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偕二氯乙烷和氯乙烯的反式-1,2-二氯乙烯和氯乙烯还原脱氯的稳定碳同位素富集因子。

Stable carbon isotope enrichment factors for cis-1,2-dichloroethene and vinyl chloride reductive dechlorination by Dehalococcoides.

机构信息

School of Civil and Environmental Engineering, Georgia Institute of Technology, 311 Ferst Drive, Atlanta, Georgia 30332, United States.

出版信息

Environ Sci Technol. 2011 Apr 1;45(7):2951-7. doi: 10.1021/es103728q. Epub 2011 Mar 10.

Abstract

Compound-specific stable isotope analysis (CSIA) is a promising tool for monitoring in situ microbial activity, and enrichment factors (ε values) determined using CSIA can be employed to estimate compound transformation. Although ε values for some dechlorination reactions catalyzed by Dehalococcoides (Dhc) have been reported, reproducibility between independent experiments, variability between different Dhc strains, and congruency between pure and mixed cultures are unknown. In experiments conducted with pure cultures of Dhc sp. strain BAV1, ε values for 1,1-DCE, cis-DCE, trans-DCE, and VC were -5.1, -14.9, -20.8, and -23.2‰, respectively. The ε value for 1,1-DCE dechlorination was 48.9% higher than the value reported in a previous study, but ε values for other chlorinated ethenes were equal between independent experiments. For the dechlorination of cis-DCE and VC by Dhc strains BAV1, FL2, GT, and VS, average ε values were -18.4 and -23.2‰, respectively. cis-DCE and VC ε values determined in pure Dhc cultures with different reductive dehalogenase genes (e.g., vcrA vs bvcA) varied by less than 36.8 and 8.3%, respectively. In the BDI consortium, ε values for cis-DCE and VC dechlorination were -25.3‰ and -19.9‰, 31.6% higher and 15.3% lower, respectively, compared to the average ε value for Dhc pure cultures. As cis-DCE and VC ε values are all within the same order-of-magnitude and fractionation is always measured during Dhc dechlorination, CSIA may be a valuable approach for monitoring in situ cis-DCE and VC reductive dechlorination.

摘要

化合物稳定同位素比值分析(CSIA)是一种监测原位微生物活性的有前途的工具,使用 CSIA 确定的富集因子(ε 值)可用于估计化合物转化。尽管已经报道了 Dehalococcoides(Dhc)催化的一些脱氯反应的 ε 值,但在独立实验之间的重现性、不同 Dhc 菌株之间的变异性以及纯培养物和混合培养物之间的一致性尚不清楚。在使用 Dhc sp. strain BAV1 的纯培养物进行的实验中,1,1-DCE、顺式-DCE、反式-DCE 和 VC 的 ε 值分别为-5.1、-14.9、-20.8 和-23.2‰。1,1-DCE 脱氯的 ε 值比之前研究报道的值高 48.9%,但其他氯代乙稀的 ε 值在独立实验之间是相等的。对于 Dhc 菌株 BAV1、FL2、GT 和 VS 对顺式-DCE 和 VC 的脱氯反应,平均 ε 值分别为-18.4 和-23.2‰。具有不同还原脱卤酶基因(例如 vcrA 与 bvcA)的纯 Dhc 培养物中测定的 cis-DCE 和 VC ε 值相差小于 36.8%和 8.3%。在 BDI 联合体中,顺式-DCE 和 VC 的脱氯 ε 值分别为-25.3‰和-19.9‰,比 Dhc 纯培养物的平均 ε 值分别高 31.6%和低 15.3%。由于 cis-DCE 和 VC 的 ε 值都在同一数量级内,并且在 Dhc 脱氯过程中总是进行分馏,因此 CSIA 可能是监测原位 cis-DCE 和 VC 还原脱氯的一种有价值的方法。

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