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砷与微生物:基因、分子机制及微生物砷生物修复的最新进展

Arsenic and Microorganisms: Genes, Molecular Mechanisms, and Recent Advances in Microbial Arsenic Bioremediation.

作者信息

William Vladimir U, Magpantay Hilbert D

机构信息

Department of Chemistry, De La Salle University, 2401 Taft Avenue, Manila 0922, Philippines.

出版信息

Microorganisms. 2023 Dec 30;12(1):74. doi: 10.3390/microorganisms12010074.

Abstract

Throughout history, cases of arsenic poisoning have been reported worldwide, and the highly toxic effects of arsenic to humans, plants, and animals are well documented. Continued anthropogenic activities related to arsenic contamination in soil and water, as well as its persistency and lethality, have allowed arsenic to remain a pollutant of high interest and concern. Constant scrutiny has eventually resulted in new and better techniques to mitigate it. Among these, microbial remediation has emerged as one of the most important due to its reliability, safety, and sustainability. Over the years, numerous microorganisms have been successfully shown to remove arsenic from various environmental matrices. This review provides an overview of the interactions between microorganisms and arsenic, the different mechanisms utilized by microorganisms to detoxify arsenic, as well as current trends in the field of microbial-based bioremediation of arsenic. While the potential of microbial bioremediation of arsenic is notable, further studies focusing on the field-scale applicability of this technology is warranted.

摘要

纵观历史,世界各地均有砷中毒病例的报道,砷对人类、植物和动物的高毒性影响也有充分记录。与土壤和水中砷污染相关的持续人为活动,以及砷的持久性和致死性,使得砷仍然是备受关注的污染物。持续的审查最终催生了新的、更好的缓解技术。其中,微生物修复因其可靠性、安全性和可持续性,已成为最重要的技术之一。多年来,众多微生物已被成功证明能从各种环境基质中去除砷。本综述概述了微生物与砷之间的相互作用、微生物用于砷解毒的不同机制,以及基于微生物的砷生物修复领域的当前趋势。虽然微生物对砷进行生物修复的潜力显著,但仍需进一步开展侧重于该技术在实地规模适用性的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8be0/10820871/71aa0e18d6e9/microorganisms-12-00074-g001.jpg

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