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四氯乙烯脱氯对甲烷八叠球菌属菌株DCM消耗产甲烷底物的依赖性。

Dependence of tetrachloroethylene dechlorination on methanogenic substrate consumption by Methanosarcina sp. strain DCM.

作者信息

Fathepure B Z, Boyd S A

机构信息

Department of Crop and Soil Sciences, Michigan State University, East Lansing 48824-1325.

出版信息

Appl Environ Microbiol. 1988 Dec;54(12):2976-80. doi: 10.1128/aem.54.12.2976-2980.1988.

Abstract

Tetrachloroethylene (perchloroethylene, PCE) is a suspected carcinogen and a common groundwater contaminant. Although PCE is highly resistant to aerobic biodegradation, it is subject to reductive dechlorination reactions in a variety of anaerobic habitats. The data presented here clearly establish that axenic cultures of Methanosarcina sp. strain DCM dechlorinate PCE to trichloroethylene and that this is a biological reaction. Growth on methanol, acetate, methylamine, and trimethylamine resulted in PCE dechlorination. The reductive dechlorination of PCE occurred only during methanogenesis, and no dechlorination was noted when CH4 production ceased. There was a clear dependence of the extent of PCE dechlorination on the amount of methanogenic substrate (methanol) consumed. The amount of trichloroethylene formed per millimole of CH4 formed remained essentially constant for a 20-fold range of methanol concentrations and for growth on acetate, methylamine, and trimethylamine. These results suggest that the reducing equivalents for PCE dechlorination are derived from CH4 biosynthesis and that the extent of chloroethylene dechlorination can be enhanced by stimulating methanogenesis. It is proposed that electrons transferred during methanogenesis are diverted to PCE by a reduced electron carrier involved in methane formation.

摘要

四氯乙烯(全氯乙烯,PCE)是一种疑似致癌物,也是常见的地下水污染物。尽管PCE对好氧生物降解具有高度抗性,但在多种厌氧生境中会发生还原脱氯反应。此处呈现的数据清楚地表明,甲烷八叠球菌属菌株DCM的无菌培养物可将PCE脱氯为三氯乙烯,且这是一种生物反应。以甲醇、乙酸盐、甲胺和三甲胺为底物生长时会导致PCE脱氯。PCE的还原脱氯仅在产甲烷过程中发生,当甲烷产生停止时未观察到脱氯现象。PCE脱氯程度明显依赖于消耗的产甲烷底物(甲醇)量。在20倍范围内的甲醇浓度以及以乙酸盐、甲胺和三甲胺为底物生长时,每形成一毫摩尔甲烷所形成的三氯乙烯量基本保持恒定。这些结果表明,PCE脱氯的还原当量源自甲烷生物合成,且通过刺激产甲烷作用可提高氯乙烯脱氯程度。有人提出,产甲烷过程中转移的电子通过参与甲烷形成的还原电子载体转向PCE。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3daf/204414/5ddbfb29bd8f/aem00117-0104-a.jpg

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