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Microorganisms in heavy metal bioremediation: strategies for applying microbial-community engineering to remediate soils

机译:重金属生物修复中的微生物:应用微生物群落工程修复土壤的策略

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The remediation of heavy-metal-contaminated soils is essential as heavy metals persist and do not degrade in the environment. Remediating heavy-metal-contaminated soils requires metals to be mobilized for extraction whilst, at the same time, employing strategies to avoid mobilized metals leaching into ground-water or aquatic systems. Phytoextraction is a bioremediation strategy that extracts heavy metals from soils by sequestration in plant tissues and is currently the predominant bioremediation strategy investigated for remediating heavy-metal-contaminated soils. Although the efficiency of phytoextraction remains a limiting feature of the technology, there are numerous reports that soil microorganisms can improve rates of heavy metal extraction. This review highlights the unique challenges faced when remediating heavy-metal-contaminated soils as compared to static aquatic systems and suggests new strategies for using microorganisms to improve phytoextraction. We compare how microorganisms are used in soil bioremediation (i.e. phytoextraction) and water bioremediation processes, discussing how the engineering of microbial communities, used in water remediation, could be applied to phytoextraction. We briefly outline possible approaches for the engineering of soil communities to improve phytoextraction either by mobilizing metals in the rhizosphere of the plant or by promoting plant growth to increase the root-surface area available for uptake of heavy metals. We highlight the technological advances that make this research direction possible and how these technologies could be employed in future research.
机译:由于重金属持续存在并且不会在环境中降解,因此对重金属污染的土壤进行修复至关重要。修复重金属污染的土壤需要动员金属进行提取,与此同时,应采取策略避免动员的金属浸入地下水或水生系统中。植物提取是一种生物修复策略,可通过螯合在植物组织中从土壤中提取重金属,并且目前是研究用于修复重金属污染土壤的主要生物修复策略。尽管植物提取的效率仍然是该技术的局限性,但有许多报道表明土壤微生物可以提高重金属的提取率。这篇综述强调了与静态水生系统相比,修复重金属污染土壤时面临的独特挑战,并提出了利用微生物改善植物提取的新策略。我们比较了微生物如何在土壤生物修复(即植物提取)和水生物修复过程中使用,讨论了在水修复中使用的微生物群落工程如何应用于植物提取。我们简要概述了通过改良植物根际中的金属或促进植物生长以增加可吸收重金属的根表面积来改善植物提取的土壤群落的可能方法。我们重点介绍了使该研究方向成为可能的技术进步,以及如何将这些技术用于未来的研究。

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