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Jacks of metal/metalloid chelation trade in plants—an overview

机译:植物中金属/准金属螯合贸易的障碍-概述

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摘要

Varied environmental compartments including soils are being contaminated by a myriad toxic metal(loid)s (hereafter termed as “metal/s”) mainly through anthropogenic activities. These metals may contaminate food chain and bring irreparable consequences in human. Plant-based approach (phytoremediation) stands second to none among bioremediation technologies meant for sustainable cleanup of soils/sites with metal-contamination. In turn, the capacity of plants to tolerate potential consequences caused by the extracted/accumulated metals decides the effectiveness and success of phytoremediation system. Chelation is among the potential mechanisms that largely govern metal-tolerance in plant cells by maintaining low concentrations of free metals in cytoplasm. Metal-chelation can be performed by compounds of both thiol origin (such as GSH, glutathione; PCs, phytochelatins; MTs, metallothioneins) and non-thiol origin (such as histidine, nicotianamine, organic acids). This paper presents an appraisal of recent reports on both thiol and non-thiol compounds in an effort to shed light on the significance of these compounds in plant-metal tolerance, as well as to provide scientific clues for the advancement of metal-phytoextraction strategies.
机译:主要通过人为活动,包括土壤在内的各种环境区室都被多种有毒金属(金属)污染(以下称“金属”)。这些金属可能污染食物链并给人类带来无法弥补的后果。基于植物的方法(植物修复)在旨在通过金属污染对土壤/场地进行可持续清洁的生物修复技术中首屈一指。反过来,植物对由提取/积累的金属引起的潜在后果的承受能力决定了植物修复系统的有效性和成功。螯合是通过保持细胞质中低浓度的游离金属而在很大程度上控制植物细胞中金属耐受性的潜在机制之一。金属螯合可以通过硫醇来源的化合物(例如GSH,谷胱甘肽; PCs,植物螯合素; MTs,金属硫蛋白)和非硫醇来源的化合物(例如组氨酸,烟碱胺,有机酸)进行。本文介绍了有关硫醇和非硫醇化合物的最新报道,以期阐明这些化合物在植物对金属的耐受性中的重要性,并为促进金属植物提取策略提供科学依据。

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