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Microbial succession of glycogen accumulating organisms in an anaerobic-aerobic membrane bioreactor with no phosphorus removal

机译:厌氧-好氧膜生物反应器中不去除磷的糖原积累微生物的微生物演替

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摘要

The succession of glycogen accumulating organisms (GAOs) has been observed in an acetate-fed, anaerobic-aerobic sequencing membrane bioreactor (MBR) operated for 260 days without enhanced biological phosphorus removal (EBPR) activity. Semi-quantitative fluorescence in situ hybridization results showed that a gammaproteobacterial lineage GB frequently observed in EBPR processes was initially the numerically dominant species (50-66% of total cells) of the GAO in the MBR from day 1 to day 38. During this period, succession of two different subgroups of group, GB was also observed. On day 5 onward, a population shift from GB group to 'Defluvicoccus'-related tetrad-forming organisms (TFO) occurred. This microbial succession was suspected to be related to the applied operating conditions (long hydraulic retention time and long solid residence time) which favored the proliferation of 'Defluvicoccus'-related TFO rather than the GB group. Application of terminal restriction fragment length polymorphism on selected samples further revealed that the microbial diversity of the seeding sludge as determined by the number of terminal restriction fragments was higher than that of sludge samples taken after day 85.
机译:糖原积累生物(GAOs)的连续性已在运行260天且没有增强的生物除磷(EBPR)活性的醋酸盐厌氧,好氧-好氧测序膜生物反应器(MBR)中观察到。半定量荧光原位杂交结果表明,从第1天到第38天,在EBPR过程中经常观察到的γ-变形细菌谱系GB最初是MBR中GAO的数字优势种(占总细胞的50-66%)。 ,也观察到GB的两个不同亚组的继承。从第5天起,发生了种群从GB组转移到与'Defluvicoccus'相关的四分体形成生物(TFO)的事件。该微生物的继承被怀疑与所应用的操作条件(长的水力停留时间和长的固体停留时间)有关,这有利于'Defluvicoccus'相关的TFO而不是GB组的增殖。在选定的样品上应用末端限制性片段长度多态性进一步揭示,由末端限制性片段的数量决定的接种污泥的微生物多样性高于第85天后采集的污泥样品的微生物多样性。

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