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首页> 外文期刊>Canadian journal of microbiology >Microbial community structure and trichloroethylene degradation in groundwater.
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Microbial community structure and trichloroethylene degradation in groundwater.

机译:地下水中微生物群落结构和三氯乙烯降解。

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Trichloroethylene (TCE) is a prevalent contaminant of groundwater that can be cometabolically degraded by indigenous microbes. Groundwater contaminated with TCE from a US Department of Energy site in Ohio was used to characterize the site-specific impact of phenol on the indigenous bacterial community for use as a possible remedial strategy. Incubations of 14C-TCE-spiked groundwater amended with phenol showed increased TCE mineralization compared with unamended groundwater. Community structure was determined using DNA directly extracted from groundwater samples. This DNA was then analyzed by amplified ribosomal DNA restriction analysis. Unique restriction fragment length polymorphisms defined operational taxonomic units that were sequenced to determine phylogeny. DNA sequence data indicated that known TCE-degrading bacteria including relatives of Variovorax and Burkholderia were present in site water. Diversity of the amplified microbial rDNA clone library was lower in phenol-amended communities than in unamended groundwater (i.e., having Shannon–Weaver diversity indices of 2.0 and 2.2, respectively). Microbial activity was higher in phenol-amended ground water as determined by measuring the reduction of 2-(p-iodophenyl)-3(p-nitrophenyl)-5-phenyl tetrazolium chloride. Thus phenol amendments to groundwater correlated with increased TCE mineralization, a decrease in diversity of the amplified microbial rDNA clone library, and increased microbial activity.
机译:三氯乙烯(TCE)是一种常见的地下水污染物,可被原生微生物通过代谢分解。来自美国能源部位于俄亥俄州的站点受到三氯乙烯(TCE)污染的地下水用于表征苯酚对本地细菌群落的站点特定影响,以作为可能的补救策略。与未修正的地下水相比,掺有苯酚的14C-TCE加标地下水的温育显示出TCE矿化增加。使用直接从地下水样品中提取的DNA确定群落结构。然后通过扩增的核糖体DNA限制性酶切分析来分析该DNA。独特的限制性片段长度多态性定义了可操作的生物分类单位,可对其进行测序以确定系统发育。 DNA序列数据表明,现场水中存在已知的降解TCE的细菌,包括Variovorax和Burkholderia的亲属。在苯酚改良的社区中,扩增的微生物rDNA克隆文库的多样性要比未经修正的地下水低(即,香农-韦弗多样性指数分别为2.0和2.2)。通过测量2-(对碘苯基)-3(对硝基苯基)-5-苯基四唑氯化物的还原测定,在苯酚改性的地下水中微生物活性较高。因此,对地下水的苯酚改良剂与TCE矿化增加,扩增的微生物rDNA克隆文库多样性降低和微生物活性增加相关。

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