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首页> 外文期刊>Journal of applied microbiology >Failure of the ammonia oxidation process in two pharmaceutical wastewater treatment plants is linked to shifts in the bacterial communities
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Failure of the ammonia oxidation process in two pharmaceutical wastewater treatment plants is linked to shifts in the bacterial communities

机译:两个制药废水处理厂氨氧化过程的失败与细菌群落的变化有关

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Aims: To investigate whether two different wastewater treatment plants ( WWTPs) - treating the same pharmaceutical influent - select for a different bacterial and/ or ammonia oxidizing bacterial ( AOB) community. Methods and Results: Molecular fingerprinting demonstrated that each WWTP had its own total bacterial and AOB community structure, but Nitrosomonas eutropha and N. europea were dominant in both WWTP A and B. The DNA and RNA analysis of the AOB commun so the most abundant species may not necessarily be the most active ones. Nitritation failures, monitored by chemical parameter analysis, were reflected as AOB community shifts and visualized by denaturing gradient gel electrophoresis ( DGGE)- based Conclusions: This research demonstrated the link between functional performance ( nitritation parameters) and the presence and activity of a specific microbial ecology ( AOB). Clustering and moving window analysis based on DGGE showed to be valuable Significance and Impact of the Study: This study of specific community shifts together with functional parameter analysis has potential as a tool for relating functional instability ( such as operational failures) to specific-bacterial community shif
机译:目的:调查两个不同的废水处理厂(WWTP)是否处理​​相同的药物流入物,是否选择了不同的细菌和/或氨氧化细菌(AOB)群落。方法和结果:分子指纹图谱表明,每个污水处理厂都具有自己的总细菌和AOB群落结构,但富营养化亚硝化单胞菌和欧洲猪笼草在污水处理厂A和B中均占主导地位。AOB社区的DNA和RNA分析是种类最多的物种不一定是最活跃的。通过化学参数分析监测的亚硝化失败反映为AOB群落变化,并通过变性梯度凝胶电泳(DGGE)可视化。结论:这项研究证明了功能性能(亚硝化参数)与特定微生物的存在和活性之间的联系生态学(AOB)。研究表明,基于DGGE的聚类和移动窗口分析具有重要的意义和影响:这项针对特定社区转变的研究以及功能参数分析,具有作为将功能不稳定(例如操作失败)与特定细菌社区相关联的工具的潜力。希夫

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