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Titlebook: Nitric Oxide Action in Abiotic Stress Responses in Plants; M. Nasir Khan,Mohammad Mobin,Francisco J. Corpas Book 2015 Springer Internation

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Functional Role of Nitric Oxide Under Abiotic Stress Conditions processes of plants. These physiological processes include germination, growth, senescence, and photosynthesis as well as response mechanisms to specific environmental stresses. Plants under abiotic stress conditions experience oxidative and nitrosative stress; the latter mainly elicited by regulat
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Nitric Oxide and Abiotic Stress-Induced Oxidative Stressd in plant cells. NO has been reported to be induced rapidly by various environmental stresses and regulates the plant responses to abiotic stresses. The antioxidant role of NO is mainly based on its ability to maintain the cellular redox homeostasis and regulate the toxicity of ROS. Moreover, NO ha
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Regulatory Role of Nitric Oxide in Alterations of Morphological Features of Plants Under Abiotic Struced morphogenic response (SIMRs). One of the best examples is the inhibition of primary root elongation with accompanying initiation of new lateral roots in response to sub-optimal growth conditions. A central research question revolves around the signal transduction pathway in SIMRs. Nitric oxide
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Nitric Oxide and Plant Hemoglobins Improve the Tolerance of Plants to Hypoxiand function are quite diverse among the different organisms. In plants, three different types of hemoglobins were found: symbiotic (sHb), nonsymbiotic (nsHb), and truncated hemoglobins (trHb). Nonsymbiotic hemoglobins are divided into two classes: class 1 hemoglobins (nsHb-1s), which have a very hig
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Nitric Oxide as a Mediator of Cold Stress Response: A Transcriptional Point of Viewcomplex matter that relies on deep metabolic reprogramming principally governed by transcriptomic changes themselves controlled through multiple signalling pathways. A set of recent reports points out nitric oxide (NO) as a key element of signalling networks underlying plant response to low temperat
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Nitric Oxide and UV-B Radiationhe content of endogenously generated NO increases in adverse environmental conditions. This chapter addresses to the signalling events with the involvement of the reactive nitrogen species under ultraviolet-B (UV-B) exposure. Solar UV-B has long been recognized as merely deleterious environmental fa
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