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Diversity Profile of Microbes Associated with Anaerobic Sulfur Oxidation in an Upflow Anaerobic Sludge Blanket Reactor Treating Municipal Sewage

机译:上流式厌氧污泥覆盖反应器中厌氧硫氧化微生物的多样性特征

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摘要

We herein analyzed the diversity of microbes involved in anaerobic sulfur oxidation in an upflow anaerobic sludge blanket (UASB) reactor used for treating municipal sewage under low-temperature conditions. Anaerobic sulfur oxidation occurred in the absence of oxygen, with nitrite and nitrate as electron acceptors; however, reactor performance parameters demonstrated that anaerobic conditions were maintained. In order to gain insights into the underlying basis of anaerobic sulfur oxidation, the microbial diversity that exists in the UASB sludge was analyzed comprehensively to determine their identities and contribution to sulfur oxidation. Sludge samples were collected from the UASB reactor over a period of 2 years and used for bacterial 16S rRNA gene-based terminal restriction fragment length polymorphism (T-RFLP) and next-generation sequencing analyses. T-RFLP and sequencing results both showed that microbial community patterns changed markedly from day 537 onwards. Bacteria belonging to the genus Desulforhabdus within the phylum Proteobacteria and uncultured bacteria within the phylum Fusobacteria were the main groups observed during the period of anaerobic sulfur oxidation. Their abundance correlated with temperature, suggesting that these bacterial groups played roles in anaerobic sulfur oxidation in UASB reactors.
机译:我们在本文中分析了用于处理低温条件下的城市污水的上流厌氧污泥层(UASB)反应器中涉及厌氧硫氧化的微生物的多样性。在没有氧气的情况下发生厌氧硫的氧化,亚硝酸盐和硝酸盐为电子受体。但是,反应堆性能参数表明可以保持厌氧条件。为了深入了解厌氧硫氧化的基础,对UASB污泥中存在的微生物多样性进行了综合分析,以确定其身份和对硫氧化的贡献。在2年的时间里从UASB反应器中收集了污泥样品,并将其用于基于细菌16S rRNA基因的末端限制性片段长度多态性(T-RFLP)和下一代测序分析。 T-RFLP和测序结果均表明,从第537天开始,微生物群落模式发生了显着变化。在厌氧硫氧化期间观察到的主要细菌是属于Proteobacteria门中的Desulforhabdus属细菌和Fusobacteria门中的未培养细菌。它们的丰度与温度相关,表明这些细菌群在UASB反应器中的厌氧硫氧化中起作用。

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