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Metabolism of reactive oxygen species and reactive nitrogen species in pepper (Capsicum annuum L.) plants under low temperature stress

机译:低温胁迫下辣椒辣椒中活性氧和活性氮的代谢

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摘要

Low temperature is an environmental stress that affects crop production and quality and regulates the expression of many genes, and the level of a number of proteins and metabolites. Using leaves from pepper (Capsicum annum L.) plants exposed to low temperature (8 degrees C) for different time periods (1 to 3 d), several key components of the metabolism of reactive nitrogen and oxygen species (RNS and ROS, respectively) were analysed. After 24 h of exposure at 8 degrees C, pepper plants exhibited visible symptoms characterized by flaccidity of stems and leaves. This was accompanied by significant changes in the metabolism of RNS and ROS with an increase of both protein tyrosine nitration (NO2-Tyr) and lipid peroxidation, indicating that low temperature induces nitrosative and oxidative stress. During the second and third days at low temperature, pepper plants underwent cold acclimation by adjusting their antioxidant metabolism and reverting the observed nitrosative and oxidative stress. In this process, the levels of the soluble non-enzymatic antioxidants ascorbate and glutathione, and the activity of the main NADPH-generating dehydrogenases were significantly induced. This suggests that ascorbate, glutathione and the NADPH-generating dehydrogenases have a role in the process of cold acclimation through their effect on the redox state of the cell.
机译:低温是一种环境压力,会影响作物的产量和质量,并调节许多基因的表达以及许多蛋白质和代谢产物的水平。使用暴露于低温(8摄氏度)不同时间段(1至3 d)的胡椒(辣椒(Capsicum annum L.))植物的叶片,可以发现活性氮和氧物种(分别为RNS和ROS)代谢的几个关键成分被分析。在8摄氏度下暴露24小时后,辣椒植物表现出可见的症状,特征是茎和叶的松弛。这伴随着RNS和ROS代谢的显着变化,同时增加了蛋白质酪氨酸硝化(NO2-Tyr)和脂质过氧化作用,表明低温诱导亚硝化和氧化应激。在低温的第二天和第三天,辣椒植物通过调节其抗氧化代谢并恢复所观察到的亚硝化和氧化胁迫而进行了冷驯化。在这个过程中,可溶的非酶抗氧化剂抗坏血酸和谷胱甘肽的水平以及主要产生NADPH的脱氢酶的活性被显着诱导。这表明抗坏血酸,谷胱甘肽和产生NADPH的脱氢酶通过影响细胞的氧化还原状态而在冷驯化过程中起作用。

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