首页> 外文OA文献 >Dynamics of an Oligotrophic Bacterial Aquifer Community during Contact with a Groundwater Plume Contaminated with Benzene, Toluene, Ethylbenzene, and Xylenes: an In Situ Mesocosm Study{dagger}
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Dynamics of an Oligotrophic Bacterial Aquifer Community during Contact with a Groundwater Plume Contaminated with Benzene, Toluene, Ethylbenzene, and Xylenes: an In Situ Mesocosm Study{dagger}

机译:接触到苯,甲苯,乙苯和二甲苯污染的地下水羽中的营养缺陷型细菌含水层群落动态:原位介观研究{dagger}

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摘要

An in situ mesocosm system was designed to monitor the in situ dynamics of the microbial community in polluted aquifers. The mesocosm system consists of a permeable membrane pocket filled with aquifer material and placed within a polypropylene holder, which is inserted below groundwater level in a monitoring well. After a specific time period, the microcosm is recovered from the well and its bacterial community is analyzed. Using this system, we examined the effect of benzene, toluene, ethylbenzene, and xylene (BTEX) contamination on the response of an aquifer bacterial community by denaturing gradient gel electrophoresis analysis of PCR-amplified 16S rRNA genes and PCR detection of BTEX degradation genes. Mesocosms were filled with nonsterile or sterile aquifer material derived from an uncontaminated area and positioned in a well located in either the uncontaminated area or a nearby contaminated area. In the contaminated area, the bacterial community in the microcosms rapidly evolved into a stable community identical to that in the adjacent aquifer but different from that in the uncontaminated area. At the contaminated location, bacteria with tmoA- and xylM/xylE1-like BTEX catabolic genotypes colonized the aquifer, while at the uncontaminated location only tmoA-like genotypes were detected. The communities in the mesocosms and in the aquifer adjacent to the wells in the contaminated area consisted mainly of Proteobacteria. At the uncontaminated location, Actinobacteria and Proteobacteria were found. Our results indicate that communities with long-term stability in their structures follow the contamination plume and rapidly colonize downstream areas upon contamination
机译:设计了一个原位介观系统来监测受污染含水层中微生物群落的原位动态。中观宇宙系统由一个充满了含水层材料的可渗透膜袋组成,该膜袋被放置在一个聚丙烯支架中,该聚丙烯支架被插入到地下水位以下的监测井中。在特定时间段后,从孔中回收微观世界,并分析其细菌群落。使用该系统,我们通过PCR扩增的16S rRNA基因的变性梯度凝胶电泳分析和BTEX降解基因的PCR检测,检查了苯,甲苯,乙苯和二甲苯(BTEX)污染对含水层细菌群落响应的影响。中膜填充有来自未污染区域的非无菌或无菌含水层材料,并位于未污染区域或附近污染区域中的井中。在受污染的地区,微观世界中的细菌群落迅速演变成一个稳定的群落,与相邻含水层的细菌群落相同,但与未受污染的地区不同。在受污染的位置,带有tmoA和xylM / xylE1样BTEX分解代谢基因型的细菌定居在含水层中,而在未受污染的位置,仅检测到tmoA样基因型。污染区中邻近井的中尺度和含水层中的群落主要由变形杆菌组成。在未受污染的地方,发现了放线菌和变形杆菌。我们的结果表明,在其结构中具有长期稳定性的社区会跟随污染羽流,并在受到污染时迅速在下游地区定居。

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