首页> 外文期刊>South African Journal of Botany >Heavy metals toxicity in plants: an overview on the role of glutathione and phytochelatins in heavy metal stress tolerance of plants.
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Heavy metals toxicity in plants: an overview on the role of glutathione and phytochelatins in heavy metal stress tolerance of plants.

机译:植物对重金属的毒性:谷胱甘肽和植物螯合素在植物对重金属的耐受性中的作用概述。

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摘要

Plants experience oxidative stress upon exposure to heavy metals that leads to cellular damage. In addition, plants accumulate metal ions that disturb cellular ionic homeostasis. To minimize the detrimental effects of heavy metal exposure and their accumulation, plants have evolved detoxification mechanisms. Such mechanisms are mainly based on chelation and subcellular compartmentalization. Chelation of heavy metals is a ubiquitous detoxification strategy described in wide variety of plants. A principal class of heavy metal chelator known in plants is phytochelatins (PCs), a family of Cys-rich peptides. PCs are synthesized non-translationally from reduced glutathione (GSH) in a transpeptidation reaction catalyzed by the enzyme phytochelatin synthase (PCS). Therefore, availability of glutathione is very essential for PCs synthesis in plants at least during their exposure to heavy metals. Here, I reviewed on effect of heavy metals exposure to plants and role of GSH and PCs in heavy metal stress tolerance. Further, genetic manipulations of GSH and PCs levels that help plants to ameliorate toxic effects of heavy metals have been presented.
机译:植物在接触重金属时会遭受氧化应激,从而导致细胞受损。此外,植物中积累的金属离子会干扰细胞离子的体内稳态。为了使重金属暴露及其积累的有害影响最小化,植物已经进化出了排毒机制。这种机制主要基于螯合和亚细胞区室化。重金属的螯合是多种植物中普遍存在的排毒策略。植物中已知的重金属螯合剂的主要类别是植物螯合素(PCs),这是富含Cys的肽家族。在植物螯合酶合酶(PCS)催化的转肽反应中,由还原型谷胱甘肽(GSH)非翻译合成PC。因此,至少在植物暴露于重金属期间,谷胱甘肽的可用性对于植物中PC的合成非常重要。在这里,我回顾了重金属暴露于植物的影响以及GSH和PC在重金属胁迫耐受性中的作用。此外,已经提出了对GSH和PCs水平的遗传操纵,其有助于植物改善重金属的毒性作用。

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