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Isolation and Characterization of a Mycobacterium Species Capable of Degrading Three- and Four-Ring Aromatic and Aliphatic Hydrocarbons

机译:能够降解三环和四环芳烃和脂肪烃的分枝杆菌种类的分离和表征

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摘要

Mycobacterium sp. strain CH1 was isolated from polycyclic aromatic hydrocarbon (PAH)-contaminated freshwater sediments and identified by analysis of 16S rDNA sequences. Strain CH1 was capable of mineralizing three- and four-ring PAHs including phenanthrene, pyrene, and fluoranthene. In addition, strain CH1 could utilize phenanthrene or pyrene as a sole carbon and energy source. A lag phase of at least 3 days was observed during pyrene mineralization. This lag phase decreased to less than 1 day when strain CH1 was grown in the presence of phenanthrene or fluoranthene. Strain CH1 also was capable of using a wide range of alkanes as sole carbon and energy sources. No DNA hybridization was detected with the nahAc gene probe, indicating that enzymes involved in PAH metabolism are not related to the well-characterized naphthalene dioxygenase gene. DNA hybridization was not detected when the alkB gene from Pseudomonas oleovorans was used under high-stringency conditions. However, there was slight but detectable hybridization under low-stringency conditions. This suggests a distant relationship between genes involved in alkane oxidation.
机译:分枝杆菌从多环芳烃(PAH)污染的淡水沉积物中分离出CH1菌株,并通过分析16S rDNA序列进行鉴定。 CH1菌株能够矿化三环和四环PAH,包括菲,pyr和荧蒽。此外,菌株CH1可以利用菲或pyr作为唯一的碳和能源。在pyr矿化过程中观察到至少3天的滞后阶段。当菌株CH1在菲或荧蒽存在下生长时,此滞后阶段减少到不到1天。 CH1菌株还能够使用多种烷烃作为唯一碳和能源。用nahAc基因探针未检测到DNA杂交,表明参与PAH代谢的酶与特征明确的萘双加氧酶基因无关。当在高严格条件下使用油酸假单胞菌的alkB基因时,未检测到DNA杂交。但是,在低严格条件下有轻微但可检测到的杂交。这表明参与烷烃氧化的基因之间存在远距离的关系。

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