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Trichloroethylene Biodegradation by a Methane-Oxidizing Bacterium

机译:甲烷氧化细菌对三氯乙烯的生物降解

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Trichloroethylene (TCE), a common groundwater contaminant, is a suspected carcinogen that is highly resistant to aerobic biodegradation. An aerobic, methane-oxidizing bacterium was isolated that degrades TCE in pure culture at concentrations commonly observed in contaminated groundwater. Strain 46-1, a type I methanotrophic bacterium, degraded TCE if grown on methane or methanol, producing CO2 and water-soluble products. Gas chromatography and 14C radiotracer techniques were used to determine the rate, methane dependence, and mechanism of TCE biodegradation. TCE biodegradation by strain 46-1 appears to be a cometabolic process that occurs when the organism is actively metabolizing a suitable growth substrate such as methane or methanol. It is proposed that TCE biodegradation by methanotrophs occurs by formation of TCE epoxide, which breaks down spontaneously in water to form dichloroacetic and glyoxylic acids and one-carbon products.
机译:三氯乙烯(TCE)是一种常见的地下水污染物,是一种怀疑的致癌物质,对有氧生物降解具有很高的抵抗力。分离出一种需氧甲烷氧化细菌,该细菌可降解纯净培养物中的三氯乙酸,其浓度通常在受污染的地下水中观察到。 I型甲烷营养型菌株46-1如果在甲烷或甲醇上生长,则会降解TCE,从而产生CO2和水溶性产物。气相色谱和14 C放射性示踪剂技术用于确定速率,甲烷依赖性和TCE生物降解机理。当生物体积极代谢合适的生长底物(例如甲烷或甲醇)时,菌株46-1对TCE的生物降解似乎是一种代谢过程。有人提出,甲烷氧化菌对TCE的生物降解是通过形成TCE环氧化物来实现的,TCE环氧化物在水中自发分解,形成二氯乙酸和乙醛酸和一碳产物。

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