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Heavy metal detoxification and tolerance mechanisms in plants: Implications for phytoremediation

机译:植物中的重金属排毒及其耐受机制:对植物修复的影响

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摘要

Heavy metals, such as cobalt, copper, manganese, molybdenum, and zinc, are essential in trace amounts for growth by plants and other living organisms. However, in excessive amounts these heavy metals have deleterious effects. Like other organisms, plants possess a variety of detoxification mechanisms to counter the harmful effects of heavy metals. These include the restriction of heavy metals by mycorrhizal association, binding with plant cell wall and root excretions, metal efflux from the plasma membrane, metal chelation by phytochelatins and metallothioneins, and compartmentalization within the vacuole. Phytoremediation is an emerging technology that uses plants and their associated rhizospheric microorganisms to remove pollutants from contaminated sites. This technology is inexpensive, efficient, and ecofriendly. This review focuses on potential cellular and molecular adaptations by plants that are necessary to tolerate heavy metal stress.
机译:重金属,例如钴,铜,锰,钼和锌,对于植物和其他生物的生长至关重要。然而,过量的这些重金属具有有害作用。像其他生物一样,植物具有多种排毒机制来抵抗重金属的有害影响。这些包括通过菌根结合限制重金属,与植物细胞壁和根系分泌物结合,质膜中的金属外流,植物螯合素和金属硫蛋白的金属螯合以及液泡内的区室化。植物修复是一项新兴技术,利用植物及其相关的根际微生物从受污染的地点清除污染物。该技术便宜,高效且环保。这项审查侧重于植物对耐受重金属胁迫所必需的细胞和分子适应性。

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