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Effect of benzene and ethylbenzene on the transcription of methyl-tert-butyl ether degradation genes of Methylibium petroleiphilum PM1

机译:苯和乙苯对石脑油PM1甲基叔丁基醚降解基因转录的影响

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Methyl-tert-butyl ether (MTBE) and its degradation by-product, tert-butyl alcohol (TBA), are widespread contaminants detected frequently in groundwater in California. Since MTBE was used as a fuel oxygenate for almost two decades, leaking underground fuel storage tanks are an important source of contamination. Gasoline components such as BTEX (benzene, toluene, ethylbenzene and xylenes) are often present in mixtures with MTBE and TBA. Investigations of interactions between BTEX and MTBE degradation have not yielded consistent trends, and the molecular mechanisms of BTEX compounds’ impact on MTBE degradation are not well understood. We investigated trends in transcription of biodegradation genes in the MTBE-degrading bacterium, Methylibium petroleiphilum PM1 upon exposure to MTBE, TBA, ethylbenzene and benzene as individual compounds or in mixtures. We designed real-time quantitative PCR assays to target functional genes of strain PM1 and provide evidence for induction of genes mdpA (MTBE monooxygenase), mdpJ (TBA hydroxylase) and bmoA (benzene monooxygenase) in response to MTBE, TBA and benzene, respectively. Delayed induction of mdpA and mdpJ transcription occurred with mixtures of benzene and MTBE or TBA, respectively. bmoA transcription was similar in the presence of MTBE or TBA with benzene as in their absence. Our results also indicate that ethylbenzene, previously proposed as an inhibitor of MTBE degradation in some bacteria, inhibits transcription of mdpA, mdpJ and bmoAgenes in strain PM1.
机译:甲基叔丁基醚(MTBE)及其降解副产物叔丁醇(TBA)是加利福尼亚州地下水中经常发现的广泛污染物。自从将MTBE用作燃料氧化物以来,已经有将近20年的时间了,泄漏的地下燃料储罐是重要的污染源。汽油成分(例如BTEX)(苯,甲苯,乙苯和二甲苯)通常与MTBE和TBA混合存在。关于BTEX与MTBE降解之间相互作用的研究尚未得出一致的趋势,并且对BTEX化合物对MTBE降解的影响的分子机理还不清楚。我们研究了MTBE降解细菌,甲基化石油棉PM1中的生物降解基因转录的趋势,这些细菌暴露于MTBE,TBA,乙苯和苯作为单独化合物或混合物形式暴露。我们设计了针对菌株PM1的功能基因的实时定量PCR检测方法,并为分别响应MTBE,TBA和苯的mdpA(MTBE单加氧酶),mdpJ(TBA羟化酶)和bmoA(苯单加氧酶)基因的诱导提供了证据。苯和MTBE或TBA的混合物分别发生了mdpA和mdpJ转录的延迟诱导。在有苯的MTBE或TBA存在下,bmoA转录与在不存在下的相似。我们的研究结果还表明,乙苯以前被提议作为某些细菌中MTBE降解的抑制剂,可抑制PM1菌株中mdpA,mdpJ和bmoAgenes的转录。

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