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Quantitative and functional dynamics of Dehalococcoides spp. and its tceA and vcrA genes under TCE exposure

机译:Dehalococcoides spp的数量和功能动力学。暴露下TCE及其tceA和vcrA基因

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摘要

This study aimed at monitoring the dynamics of phylogenetic and catabolic genes of a dechlorinating enrichment culture before, during, and after complete dechlorination of chlorinated compounds. More specifically, the effect of 40 mu M trichloroethene (TCE) and 5.6 mM lactate on the gene abundance and activity of an enrichment culture was investigated for 40 days. Although tceA and vcrA gene copy numbers were relatively stable in DNA extracts over time, tceA and vcrA mRNA abundances were up-regulated from undetectable levels to 2.96 x and 6.33 x 10(4) transcripts/mL, respectively, only after exposure to TCE and lactate. While tceA gene transcripts decreased over time with TCE dechlorination, the vcrA gene was expressed steadily even when the concentration of vinyl chloride was at undetectable levels. In addition, ratios between catabolic and phylogenetic genes indicated that tceA and vcrA gene carrying organisms dechlorinated TCE and its produced daughter products, while vcrA gene was mainly responsible for the dechlorination of the lower VC concentrations in a later stage of degradation.
机译:这项研究旨在监测氯化化合物完全脱氯之前,之中和之后的脱氯富集培养的系统发育和分解代谢基因的动态。更具体地,研究了40μM三氯乙烯(TCE)和5.6mM乳酸盐对基因丰度和富集培养物活性的影响40天。尽管tceA和vcrA基因拷贝数在DNA提取物中随时间推移相对稳定,但仅在暴露于TCE和TCE后,tceA和vcrA mRNA的丰度分别从不可检测的水平上调至2.96 x和6.33 x 10(4)转录本/ mL。乳酸。尽管TCE脱氯后tceA基因转录物随时间减少,但即使氯乙烯浓度处于无法检测的水平,vcrA基因仍稳定表达。此外,分解代谢基因和系统发生基因之间的比率表明,携带tceA和vcrA基因的生物对TCE及其产生的子产物进行了脱氯处理,而vcrA基因在降解的后期主要负责降低较低的VC浓度。

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