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Microbial Transformations of Selenium Species of Relevance to Bioremediation

机译:硒与生物修复相关的微生物转化

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Selenium species, particularly the oxyanions selenite (SeO_(3)~(2?)) and selenate (SeO_(4)~(2?)), are significant pollutants in the environment that leach from rocks and are released by anthropogenic activities. Selenium is also an essential micronutrient for organisms across the tree of life, including microorganisms and human beings, particularly because of its presence in the 21st genetically encoded amino acid, selenocysteine. Environmental microorganisms are known to be capable of a range of transformations of selenium species, including reduction, methylation, oxidation, and demethylation. Assimilatory reduction of selenium species is necessary for the synthesis of selenoproteins. Dissimilatory reduction of selenate is known to support the anaerobic respiration of a number of microorganisms, and the dissimilatory reduction of soluble selenate and selenite to nanoparticulate elemental selenium greatly reduces the toxicity and bioavailability of selenium and has a major role in bioremediation and potentially in the production of selenium nanospheres for technological applications. Also, microbial methylation after reduction of Se oxyanions is another potentially effective detoxification process if limitations with low reaction rates and capture of the volatile methylated selenium species can be overcome. This review discusses microbial transformations of different forms of Se in an environmental context, with special emphasis on bioremediation of Se pollution.
机译:硒物种,特别是氧阴离子亚硒酸盐(SeO_(3)〜(2?))和硒酸盐(SeO_(4)〜(2?))是环境中从岩石中浸出并通过人为活动释放的重要污染物。硒还是整个生命树上的生物(包括微生物和人类)必不可少的微量营养素,尤其是因为它存在于21种遗传编码的氨基酸硒代半胱氨酸中。已知环境微生物能够进行多种硒物种的转化,包括还原,甲基化,氧化和去甲基化。硒物种的同化还原对于硒蛋白的合成是必需的。众所周知,硒酸盐的异化还原可支持多种微生物的厌氧呼吸,可溶性硒酸盐和亚硒酸盐异化还原成纳米颗粒元素硒会大大降低硒的毒性和生物利用度,并且在生物修复和生产中具有重要作用硒纳米球的技术应用。同样,如果可以克服低反应速率和捕获挥发性甲基化硒物质的局限性,则还原含氧Se阴离子后的微生物甲基化是另一个潜在的有效解毒方法。这篇综述讨论了环境中不同形式的硒的微生物转化,特别着重于硒污染的生物修复。

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