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水分胁迫背景下质体中硫氧还蛋白y对单脱氢抗坏血酸还原酶的氧化还原调节

Redox Regulation of Monodehydroascorbate Reductase by Thioredoxin y in Plastids Revealed in the Context of Water Stress.

作者信息

Vanacker Hélène, Guichard Marjorie, Bohrer Anne-Sophie, Issakidis-Bourguet Emmanuelle

机构信息

Institute of Plant Sciences Paris-Saclay (IPS2), UMR Université Paris Sud-CNRS 9213-INRA 1403, Bât. 630, 91405 Orsay CEDEX, France.

出版信息

Antioxidants (Basel). 2018 Dec 6;7(12):183. doi: 10.3390/antiox7120183.

Abstract

Thioredoxins (TRXs) are key players within the complex response network of plants to environmental constraints. Here, the physiological implication of the plastidial y-type TRXs in Arabidopsis drought tolerance was examined. We previously showed that TRXs y1 and y2 have antioxidant functions, and here, the corresponding single and double mutant plants were studied in the context of water deprivation. TRX y mutant plants showed reduced stress tolerance in comparison with wild-type (WT) plants that correlated with an increase in their global protein oxidation levels. Furthermore, at the level of the main antioxidant metabolites, while glutathione pool size and redox state were similarly affected by drought stress in WT and plants, ascorbate (AsA) became more quickly and strongly oxidized in mutant leaves. Monodehydroascorbate (MDA) is the primary product of AsA oxidation and NAD(P)H-MDA reductase (MDHAR) ensures its reduction. We found that the extractable leaf NADPH-dependent MDHAR activity was strongly activated by TRX y2. Moreover, activity of recombinant plastid Arabidopsis MDHAR isoform (MDHAR6) was specifically increased by reduced TRX y, and not by other plastidial TRXs. Overall, these results reveal a new function for y-type TRXs and highlight their role as major antioxidants in plastids and their importance in plant stress tolerance.

摘要

硫氧还蛋白(TRXs)是植物应对环境胁迫复杂反应网络中的关键因子。在此,我们研究了拟南芥质体y型TRXs在耐旱性方面的生理意义。我们之前表明TRXs y1和y2具有抗氧化功能,在此,我们在缺水条件下对相应的单突变体和双突变体植株进行了研究。与野生型(WT)植株相比,TRX y突变体植株的胁迫耐受性降低,这与其整体蛋白质氧化水平的升高相关。此外,在主要抗氧化代谢物水平上,虽然野生型和突变体植株中的谷胱甘肽库大小和氧化还原状态受干旱胁迫的影响相似,但突变体叶片中的抗坏血酸(AsA)氧化得更快、更强烈。单脱氢抗坏血酸(MDA)是AsA氧化的主要产物,NAD(P)H-MDA还原酶(MDHAR)可确保其还原。我们发现,可提取的叶片NADPH依赖性MDHAR活性被TRX y2强烈激活。此外,还原型TRX y可特异性提高重组质体拟南芥MDHAR同工型(MDHAR6)的活性,而其他质体TRXs则无此作用。总体而言,这些结果揭示了y型TRXs的新功能,突出了它们作为质体中主要抗氧化剂的作用及其在植物胁迫耐受性中的重要性。

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