微生物燃料电池中阳极群落与氧化铁还原群落的比较

Comparison of Anodic Community in Microbial Fuel Cells with Iron Oxide-Reducing Community.

作者信息

Yokoyama Hiroshi, Ishida Mitsuyoshi, Yamashita Takahiro

机构信息

Animal Waste Management and Environment Division, NARO Institute of Livestock and Grassland Science, Tsukuba 305-0901, Japan.

出版信息

J Microbiol Biotechnol. 2016 Apr 28;26(4):757-62. doi: 10.4014/jmb.1510.10037.

Abstract

The group of Fe(III) oxide-reducing bacteria includes exoelectrogenic bacteria, and they possess similar properties of transferring electrons to extracellular insoluble-electron acceptors. The exoelectrogenic bacteria can use the anode in microbial fuel cells (MFCs) as the terminal electron acceptor in anaerobic acetate oxidation. In the present study, the anodic community was compared with the community using Fe(III) oxide (ferrihydrite) as the electron acceptor coupled with acetate oxidation. To precisely analyze the structures, the community was established by enrichment cultures using the same inoculum used for the MFCs. High-throughput sequencing of the 16S rRNA gene revealed considerable differences between the structure of the anodic communities and that of the Fe(III) oxide-reducing community. Geobacter species were predominantly detected (>46%) in the anodic communities. In contrast, Pseudomonas (70%) and Desulfosporosinus (16%) were predominant in the Fe(III) oxide-reducing community. These results demonstrated that Geobacter species are the most specialized among Fe(III)-reducing bacteria for electron transfer to the anode in MFCs. In addition, the present study indicates the presence of a novel lineage of bacteria in the genus Pseudomonas that highly prefers ferrihydrite as the terminal electron acceptor in acetate oxidation.

摘要

氧化铁还原菌群体包括产电细菌,它们具有将电子传递到细胞外不溶性电子受体的相似特性。产电细菌可在微生物燃料电池(MFC)中利用阳极作为厌氧乙酸氧化中的终端电子受体。在本研究中,将阳极群落与以氧化铁(水铁矿)作为电子受体并耦合乙酸氧化的群落进行了比较。为精确分析结构,使用与MFC相同的接种物通过富集培养建立群落。16S rRNA基因的高通量测序揭示了阳极群落结构与氧化铁还原群落结构之间存在显著差异。在阳极群落中主要检测到地杆菌属物种(>46%)。相比之下,假单胞菌属(70%)和脱硫孢菌属(16%)在氧化铁还原群落中占主导地位。这些结果表明,在地杆菌属物种中,地杆菌属是氧化铁还原细菌中最专门用于在MFC中将电子传递到阳极的。此外,本研究表明假单胞菌属中存在一个新的细菌谱系,其在乙酸氧化中高度偏好水铁矿作为终端电子受体。

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