首页> 外文期刊>Applied and Environmental Microbiology >Discovery of a trans-dichloroethene-respiring Dehalogenimonas species in the 1,1,2,2-tetrachloroethane-dechlorinating WBC-2 consortium
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Discovery of a trans-dichloroethene-respiring Dehalogenimonas species in the 1,1,2,2-tetrachloroethane-dechlorinating WBC-2 consortium

机译:在 1,1,2,2-四氯乙烷脱氯 WBC-2 联盟中发现一种反式二氯乙烯呼吸脱卤基亚胺菌属

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摘要

The WBC-2 consortium is an organohalide-respiring anaerobic microbial enrichment culture capable of dechlorinating 1,1,2,2- tetrachloroethane (TeCA) to ethene. In the WBC-2 culture, TeCA is first transformed to trans-dichloroethene (tDCE) by dichloroelimination; tDCE is subsequently transformed to vinyl chloride (VC) and then to ethene by hydrogenolysis. Analysis of 16S rRNA gene clone libraries from culture DNA revealed sequences from three putative dechlorinating organisms belonging to Dehalococcoides, Dehalobacter, and Dehalogenimonas genera. Quantitative PCR primers were designed for each of these sequences, and their abundance was quantified in enrichment cultures over time. These data revealed that complete dechlorination of TeCA to ethene involves all three organisms. Dehalobacter spp. grew during the dihaloelimination of TeCA to tDCE, while Dehalococcoides and Dehalogenimonas spp. grew during hydrogenolysis of tDCE to ethene. This is the first time a genus other than Dehalococcoides has been implicate d in dechlorination of tDCE to VC.
机译:WBC-2 联盟是一种有机卤素呼吸厌氧微生物富集培养物,能够将 1,1,2,2-四氯乙烷 (TeCA) 脱氯为乙烯。在 WBC-2 培养物中,TeCA 首先通过二氯消除转化为反式二氯乙烯 (tDCE);tDCE随后转化为氯乙烯(VC),然后通过氢解转化为乙烯。对培养物DNA中16S rRNA基因克隆文库的分析揭示了来自脱卤球菌属、脱卤杆菌属和脱卤菌属的三种假定脱氯生物的序列。针对这些序列中的每一个都设计了定量PCR引物,并随着时间的推移在富集培养物中量化了它们的丰度。这些数据表明,TeCA完全脱氯为乙烯涉及所有三种生物。脱卤杆菌属在TeCA向tDCE的二卤消除过程中生长,而脱卤球菌属和脱卤菌属在tDCE氢解为乙烯的过程中生长。这是除脱卤球菌属以外的属首次参与tDCE向VC的脱氯化。

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