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Identification of nitrogen-incorporating bacteria in a sequencing batch reactor: A combining cultivation-dependent and cultivation-independent method

机译:测序批量反应器中氮素掺入细菌的鉴定:依赖于栽培和培养的培养方法

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Nitrogen-incorporating bacteria in activated sludge play important roles in nitrogen removal in sequencing bactch reactor (SBR), but the active microorganisms and their interactions in the complex community are rarely revealed. Herein, a combining cultivation-dependent and cultivation-independent methods associated with DNA-stable-isotope probing (SIP) was applied to determine the microbes responsible for nitrogen-incorporating in SBR. Results revealed that Cytophagaceae and Sphingobacteriales were identified to be involved in nitrification, and Anaerolineae, Plasticicumulans and Elusimicrobia were responsible for denitrification. Cultivable nitrobacter and denitrifiers were isolated from the activated sludge, but they did not participate in the nitrogen -incorporating based on the SIP results. Additionally, the molecular ecological network analysis indicated that the SIP-identified nitrogen-incorporating bacteria exhibited more links with the intra-community, which might explain the failure of isolating these active bacteria. These findings add understanding of the removal of nitrogenous compounds drived by nitrogen-incorporating bacteria in actual wastewater treatment process.
机译:活性污泥中的氮气掺入细菌在测序烘焙反应器(SBR)中的氮气去除中起重要作用,但很少揭示活性微生物及其在复杂群落中的相互作用。在此,应用与DNA稳定同位素探测(SIP)相关的组合依赖性和培养的无关方法,以确定负责氮的微生物。结果表明,鉴定了细胞科酯和鞘癌参与硝化,Anaerolineae,吡咯烷,塑料素和ELUsimicrobia负责反硝化。从活性污泥中分离可栽培的硝基杆菌和脱氮剂,但它们没有基于SIP结果参与氮-INClate。另外,分子生态网络分析表明,SIP鉴定的氮气掺入细菌表现出更多与群体内部的链接,这可能解释隔离这些活性细菌的失败。这些发现还会了解在实际废水处理过程中取出氮气掺入细菌驱动的含氮化合物的理解。

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