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厌氧生物去除铀(VI)和铬(VI):微生物群落结构的比较。

Anaerobic bio-removal of uranium (VI) and chromium (VI): comparison of microbial community structure.

机构信息

Centro de Ciências do Mar, Universidade do Algarve, Campus de Gambelas, 8005-139 Faro, Portugal.

出版信息

J Hazard Mater. 2010 Apr 15;176(1-3):1065-72. doi: 10.1016/j.jhazmat.2009.11.149. Epub 2009 Dec 4.

Abstract

Several microbial communities, obtained from uranium contaminated and non-contaminated samples, were investigated for their ability to remove uranium (VI) and the cultures capable for this removal were further assessed on their efficiency for chromium (VI) removal. The highest efficiency for removal of both metals was observed on a consortium from a non-contaminated soil collected in Monchique thermal place, which was capable to remove 91% of 22 mg L(-1) U(VI) and 99% of 13 mg L(-1) Cr(VI). This study revealed that uranium (VI) removing communities have also ability to remove chromium (VI), but when uranium (VI) was replaced by chromium (VI) several differences in the structure of all bacterial communities were observed. TGGE and phylogenetic analysis of 16S rRNA gene showed that the uranium (VI) removing bacterial consortia are mainly composed by members of Rhodocyclaceae family and Clostridium genus. On the other hand, bacteria from Enterobacteriaceae family were detected in the community with ability for chromium (VI) removal. The existence of members of Enterobacteriaceae and Rhodocyclaceae families never reported as chromium or uranium removing bacteria, respectively, is also a relevant finding, encouraging the exploitation of microorganisms with new abilities that can be useful for bioremediation.

摘要

从铀污染和未污染的样品中获得了几个微生物群落,研究了它们去除铀(VI)的能力,并且对能够去除铀(VI)的培养物进一步评估了它们去除铬(VI)的效率。从蒙奇克热地采集的未污染土壤中的一个 consortium 对两种金属的去除效率最高,能够去除 22 mg L(-1) U(VI) 的 91%和 13 mg L(-1) Cr(VI) 的 99%。这项研究表明,去除铀(VI)的群落也有能力去除铬(VI),但当用铬(VI)替代铀(VI)时,所有细菌群落的结构都有几个差异。TGGE 和 16S rRNA 基因的系统发育分析表明,去除铀(VI)的细菌群落主要由 Rhodocyclaceae 科和 Clostridium 属的成员组成。另一方面,在具有去除铬(VI)能力的群落中检测到了肠杆菌科的细菌。肠杆菌科和 Rhodocyclaceae 科的成员分别从未被报道为铬或铀去除菌,它们的存在也是一个相关的发现,这鼓励开发具有新能力的微生物,这些微生物可用于生物修复。

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