首页> 外文期刊>Environmental Science & Technology >Transformation and Carbon Isotope Fractionation of Tetra- and Trichloroethene to Trans-Dichloroethene by Dehalococcoides sp.Strain CBDB1
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Transformation and Carbon Isotope Fractionation of Tetra- and Trichloroethene to Trans-Dichloroethene by Dehalococcoides sp.Strain CBDB1

机译:Dehalococcoides sp.CBDB1菌株将四氯乙烯和三氯乙烯转化和碳同位素分馏为反式二氯乙烯

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摘要

Dehalococcoides sp. strain CBDB1 reductively dechlorinated perchloroethene (PCE) and trichloroethene (TCE) to predominantly trans- 1,2-dichloroethene (frans-DCE). Cell counting by direct microscopy showed that strain CBDB1 used PCE and TCE as electron acceptors for respiratory growth obtaining a growth yield of 3.9 X 10 cells per mol of chloride released in both cases. PCE and TCE were dechlorinated to trans- and cis-DCE at an average constant ratio of 3.4 (±0.2):I, which is consistent with the ratios found in several trans-DCE-producing sediments and soils containing uncultured Dehalococcoides-like species. Significant carbon isotope fractionation was observed during PCE and TCE reductive dehalogenation. The enrichment factor of TCE (eC = -11.2) was within the range of previously reported values for TCE dechlorination by other Dehalococcoides species although the tceA gene responsible for ethene generation in the latter cultures was absent in strain CBDB1. On the contrary, the enrichment factor of PCE (eC = -1.6) was 3.8-times lower than that obtained for Dehalococcoides sp. strain 195 although both strains shared a high similarity in die pceA gene responsible for PCE dechlorination in strain 195. In addition, the product-related enrichment factors for TCE dehalogenation were calculated based on product isotope signature of the two accumulated products cis-DCE (εC tce→cis-DCE = -11.0) and trans-DCE. (εC_(TCE→trans-DCE) = -15.9). These results are of particular interest since strain CBDB1 constitutes, together with the recent isolated strain MB, the unique Dehalococcoidas species unable to dechlorinate PCE and TCE beyond DCE.
机译:Dehalococcoides sp。菌株CBDB1将全氯乙烯(PCE)和三氯乙烯(TCE)还原为主要为反式1,2-二氯乙烯(frans-DCE)。通过直接显微镜下的细胞计数显示,菌株CBDB1使用PCE和TCE作为呼吸生长的电子受体,在两种情况下每摩尔释放的氯化物均获得3.9 X 10个细胞的生长量。 PCE和TCE以3.4(±0.2):I的平均恒定比率脱氯为反式和顺式DCE,这与在几种产生反DCE的沉积物和含有未经培养的Dehaloccocoides类物质的土壤中发现的比率一致。在PCE和TCE还原脱卤过程中观察到重要的碳同位素分级分离。 TCE的富集因子(eC = -11.2)在先前报道的其他Dehaloccocoides物种对TCE脱氯的值的范围内,尽管在CBDB1菌株中不存在负责乙烯生成的tceA基因。相反,PCE的富集因子(eC = -1.6)比Dehalococcoides sp。的富集因子低3.8倍。 195菌株,尽管这两个菌株在负责195菌株PCE脱氯的pceA基因中具有高度相似性。此外,基于两个累积产物顺式DCE(εC)的产物同位素特征计算了TCE脱卤的产物相关富集因子tce→顺式DCE = -11.0)和反式DCE。 (εC_(TCE→trans-DCE)= -15.9)。这些结果特别令人感兴趣,因为菌株CBDB1与最近分离的菌株MB一起构成了无法将DCE以外的PCE和TCE脱氯的独特的Dehalococcoidas菌种。

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  • 来源
    《Environmental Science & Technology》 |2011年第4期|p.1555-1562|共8页
  • 作者单位

    Department of Isotope Biogeochemistry, Helmholtz Centre for Environmental Research-UFZ, 04318 Leipzig, Germany;

    Department of Isotope Biogeochemistry, Helmholtz Centre for Environmental Research-UFZ, 04318 Leipzig, Germany;

    Department of Isotope Biogeochemistry, Helmholtz Centre for Environmental Research-UFZ, 04318 Leipzig, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-17 14:03:34

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