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首页> 外文期刊>Frontiers in Environmental Science >Oxidative environment and redox homeostasis in plants: dissecting out significant contribution of major cellular organelles
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Oxidative environment and redox homeostasis in plants: dissecting out significant contribution of major cellular organelles

机译:植物的氧化环境和氧化还原稳态:剖析主要细胞器的重要作用

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Plant cells are often exposed to oxidative cellular environments which result in the generation of toxic reactive oxygen species (ROS). In order to detoxify the harmful ROS, plants have evolved various strategies including their scavenging and antioxidant machinery. Plant cells contain many enzymatic and non-enzymatic antioxidants which aid in removing the toxic oxygen molecules. Various antioxidant molecules localized within different cellular compartments play crucial role(s) during this process, which includes both redox-signalling and redox-homeostasis. The present review gives an overview of cellular oxidative environment, redox signalling operative within a cell and contributions of major cellular organelles towards maintaining the redox homeostasis. Additionally, the importance of various antioxidant enzymes working in an orchestrated and coordinated manner within a cell, to protect it from stress injury has been presented. We also present the state-of-the-art where transgenic approach has been used to improve stress tolerance in model and crop species by engineering one or more than one of these components of the ROS scavenging machinery.
机译:植物细胞经常暴露于氧化性细胞环境中,导致产生有毒的活性氧(ROS)。为了使有害的ROS排毒,植物已经开发出各种策略,包括其清除和抗氧化剂机制。植物细胞包含许多酶和非酶抗氧化剂,可帮助去除有毒的氧分子。在此过程中,位于不同细胞区室中的各种抗氧化剂分子起着至关重要的作用,包括氧化还原信号传递和氧化还原稳态。本综述概述了细胞氧化环境,在细胞内起作用的氧化还原信号传导以及主要细胞器对维持氧化还原稳态的贡献。另外,已经提出了各种抗氧化酶在细胞内以协调和协调的方式起作用以保护其免受应激损伤的重要性。我们还介绍了最新的技术,其中转基因方法已用于通过设计ROS清除机制的这些成分中的一种或多种来提高模型和农作物物种的胁迫耐受性。

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