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Stable carbon isotope fractionation of chlorinated ethenes by a microbial consortium containing multiple dechlorinating genes

机译:通过含有多个脱氯基因的微生物联盟的氯化醚的稳定碳同位素分馏

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摘要

The study aimed to determine the possible contribution of specific growth conditions and community structures to variable carbon enrichment factors (epsilon-(carbon)) values for the degradation of chlorinated ethenes (CEs) by a bacterial consortium with multiple dechlorinating genes. epsilon-(carbon) values for trichloroethylene, cis-1,2-dichloroethylene, and vinyl chloride were -7.24% +/- 0.59%, - 14.6% +/- 1.71%, and -21.1% +/- 1.14%, respectively, during their degradation by a microbial consortium containing multiple dechlorinating genes including tceA and vcrA. The epsilon-(carbon) values of all CEs were not greatly affected by changes in growth conditions and community structures, which directly or indirectly affected reductive dechlorination of CEs by this consortium. Stability analysis provided evidence that the presence of multiple dechlorinating genes within a microbial consortium had little effect on carbon isotope fractionation, as long as the genes have definite, nonoverlapping functions.
机译:该研究旨在确定特异性生长条件和群落结构对可变碳富集因子(ε-(碳))的可能贡献,用于通过多种脱氯基因的细菌联盟降解氯化醚(CES)的值。三氯乙烯,顺式-1,2-二氯乙烯和氯乙烯的ε-(碳)值-7.24%+/- 0.59%, - 14.6%+/- 1.71%,分别为-21.1%+/- 1.14% ,在含有多种脱氯基因的微生物联盟的降解期间,包括TCEA和VCRA。所有CES的epsilon-(碳)值并没有受到生长条件和群落结构的变化的大大影响,这直接或间接地影响了该联盟的CES的还原脱氯化。稳定性分析提供了微生物联盟内部脱氯基因的证据表明,只要基因具有明确,非递送的功能,微生物联盟内的多种脱氯基因对碳同位素分馏几乎没有影响。

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