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Microbial community of biological phosphorus removal process fed with municipal wastewater under different electron acceptor conditions

机译:不同电子受体条件下城市污水处理生物除磷过程中的微生物群落

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摘要

The microbial community in a biological phosphorus removal process under different electron acceptor conditions was estimated by polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) assay and principal-component analysis (PCA). For this purpose, a lab-scale sequencing batch reactor (SBR) fed with municipal wastewater was operated under anaerobic-aerobic, anaerobic-anoxic-aerobic and anaerobic-anoxic conditions. The results of PCR-DGGE targeting the 16S rRNA gene indicated a significant shift in the microbial community with electron acceptor conditions. From the 16S rRNA-based PCA, the microbial shift implies that little oxygen supply caused the deterioration of aerobic bacteria, including aerobic polyphosphate-accumulating organisms (PAOs). Moreover, it also reflects the existence of nitrate-utilizing denitrifiers. On the other hand, although the band patterns of DGGE targeting a functional gene of denitrification (nirS) also showed the microbial shift, the result of PCA differed from that of 16S rRNA-based analysis. There is no conclusive proof that the bacteria represented as the dominant bands detected in the present study are denitrifying-PAOs so far, it should be worthwhile to identify the detected bacteria and to examine their traits as new denitrifying-PAO candidates.
机译:通过聚合酶链反应-变性梯度凝胶电泳(PCR-DGGE)分析和主成分分析(PCA)估算了在不同电子受体条件下生物除磷过程中的微生物群落。为此,在厌氧-好氧,厌氧-缺氧-好氧和厌氧-缺氧的条件下运行装有市政废水的实验室规模的分批反应器(SBR)。靶向16S rRNA基因的PCR-DGGE结果表明,随着电子受体条件的改变,微生物群落发生了显着变化。从基于16S rRNA的PCA中,微生物转移意味着几乎没有氧气供应导致好氧细菌(包括有氧聚磷酸盐的有机体)(PAOs)退化。而且,这也反映了利用硝酸盐的反硝化剂的存在。另一方面,尽管针对反硝化功能基因(nirS)的DGGE的条带模式也显示出微生物的迁移,但PCA的结果与基于16S rRNA的分析结果有所不同。尚无确凿的证据表明,到目前为止,在本研究中检测到的代表优势带的细菌是反硝化PAO,应该鉴定检测到的细菌并检查其作为新的反硝化PAO候选者的特性。

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