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On the role of the plant mitochondrial thioredoxin system during abiotic stress

机译:论植物线粒体肝细毒素系统在非生物胁迫下的作用

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摘要

Thiol-disulfide redox exchanges are widely distributed modifications of great importance for metabolic regulation in living cells. In general, the formation of disulfide bonds is controlled by thioredoxins (TRXs), ubiquitous proteins with two redox-active cysteine residues separated by a pair of amino acids. While the function of plastidial TRXs has been extensively studied, the role of the mitochondrial TRX system is much less well understood. Recent studies have demonstrated that the mitochondrial TRXs are required for the proper functioning of the major metabolic pathways, including stomatal function and antioxidant metabolism under sub-optimal conditions including drought and salinity. Furthermore, inactivation of mitochondrial TRX system leads to metabolite adjustments of both primary and secondary metabolism following drought episodes in arabidopsis, and makes the plants more resistant to salt stress. Here we discuss the implications of these findings, which clearly open up several research avenues to achieve a full understanding of the redox control of metabolism under environmental constraining conditions.
机译:硫醇二硫化钠氧化还原交换是广泛的分布性修饰,对活细胞的代谢调节非常重要。通常,二硫键的形成由硫氧化锡(TRX)控制,普遍存在的蛋白质,其具有由一对氨基酸分离的两种氧化还原活性半胱氨酸残基。虽然塑性性TRX的功能已被广泛研究,但线粒体TRX系统的作用较小地理解得多。最近的研究表明,线粒体TRX是主要的代谢途径的适当运作所必需的,包括气孔函数和抗氧化剂代谢在包括干旱和盐度的次优况下。此外,线粒体TRX系统的失活导致拟南芥干旱发作后初级和次生代谢的代谢物调整,并使植物更耐盐胁迫。在这里,我们讨论了这些发现的含义,这显然开辟了几种研究途径,以便在环境约束条件下充分了解新陈代谢的氧化还原控制。

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