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Identification of Microbial Communities in Open and Closed Circuit Bioelectrochemical MBRs by High-Throughput 454 Pyrosequencing

机译:高通量454焦磷酸测序技术对开环和闭路生物电化学MBRs中微生物群落的鉴定

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摘要

Two bioelectrochemical membrane bioreactors (MBRs) developed by integrating microbial fuel cell and MBR technology were operated under closed-circuit and open-circuit modes, and high-throughput 454 pyrosequencing was used to investigate the effects of the power generation on the microbial community of bio-anode and bio-cathode. Microbes on the anode under open-circuit operation (AO) were enriched and highly diverse when compared to those on the anode under closed-circuit operation (AC). However, among the cathodes the closed-circuit mode (CC) had richer and more diverse microbial community compared to the cathode under open-circuit mode (CO). On the anodes AO and AC, Proteobacteria and Bacteroidetes were the dominant phyla, while Firmicutes was enriched only on AC. Deltaproteobacteria affiliated to Proteobacteria were also more abundant on AC than AO. Furthermore, the relative abundance of Desulfuromonas, which are well-known electrogenic bacteria, were much higher on AC (10.2%) when compared to AO (0.11%), indicating that closed-circuit operation was more conducive for the growth of electrogenic bacteria on the anodes. On the cathodes, Protebacteria was robust on CC while Bacteroidetes was more abundant on CO. Rhodobacter and Hydrogenophaga were also enriched on CC than CO, suggesting that these genera play a role in electron transfer from the cathode surface to the terminal electron acceptors in the bioelectrochemical MBR under closed-circuit operation.
机译:通过整合微生物燃料电池和MBR技术开发的两个生物电化学膜生物反应器(MBR)在闭路和开路模式下运行,并使用高通量454焦磷酸测序来研究发电对生物微生物群落的影响-阳极和生物阴极。与在闭路操作(AC)下阳极上的微生物相比,在开路操作(AO)下阳极上的微生物丰富并且高度多样化。但是,在阴极中,与处于开路模式(CO)的阴极相比,闭路模式(CC)的微生物群落更丰富且种类更多。在阳极AO和AC上,Proteobacteria和Bacteroidetes是优势种,而Firmicutes仅在AC上富集。隶属于变形杆菌的变形杆菌在AC上也比AO丰富。此外,众所周知的成电细菌Desulfuromonas的相对丰度,与AO(0.11%)相比,在AC(10.2%)上要高得多,这表明闭路操作更有利于在上生电细菌的生长。阳极。在阴极上,Protebacteria在CC上很健壮,而拟杆菌在CO上更丰富。在CC上,Rhodobacter和Hydrogenophaga也比CO富集,这表明这些属在生物电化学中在从阴极表面到末端电子受体的电子转移中起作用。 MBR处于闭路运行状态。

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