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Approaches for enhanced phytoextraction of heavy metals

机译:增强重金属植物提取的方法

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The contamination of the environment with toxic metals has become a worldwide problem. Metal toxicity affects crop yields, soil biomass and fertility. Soils polluted with heavy metals pose a serious health hazard to humans as well as plants and animals, and often requires soil remediation practices. Phytoextraction refers to the uptake of contaminants from soil or water by plant roots and their trans location to any harvestable plant part. Phytoextraction has the potential to remove contaminants and promote long-term cleanup of soil or wastewater. The success of phytoextraction as a potential envi ronmental cleanup technology depends on factors like metal availability for uptake, as well as plants ability to absorb and accumulate metals in aerial parts. Efforts are ongoing to understand the genetics and biochemistry of metal uptake, transport and storage in hyperaccumulator plants so as to be able to develop transgenic plants with improved phytoremediation capability. Many plant species are being investigated to determine their usefulness for phytoextraction, especially high biomass crops. The present review aims to give an updated version of information available with respect to metal tolerance and accumulation mechanisms in plants, as well as on the environmental and genetic factors affecting heavy metal uptake. The genetic tools of classical breeding and genetic engineering have opened the door to creation of 'remediation' cultivars. An overview is presented on the possible strategies for developing novel genotypes with increased metal accumulation and tolerance to toxicity.
机译:有毒金属污染环境已成为世界性问题。金属毒性影响作物的产量,土壤生物量和肥力。重金属污染的土壤对人类以及动植物均构成严重的健康危害,并且经常需要土壤修复措施。植物提取是指植物根部从土壤或水中吸收污染物并将其转移到任何可收获的植物部分。植物提取具有去除污染物和促进土壤或废水长期净化的潜力。植物提取技术作为一种潜在的环境净化技术的成功取决于诸如摄取金属的有效性以及植物吸收和积累空中零件中金属的能力等因素。正在努力了解高蓄积植物中金属吸收,转运和储存的遗传学和生物化学,以便能够开发出具有改善的植物修复能力的转基因植物。正在研究许多植物物种,以确定其对植物提取的有用性,特别是高生物量的作物。本综述旨在提供有关植物对金属的耐受性和积累机制以及影响重金属吸收的环境和遗传因素的最新信息。古典育种和基因工程的遗传工具为创造“补救”品种打开了大门。概述了开发具有增加的金属积累和对毒性的耐受性的新基因型的可能策略。

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