Environmental ScienceBiologyChemistry

H. Park, Byung Hong Kim, Hyo Suk Kim, Hyungjoo Kim, G. Kim, Mia Kim, I. Chang, Y. Park, H. Chang

2001.12.1ANAEROBE

DOI: 10.1006/anae.2001.0399

tlooto Summary

Cyclic voltammetry showed that Clostridium butyricum EG3 cells were electrochemically active, a novel characteristic of strict anaerobic Gram-positive bacteria, suggesting that Fe(III) ion is utilised as an electron sink.

Abstract

An obligatory anaerobic bacterium was isolated from a mediator-less microbial fuel cell using starch processing wastewater as the fuel and designated as EG3. The isolate was Gram-positive, motile and rod (2.8–3.0 μm long, 0.5–0.6 μm wide). The partial 16S rRNA gene sequence and analysis of the cellular fatty acids profile suggested that EG3 clusters with Clostridium sub-phylum and exhibited the highest similarity (98%) with Clostridium butyricum. The temperature and pH optimum for growth were 37°C and 7.0, respectively. The major products of glucose and glucose/Fe(O)OH metabolism were lactate, formate, butyrate, acetate, CO2and H2. Growth was faster at the initial phase and the cell yield was higher when the medium was supplemented with Fe(O)OH than without Fe(O)OH. These results suggest that Fe(III) ion is utilised as an electron sink. Cyclic voltammetry showed that Clostridium butyricum EG3 cells were electrochemically active. It is a novel characteristic of strict anaerobic Gram-positive bacteria.

Citation format

PARK, H., et al. A novel electrochemically active and fe(iii)-reducing bacterium phylogenetically related to clostridium butyricum isolated from a microbial fuel cell. ANAEROBE, 2001, 7: 297–306.