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Nitric Oxide in Plant Biology

An Ancient Molecule with Emerging Roles

Specificaties
Gebonden, blz. | Engels
Elsevier Science | e druk, 2021
ISBN13: 9780128187975
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Elsevier Science e druk, 2021 9780128187975
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Samenvatting

Nitric Oxide in Plant Biology: An Ancient Molecule with Emerging Roles is an extensive volume which provides a broad and detailed overview of Nitric Oxide (NO) in plant biology.

The book covers the entirety of the crucial role NO plays in the plant lifecycle, from the regulation of seed germination and growth to synthesis, nitrogen fixation and stress response. Beginning with NO production and NO homeostasis, Nitric Oxide in Plant Biology goes on to cover a variety of NO roles, with a focus on NO signalling, crosstalk and stress responses.

Edited by leading experts in the field and featuring the latest research from laboratories from across the globe, it is a comprehensive resource of interest to students and researchers working in plant physiology, agriculture, biotechnology, and the pharmaceutical and food industries.

Specificaties

ISBN13:9780128187975
Taal:Engels
Bindwijze:Gebonden

Inhoudsopgave

<p>Volume I: Nitric Oxide and Stress Interface<br>1. Overview of Nitric Oxide Homeostasis: Strategies for Altering the Levels of this Signaling Molecule in Plants<br>2. Nitric Oxide Synthase in the Plant Kingdom<br>3. The Role of Plants and Plant Secondary Metabolites as Selective NOS Inhibitors<br>4. Nitrate Reductase-Dependent Synthesis of Nitric Oxide in Plants<br>5. Nitric Oxide Production Mediated by Nitrate Reductase in Plants<br>6. Role of Nitric Oxide in Plants: A Current Update<br>7. Nitric Oxide: A Key Player in Mitigating Heavy Metal Toxicity in Plants<br>8. Role of Nitric Oxide in Drought Stress<br>9. Nitric Oxide Regulation of Temperature Stress in Plants<br>10. Nitric Oxide Signaling in Plants During Flooding Stress<br>11. Plant Metabolism Adjustment in Exogenously Applied Nitric Oxide Under Stress<br>12. Nitric Oxide and Metabolic Reprogramming Under Phytotoxicity Stress<br>13. Nitric Oxide and Lateral Root Development in Plants Under Stress<br>14. Targets of Nitric Oxide in Plastids<br>15. Polyamine Metabolism and Nitric Oxide Signalling in Plants<br>16. Nitric Oxide Signalling and Abiotic Stress Tolerance in Plants<br>17. Responses of Halophytes to Nitric Oxide<br>18. The Role of Nitric Oxide in Lichens</p> <p>Volume II: Nitric Oxide Crosstalk<br>19. Nitric Oxide and Hydrogen Sulfide Crosstalk in Plants under Stress<br>20. Roles of S-Nitrosylation in Abiotic Stress Tolerance in Plants<br>21. Nitric Oxide and Reactive Oxygen Species Crosstalk, and the Acquisition of Abiotic Stress Tolerance<br>22. Nitric Oxide-Mediated Regulation of Stomatal Movement During Desiccation<br>23. The Nitric Oxide Challenges During Metal Stress<br>24. Crosstalk of Nitric Oxide and Phytohormones in the Regulation of Plant Development<br>25. Nitric Oxide and Phytohormones Crosstalk in Plant Defence Against Abiotic Stress<br>26. Transcriptional Regulation by Nitric Oxide in Plant Disease Resistance<br>27. Gene Regulation by Nitric Oxide in Plants<br>28. The Ubiquitin-Proteosome System as Part of Nitric Oxide Sensing in Plants<br>29. Nitric Oxide and Hydrogen Peroxide Crosstalk in Plant Adaptation to Stress Conditions<br>30. The Role of Nitric Oxide in Fruit Ripening<br>31. Nitric Oxide Synthases from Photosynthetic Microorganisms: Discovering the Tip of the Iceberg<br>32. Nitric Oxide-mediated regulation of the physiological and molecular responses induced by UV-B radiation in plants</p>

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