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首页> 外文期刊>Microbiology >Dynamics of the composition of a microbial consortium during start-up of a single-stage constant flow laboratory nitritation/anammox setup
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Dynamics of the composition of a microbial consortium during start-up of a single-stage constant flow laboratory nitritation/anammox setup

机译:单级恒流实验室硝化/厌氧氨氧化装置启动过程中微生物联盟的组成动态

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Dynamics of the composition of the microbial community was studied during start-up of a single-stage completely mixed constant flow laboratory setup for ammonium removal by the nitritation/anammox process from the filtrate of digested sludge of the Kuryanovo wastewater treatment plant (KWTP), Moscow. To decrease the period of the start-up, the setup was initially inoculated with two types of activated sludge (nitrifying sludge from a KWTP aeration tank and sludge from a sequencing batch reactor enriched with anammox bacteria). The start-up and adjustment stage was therefore decreased to 35-40 days, and nitrogen removal efficiency reached 80% after 120 days of the setup operation. Taxonomic analysis of the composition of the microbial community was carried out by pyrosequencing of the 16S rRNA fragments obtained using the universal and planctomycetes-specific primers. In the course of adaptation of activated sludge to increasing nitrogen load, microbial community of the setup became less diverse and more specialized. The contribution of anammox bacteria of the family Brocadiaceae, closely related to Candidatus "Brocadia caroliniensis," increased gradually. Members of the order Nitrosomonadales were involved in ammonium oxidation to nitrite. While nitrite-oxidizing bacteria of the genus Nitrospira were also detected, their share decreased with accumulation of the activated sludge. The contribution of other bacteria varied as well: the shares of the phyla Ignavibacteria, Chloroflexi, and Acidobacteria increased significantly (up to 13, 12, and 10%, respectively of the total number of reads), while relative abundance of the Proteobacteria, Bacteroidetes, Actinobacteria, Firmicutes, Synergistetes, Aminicenantes, Thermotogae, and Cloacimonetes decreased. Thus, application of pyrosequencing made it possible to monitor succession of the bacterial community involved in nitrogen removal by nitritation/anammox process.
机译:在建立一个单阶段完全混合恒流实验室装置的过程中,研究了微生物群落组成的动力学,该装置用于通过硝化/氨氧化工艺从Kuryanovo废水处理厂(KWTP)的消化污泥滤液中去除铵,莫斯科。为了缩短启动时间,设备首先用两种类型的活性污泥接种(KWTP曝气池中的硝化污泥和富集了厌氧菌的测序分批反应器中的污泥)。因此,启动和调整阶段减少到35-40天,设置操作120天后,脱氮效率达到80%。通过使用通用和菌种特异性引物获得的16S rRNA片段进行焦磷酸测序,对微生物群落组成进行了分类学分析。在适应活性污泥以增加氮负荷的过程中,设备中的微生物群落变得越来越多样化,越来越专业化。与念珠菌“ Brocadia caroliniensis”密切相关的Brocadiaceae科的厌氧细菌的贡献逐渐增加。亚硝基龙类的成员参与了铵氧化为亚硝酸盐的过程。尽管还检测到了硝化螺旋藻属的亚硝酸盐氧化细菌,但它们的份额随着活性污泥的积累而减少。其他细菌的贡献也各不相同:门伊格纳杆菌,绿弯曲菌和酸杆菌的份额显着增加(分别达到读取总数的13%,12%和10%),而变形杆菌,拟杆菌的相对丰富度,放线菌,硬毛菌,协同菌,蚊虫,嗜热菌和泄殖腔减少。因此,焦磷酸测序的应用使监测通过硝化/厌氧氨氧化工艺脱氮所涉及的细菌群落的演替成为可能。

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