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砷转化微生物及其在生物采矿过程中的作用。

Arsenic-transforming microbes and their role in biomining processes.

机构信息

Laboratory of Environmental Pollution Analysis, Faculty of Biology, University of Warsaw, Miecznikowa 1, 02-096, Warsaw, Poland,

出版信息

Environ Sci Pollut Res Int. 2013 Nov;20(11):7728-39. doi: 10.1007/s11356-012-1449-0. Epub 2013 Jan 9.

Abstract

It is well known that microorganisms can dissolve different minerals and use them as sources of nutrients and energy. The majority of rock minerals are rich in vital elements (e.g., P, Fe, S, Mg and Mo), but some may also contain toxic metals or metalloids, like arsenic. The toxicity of arsenic is disclosed after the dissolution of the mineral, which raises two important questions: (1) why do microorganisms dissolve arsenic-bearing minerals and release this metal into the environment in a toxic (also for themselves) form, and (2) How do these microorganisms cope with this toxic element? In this review, we summarize current knowledge about arsenic-transforming microbes and their role in biomining processes. Special consideration is given to studies that have increased our understanding of how microbial activities are linked to the biogeochemistry of arsenic, by examining (1) where and in which forms arsenic occurs in the mining environment, (2) microbial activity in the context of arsenic mineral dissolution and the mechanisms of arsenic resistance, (3) the minerals used and technologies applied in the biomining of arsenic, and (4) how microbes can be used to clean up post-mining environments.

摘要

众所周知,微生物可以溶解不同的矿物质,并将其作为营养物质和能量的来源。大多数岩石矿物质富含生命元素(例如 P、Fe、S、Mg 和 Mo),但有些矿物质也可能含有有毒金属或类金属,如砷。在矿物溶解后,砷的毒性才会显现出来,这引发了两个重要问题:(1)为什么微生物会溶解含砷矿物,并以有毒(对它们自身也有毒)的形式将这种金属释放到环境中;(2)这些微生物如何应对这种有毒元素?在这篇综述中,我们总结了目前关于砷转化微生物及其在生物采矿过程中作用的知识。特别考虑了那些通过以下方面增加了我们对微生物活动与砷生物地球化学之间关系的理解的研究:(1)砷在采矿环境中以何种形式存在于何处;(2)在砷矿物溶解的背景下的微生物活性以及砷抗性的机制;(3)生物提取砷所使用的矿物质和应用的技术;以及(4)如何利用微生物来清理采矿后的环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54d9/3824281/4a16d0b26eb6/11356_2012_1449_Fig1_HTML.jpg

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