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首页> 外文期刊>Acta biochimica Polonica >The role of hydrogen peroxide in regulation of plant metabolism and cellular signalling in response to environmental stresses Review
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The role of hydrogen peroxide in regulation of plant metabolism and cellular signalling in response to environmental stresses Review

机译:过氧化氢在调节植物新陈代谢和响应环境胁迫的细胞信号中的作用综述

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Hydrogen peroxide (H2O2) is produced predominantly in plant cells during photosynthesis and photorespiration, and to a lesser extent, in respiration processes. It is the most stable of the so-called reactive oxygen species (ROS), and therefore plays a crucial role as a signalling molecule in various physiological processes. Intra- and intercellular levels of H2O2 increase during environmental stresses. Hydrogen peroxide interacts with thiol-containing proteins and activates different signalling pathways as well as transcription factors, which in turn regulate gene expression and cell-cycle processes. Genetic systems controlling cellular redox homeostasis and H2O2 signalling are discussed. In addition to photosynthetic and respiratory metabolism, the extracellular matrix (ECM) plays an important role in the generation of H2O2, which regulates plant growth, development, acclimatory and defence responses. During various environmental stresses the highest levels of H2O2 are observed in the leaf veins. Most of our knowledge about H2O2 in plants has been obtained from obligate C3 plants. The potential role of H2O2 in the photosynthetic mode of carbon assimilation, such as C4 metabolism and CAM (Crassulacean acid metabolism) is discussed. We speculate that early in the evolution of oxygenic photosynthesis on Earth, H2O2 could have been involved in the evolution of modern photosystem II.
机译:过氧化氢(H2O2)主要在光合作用和光呼吸过程中在植物细胞中产生,而在呼吸过程中产生的程度较小。它是所谓的活性氧(ROS)中最稳定的,因此在各种生理过程中作为信号分子起着至关重要的作用。在环境压力下,H2O2的细胞内和细胞间水平会增加。过氧化氢与含硫醇的蛋白质相互作用,并激活不同的信号通路和转录因子,进而调节基因表达和细胞周期过程。讨论了控制细胞氧化还原稳态和H2O2信号传导的遗传系统。除了光合作用和呼吸代谢外,细胞外基质(ECM)在H2O2的产生中也起着重要作用,H2O2调节植物的生长,发育,适应和防御反应。在各种环境胁迫期间,在叶脉中观察到最高水平的H2O2。我们对植物中H2O2的大多数了解是从专性C3植物中获得的。讨论了H2O2在碳同化的光合作用模式中的潜在作用,例如C4代谢和CAM(十字绣果酸代谢)。我们推测,在地球上光合作用的早期发展中,H2O2可能参与了现代光系统II的发展。

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