首页> 外文期刊>Journal of applied microbiology >Bacterial community structure and bamA gene diversity in anaerobic degradation of toluene and benzoate under denitrifying conditions.
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Bacterial community structure and bamA gene diversity in anaerobic degradation of toluene and benzoate under denitrifying conditions.

机译:在反硝化条件下厌氧降解甲苯和苯甲酸酯的细菌群落结构和 bamA 基因多样性。

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Aim: To characterize the microbial community structure and bamA gene diversity involved in anaerobic degradation of toluene and benzoate under denitrifying conditions. Methods and Results: Nitrate-reducing enrichment cultures were established on either toluene, benzoate or without additional substrate. Bacterial community structures were characterized by 16 S rRNA gene-based PCR-DGGE analysis. bamA gene diversity was analysed using DGGE and cloning methods. The results showed that bamA gene related to bamA of Thauera chlorobenzoica was dominant in toluene and benzoate cultures. However, a greater diversity of sequences was obtained in benzoate cultures. Low diversity of bamA gene was observed, and some similarities of bamA were also found between active cultures and backgrounds, suggesting that potential natural attenuation of aromatic compounds might occur. Conclusions: The combined analysis of 16 S rRNA and bamA genes suggests that the species related to genera Thauera dominated toluene- and benzoate-degrading cultures. The combination of multiple methods (DGGE and cloning) provides a more complete picture of bamA gene diversity. Significance and Impact of the Study: To our knowledge, this is the first report of bamA gene in denitrifying enrichments using DGGE and cloning analysis.
机译:目的:表征反硝化条件下甲苯和苯甲酸酯厌氧降解的微生物群落结构和 bamA 基因多样性。方法和结果:在甲苯,苯甲酸酯上或不添加底物的条件下建立了减少硝酸盐的富集培养物。通过基于16 S rRNA基因的PCR-DGGE分析来表征细菌群落结构。利用DGGE和克隆方法分析了 bamA 基因的多样性。结果表明,与 Thauera chlorobenzoica 的 bamA 相关的 bamA 基因在甲苯和苯甲酸盐培养物中占优势。然而,在苯甲酸盐培养物中获得了更大的序列多样性。观察到 bamA 基因的多样性较低,并且在活跃的培养物和背景之间也发现了 bamA 的某些相似之处,这表明可能会发生芳香族化合物潜在的自然衰减。结论:对16 S rRNA和 bamA 基因的综合分析表明,与 Thauera 属有关的菌种主要降解甲苯和苯甲酸酯。多种方法(DGGE和克隆)的组合提供了 bamA 基因多样性的更完整图片。研究的意义和影响:据我们所知,这是 bamA 基因在DGGE和克隆分析中反硝化富集的第一篇报道。

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