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Populations Implicated in Anaerobic Reductive Dechlorination of 1,2-Dichloropropane in Highly Enriched Bacterial Communities†

机译:高度富集的细菌群落中涉及1,2-二氯丙烷厌氧还原脱氯的种群†

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摘要

1,2-Dichloropropane (1,2-D), a widespread groundwater contaminant, can be reductively dechlorinated to propene by anaerobic bacteria. To shed light on the populations involved in the detoxification process, a comprehensive 16S rRNA gene-based bacterial community analysis of two enrichment cultures derived from geographically distinct locations was performed. Analysis of terminal restriction fragments, amplicons obtained with dechlorinator-specific PCR primers, and enumeration with quantitative real-time PCR as well as screening clone libraries all implied that Dehalococcoides populations were involved in 1,2-D dechlorination in both enrichment cultures. Physiological traits (e.g., dechlorination in the presence of ampicillin and a requirement for hydrogen as the electron donor) supported the involvement of Dehalococcoides populations in the dechlorination process. These findings expand the spectrum of chloroorganic compounds used by Dehalococcoides species as growth-supporting electron acceptors. The combined molecular approach allowed a comparison between different 16S rRNA gene-based approaches for the detection of Dehalococcoides populations.
机译:1,2-二氯丙烷(1,2-D)是一种广泛的地下水污染物,可通过厌氧细菌还原性脱氯为丙烯。为了阐明排毒过程中涉及的人群,对源自地理上不同位置的两种富集培养物进行了基于16S rRNA基因的全面细菌群落分析。末端限制性片段的分析,用脱氯剂特异性PCR引物获得的扩增子以及定量实时PCR的计数以及筛选克隆文库都暗示在两种富集培养物中,Dehaloccocoides种群均参与了1,2-D脱氯。生理特性(例如,在氨苄青霉素存在下进行脱氯和需要氢作为电子供体)支持了Dehaloccocoides种群参与脱氯过程。这些发现扩大了Dehalococcoides物种用作生长支持电子受体的氯有机化合物的范围。结合分子方法可以比较不同的基于16S rRNA基因的方法检测Dehalococcoides种群。

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