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On the Origin and Fate of Reactive Oxygen Species in Plant Cell Compartments

机译:植物细胞隔室中活性氧的起源和归宿

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摘要

Reactive oxygen species (ROS) have been recognized as important signaling compounds of major importance in a number of developmental and physiological processes in plants. The existence of cellular compartments enables efficient redox compartmentalization and ensures proper functioning of ROS-dependent signaling pathways. Similar to other organisms, the production of individual ROS in plant cells is highly localized and regulated by compartment-specific enzyme pathways on transcriptional and post-translational level. ROS metabolism and signaling in specific compartments are greatly affected by their chemical interactions with other reactive radical species, ROS scavengers and antioxidant enzymes. A dysregulation of the redox status, as a consequence of induced ROS generation or decreased capacity of their removal, occurs in plants exposed to diverse stress conditions. During stress condition, strong induction of ROS-generating systems or attenuated ROS scavenging can lead to oxidative or nitrosative stress conditions, associated with potential damaging modifications of cell biomolecules. Here, we present an overview of compartment-specific pathways of ROS production and degradation and mechanisms of ROS homeostasis control within plant cell compartments.
机译:活性氧(ROS)已被认为是植物许多发育和生理过程中最重要的重要信号化合物。细胞区室的存在使得有效的氧化还原区室化并确保ROS依赖性信号传导途径的适当功能。与其他生物类似,植物细胞中单个ROS的产生高度定位,并受转录和翻译后水平的区室特异性酶途径的调节。 ROS在特定区域的代谢和信号传导受它们与其他反应性自由基物质,ROS清除剂和抗氧化酶的化学相互作用的影响很大。暴露于不同胁迫条件下的植物中,由于诱导的ROS生成或其去除能力降低而导致的氧化还原状态失调。在应激条件下,强烈诱导产生ROS的系统或减弱的ROS清除能力会导致氧化或亚硝化应激条件,与细胞生物分子的潜在破坏性修饰有关。在这里,我们概述了ROS产生和降解的特定于区室的途径以及植物细胞区室中ROS稳态控制的机制。

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