species, reactive nitrogen species and oxidative metabolism under waterlogging stress 35. Reactive Oxygen and Nitrogen Species in Stress-Induced Programmed Death of Plant Cultured Cells 36. Finding a Place for NO in Everyday Plant Life 37. H2O2, NO and H2S: Tailoring in suiting plants against abiotic stresses 38. Cross talk among reactive oxygen, nitrogen and sulfur during abiotic stress in plants 39. Emerging technologies for enhancing ROS/RNS homeostasis 40. Compartmentalization of reactive oxygen species and nitric oxide production in plant cells
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Subject Areas: Science: general issues [PD]
