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Advances in the Mechanisms of Plant Tolerance to Manganese Toxicity

机译:植物对锰毒性的耐受机制研究进展

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摘要

Manganese (Mn) is an essential element for plant growth due to its participation in a series of physiological and metabolic processes. Mn is also considered a heavy metal that causes phytotoxicity when present in excess, disrupting photosynthesis and enzyme activity in plants. Thus, Mn toxicity is a major constraint limiting plant growth and production, especially in acid soils. To cope with Mn toxicity, plants have evolved a wide range of adaptive strategies to improve their growth under this stress. Mn tolerance mechanisms include activation of the antioxidant system, regulation of Mn uptake and homeostasis, and compartmentalization of Mn into subcellular compartments (e.g., vacuoles, endoplasmic reticulum, Golgi apparatus, and cell walls). In this regard, numerous genes are involved in specific pathways controlling Mn detoxification. Here, we summarize the recent advances in the mechanisms of Mn toxicity tolerance in plants and highlight the roles of genes responsible for Mn uptake, translocation, and distribution, contributing to Mn detoxification. We hope this review will provide a comprehensive understanding of the adaptive strategies of plants to Mn toxicity through gene regulation, which will aid in breeding crop varieties with Mn tolerance via genetic improvement approaches, enhancing the yield and quality of crops.
机译:锰(Mn)由于参与一系列生理和代谢过程,因此是植物生长必不可少的元素。锰也被认为是重金属,当过量存在时会引起植物毒性,破坏植物的光合作用和酶活性。因此,Mn毒性是限制植物生长和生产的主要限制因素,特别是在酸性土壤中。为了应对锰的毒性,植物已经进化出多种适应性策略来改善其在这种胁迫下的生长。锰耐受机制包括激活抗氧化剂系统,调节锰摄取和体内稳态以及将锰分隔成亚细胞区室(例如液泡,内质网,高尔基体和细胞壁)。在这方面,许多基因参与控制Mn解毒的特定途径。在这里,我们总结了植物对锰的毒性耐受性机制的最新进展,并强调了负责锰吸收,转运和分布的基因的作用,从而促进了锰的解毒。我们希望这篇综述能够通过基因调控全面了解植物对锰毒性的适应策略,这将有助于通过遗传改良方法来育种具有锰耐受性的作物品种,从而提高作物的产量和质量。

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