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首页> 外文期刊>Journal of environmental sciences >Comparison of bacterial community structures in two systems of a sewage treatment plant using PCR-DGGE analysis
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Comparison of bacterial community structures in two systems of a sewage treatment plant using PCR-DGGE analysis

机译:使用PCR-DGGE分析比较污水处理厂两个系统中的细菌群落结构

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The combination of PCR amplification of 16S rRNA genes with denaturing gradient gel electrophoresis (DGGE) analysis was used to reveal the compositions and dynamics of bacterial communities in a sewage treatment plant with two systems, i.e., an anoxic-anaerobic-aerobic system (inverted A20) and an anaerobic-anoxic-aerobic one (conventional A20) over a period from February to July 2009, during which both systems experienced serious sludge bulking problems. The DGGE patterns showed that there were many common bands in both systems, suggesting the high similarity of bacterial communities of the two systems. Meanwhile, the moving window correlation analysis showed that the two systems experienced different microbial community structure changes during the period, which might be related with the different situations of the occurrence and disappearance of sludge bulking, as being reflected by sludge volume index (SVI) values. Major bands of DGGE patterns of sludge samples were further sequenced. Phylogenetic affiliation indicated that the majority of the sequences obtained were affiliated with Actinobacteria, Firmicutes, Bacteroidetes/Chlorobi group and α- and β-Proteobacteria. Two sequences showed high similarities to typical filamentous bacteria Microthrix parvicella and Nostocoida limicola I, indicating that these bacterial species have been involved in the sludge bulking problems.
机译:通过16S rRNA基因的PCR扩增与变性梯度凝胶电泳(DGGE)分析相结合,揭示了具有两个系统的污水处理厂,即缺氧-厌氧-好氧系统(倒置A20)中细菌群落的组成和动态)和2009年2月至7月期间的厌氧-缺氧-好氧设备(常规A20),在此期间这两个系统都遇到严重的污泥膨胀问题。 DGGE模式显示两个系统中都有许多共同的谱带,表明两个系统中细菌群落的高度相似性。同时,移动窗口相关性分析表明,两个系统在此期间经历了不同的微生物群落结构变化,这可能与污泥体积指数(SVI)值所反映的污泥膨胀的发生和消失的不同情况有关。 。污泥样品的DGGE模式的主要谱带被进一步测序。系统发生的隶属关系表明,获得的大多数序列与放线菌,硬毛菌,拟杆菌/ Chlorobi组以及α-和β-变形杆菌有关。两个序列显示出与典型的丝状细菌Microthrix parvicella和Nostocoida limicola I高度相似,表明这些细菌物种已参与污泥膨胀问题。

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