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从处理食物垃圾的厌氧消化池中分离电化学活性细菌及其特性研究

Isolation of Electrochemically Active Bacteria from an Anaerobic Digester Treating Food Waste and Their Characterization.

作者信息

Yoshizu Daichi, Shimizu Soranosuke, Tsuchiya Miyu, Tomita Keisuke, Kouzuma Atsushi, Watanabe Kazuya

机构信息

Laboratory of Bioenergy Science and Technology, School of Life Sciences, Tokyo University of Pharmacy and Life Sciences, Tokyo 192-0392, Japan.

J &T Recycling Corporation, Yokohama 230-0044, Japan.

出版信息

Microorganisms. 2024 Aug 11;12(8):1645. doi: 10.3390/microorganisms12081645.

Abstract

Studies have used anaerobic-digester sludge and/or effluent as inocula for bioelectrochemical systems (BESs), such as microbial fuel cells (MFCs), for power generation, while limited studies have isolated and characterized electrochemically active bacteria (EAB) that inhabit anaerobic digesters. In the present work, single-chamber MFCs were operated using the anaerobic-digester effluent as the sole source of organics and microbes, and attempts were made to isolate EAB from anode biofilms in MFCs by repeated anaerobic cultivations on agar plates. Red colonies were selected from those grown on the agar plates, resulting in the isolation of three phylogenetically diverse strains affiliated with the phyla , and . All these strains are capable of current generation in pure-culture BESs, while they exhibit different electrochemical properties as assessed by cyclic voltammetry. The analyses of their cell-free extracts show that cytochromes are abundantly present in their cells, suggesting their involvement in current generation. The results suggest that anaerobic digesters harbor diverse EAB, and it would be of interest to examine their ecological niches in anaerobic digestion.

摘要

已有研究将厌氧消化池污泥和/或出水用作生物电化学系统(BESs)的接种物,如用于发电的微生物燃料电池(MFCs),而对栖息于厌氧消化池中的电化学活性细菌(EAB)进行分离和表征的研究较少。在本研究中,单室MFCs以厌氧消化池出水作为有机物和微生物的唯一来源进行运行,并尝试通过在琼脂平板上反复进行厌氧培养,从MFCs的阳极生物膜中分离EAB。从琼脂平板上生长的菌落中挑选出红色菌落,从而分离出三种系统发育不同的菌株,分别属于 、 和 门。所有这些菌株都能够在纯培养的BESs中产生电流,而通过循环伏安法评估,它们表现出不同的电化学性质。对其无细胞提取物的分析表明,细胞色素在其细胞中大量存在,这表明它们参与了电流的产生。结果表明,厌氧消化池中存在多种EAB,研究它们在厌氧消化中的生态位将是很有意义的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1bda/11356707/f0b13ac02220/microorganisms-12-01645-g001.jpg

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