抗坏血酸和谷胱甘肽:控制活性氧。

Graham Noctor, Christine H. Foyer
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引用次数: 5662

摘要

为了应对环境的波动和防止病原体的入侵,植物的代谢必须是灵活和动态的。活性氧的形成在应激条件下加速,如果要避免氧化损伤,就必须迅速处理。活性氧在细胞环境中的寿命是由抗氧化系统决定的,它提供了对氧化损伤的关键保护。抗氧化系统包括许多低分子量的酶和化合物。虽然对前者的研究得益于分子技术的进步,但后者的合成途径相对较少受到关注。本文综述了抗坏血酸和谷胱甘肽在植物代谢和抗逆性中的作用。我们详细介绍了这两种重要抗氧化剂的生物合成、区隔和运输的最新知识,重点介绍了通过分子探索获得的独特见解和进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ASCORBATE AND GLUTATHIONE: Keeping Active Oxygen Under Control.

To cope with environmental fluctuations and to prevent invasion by pathogens, plant metabolism must be flexible and dynamic. Active oxygen species, whose formation is accelerated under stress conditions, must be rapidly processed if oxidative damage is to be averted. The lifetime of active oxygen species within the cellular environment is determined by the antioxidative system, which provides crucial protection against oxidative damage. The antioxidative system comprises numerous enzymes and compounds of low molecular weight. While research into the former has benefited greatly from advances in molecular technology, the pathways by which the latter are synthesized have received comparatively little attention. The present review emphasizes the roles of ascorbate and glutathione in plant metabolism and stress tolerance. We provide a detailed account of current knowledge of the biosynthesis, compartmentation, and transport of these two important antioxidants, with emphasis on the unique insights and advances gained by molecular exploration.

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