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Structure of archaeal communities in membrane-bioreactor and submerged-biofilter wastewater treatment plants

机译:膜生物反应器和浸没式生物滤池废水处理厂古细菌群落的结构

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摘要

A cultivation independent approach (PCR-TGGE) was used to evaluate the occurrence of Archaea in four wastewater treatments based on technologies other than activated sludge, and to comparatively analyze their community structure. TGGE fingerprints (based on partial archaeal 16S-rRNA amplicons) were obtained from sludge samples taken from a pilot-scale aerated MBR fed with urban wastewater and operated under two different sets of conditions (MBR1 and MBR2 treatments). and also from biofilms sampled from two pilot-scale submerged biofilters (SBs) consisting of one aerated and one anoxic column each, fed with urban (USB treatment) or industrial (ISB treatment) wastewater, respectively. Analysis of TGGE fingerprints revealed clear and significant differences of the community structure of Archaea between the wastewater treatments studied, primarily according to wastewater origin and the type of technology. Thirty-two different band classes were detected among the 23 sludge and biofilm samples analyzed. from which five were selected as dominant or distinctive of the four treatments studied. Sixteen predominant TGGE bands were identified, revealing that all of them were related to methanogenic Archaea. Neither other Euryarchaeoto groups nor Crenarchaeota members were identified amongst the 16S-rRNA fragments sequenced from separated TGGE bands.
机译:基于非活性污泥的技术,采用独立于培养的方法(PCR-TGGE)评估了四种废水处理中古生菌的发生,并比较了其群落结构。 TGGE指纹图谱(基于部分古细菌16S-rRNA扩增子)是从污泥样品中获得的,污泥样品取自中试规模的曝气MBR,该MBR喂有城市污水,并在两种不同的条件下运行(MBR1和MBR2处理)。以及从两个中试规模的水下生物滤池(SB)采样的生物膜中,每个生物滤池分别由一个曝气池和一个缺氧柱组成,分别供入城市(USB处理)或工业(ISB处理)废水。 TGGE指纹图谱的分析显示,所研究的废水处理之间古细菌的群落结构明显不同,且主要区别在于废水的来源和技术类型。在所分析的23种污泥和生物膜样品中检测到32种不同的谱带类别。从中选择五种作为所研究的四种治疗的主要或独特治疗方法。鉴定出了16条主要的TGGE带,表明它们全都与产甲烷的古细菌有关。在从分离的TGGE条带测序的16S-rRNA片段中,未鉴定到其他Euryarchaeoto组或Crenarchaeota成员。

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