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ROS and NO Regulation by Melatonin Under Abiotic Stress in Plants

机译:植物中非生物胁迫下褪黑素的ROS和褪黑素的调节

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Abiotic stress in plants is an increasingly common problem in agriculture, and thus, studies on plant treatments with specific compounds that may help to mitigate these effects have increased in recent years. Melatonin (MET) application and its role in mitigating the negative effects of abiotic stress in plants have become important in the last few years. MET, a derivative of tryptophan, is an important plant-related response molecule involved in the growth, development, and reproduction of plants, and the induction of different stress factors. In addition, MET plays a protective role against different abiotic stresses such as salinity, high/low temperature, high light, waterlogging, nutrient deficiency and stress combination by regulating both the enzymatic and non-enzymatic antioxidant defense systems. Moreover, MET interacts with many signaling molecules, such as reactive oxygen species (ROS) and nitric oxide (NO), and participates in a wide variety of physiological reactions. It is well known that NO produces S-nitrosylation and NO 2 -Tyr of important antioxidant-related proteins, with this being an important mechanism for maintaining the antioxidant capacity of the AsA/GSH cycle under nitro-oxidative conditions, as extensively reviewed here under different abiotic stress conditions. Lastly, in this review, we show the coordinated actions between NO and MET as a long-range signaling molecule, regulating many responses in plants, including plant growth and abiotic stress tolerance. Despite all the knowledge acquired over the years, there is still more to know about how MET and NO act on the tolerance of plants to abiotic stresses.
机译:植物中的非生物胁迫是农业越来越常见的问题,因此,近年来可能有助于减轻这些效果的特异性化合物的植物治疗研究。褪黑激素(MET)应用及其在减轻植物中非生物胁迫的负面影响的作用在过去几年中变得重要。满足色氨酸的衍生物,是涉及植物生长,发育和繁殖的重要植物相关响应分子,以及不同应力因子的诱导。此外,通过调节酶和非酶促抗氧化防御系统,持有对不同的非生物胁迫,诸如盐度,高/低温,高光,耐盐酸,营养缺乏和应力组合等不同的非生物胁迫的保护作用。此外,满足与许多信号分子相互作用,例如反应性氧物质(ROS)和一氧化氮(NO),并参与各种生理反应。众所周知,没有产生S-亚硝基化和NOT 2 -TYR的重要抗氧化蛋白,这是在硝基氧化条件下保持ASA / GSH循环抗氧化能力的重要机制,这在此处的广泛审查不同的非生物胁迫条件。最后,在本次审查中,我们展示了NO与符合远程信号分子之间的协调行为,调节植物中的许多反应,包括植物生长和非生物应激耐受性。尽管多年来收购的所有知识,但仍然有关如何满足,并且没有对植物耐受性对非生物应激的耐受性的了解。

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