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首页> 外文期刊>Journal of Integrative Bioinformatics >Taxonomic and functional metagenomic analysis of anodic communities in two pilot-scale microbial fuel cells treating different industrial wastewaters
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Taxonomic and functional metagenomic analysis of anodic communities in two pilot-scale microbial fuel cells treating different industrial wastewaters

机译:两个中试规模微生物燃料电池处理不同工业废水中阳极群落的分类学和功能宏基因组学分析

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The combined processes of microbial biodegradation accompanied by extracellular electron transfer make microbial fuel cells (MFCs) a promising new technology for cost-effective and sustainable wastewater treatment. Although a number of microbial species that build biofilms on the anode surfaces of operating MFCs have been identified, studies on the metagenomics of entire electrogenic communities are limited. Here we present the results of whole-genome metagenomic analysis of electrochemically active robust anodic microbial communities, and their anaerobic digester (AD) sludge inocula, from two pilot-scale MFC bioreactors fed with different distillery wastewaters operated under ambient conditions in distinct climatic zones. Taxonomic analysis showed that Proteobacteria, Bacteroidetes and Firmicutes were abundant in AD sludge from distinct climatic zones, and constituted the dominant core of the MFC microbiomes. Functional analysis revealed species involved in degradation of organic compounds commonly present in food industry wastewaters. Also, accumulation of methanogenic Archaea was observed in the electrogenic biofilms, suggesting a possibility for simultaneous electricity and biogas recovery from one integrated wastewater treatment system. Finally, we found a range of species within the anode communities possessing the capacity for extracellular electron transfer, both via direct contact and electron shuttles, and show differential distribution of bacterial groups on the carbon cloth and activated carbon granules of the anode surface. Overall, this study provides insights into structural shifts that occur in the transition from an AD sludge to an MFC microbial community and the metabolic potential of electrochemically active microbial populations with wastewater-treating MFCs.
机译:微生物生物降解与细胞外电子转移相结合的组合过程使微生物燃料电池(MFCs)成为一种具有成本效益且可持续的废水处理新技术。尽管已经发现了在运行中的MFC的阳极表面上形成生物膜的许多微生物,但对整个电生群落宏基因组学的研究仍然有限。在这里,我们介绍了来自两个中试规模的MFC生物反应器的电化学活性健壮的阳极微生物群落及其厌氧消化器(AD)污泥接种物的全基因组宏基因组学分析的结果,这些生物反应器使用了在不同气候区域在环境条件下运行的不同蒸馏废水。分类学分析表明,不同气候区的AD污泥中的细菌,拟杆菌和Firmicutes丰富,是MFC微生物群落的主要核心。功能分析揭示了与食品工业废水中常见的有机化合物降解有关的物种。此外,在产电生物膜中观察到产甲烷的古细菌的积累,这表明有可能同时从一个综合废水处理系统中回收电力和沼气。最后,我们在阳极群落中发现了一系列具有通过直接接触和电子穿梭进行细胞外电子转移的能力的物种,并显示了细菌基团在阳极表面的碳布和活性炭颗粒上的不同分布。总体而言,这项研究提供了从AD污泥向MFC微生物群落过渡过程中发生的结构变化以及使用废水处理MFC的电化学活性微生物种群的代谢潜力的见解。

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