作者
Amelia-Elena Rotaru, Pravin M Shrestha, Fanghua Liu, Toshiyuki Ueki, Kelly Nevin, Zarath M Summers, Derek R Lovley
发表日期
2012/11/1
期刊
Applied and environmental microbiology
卷号
78
期号
21
页码范围
7645-7651
出版商
American Society for Microbiology
简介
Direct interspecies electron transfer (DIET) is an alternative to interspecies H2/formate transfer as a mechanism for microbial species to cooperatively exchange electrons during syntrophic metabolism. To understand what specific properties contribute to DIET, studies were conducted with Pelobacter carbinolicus, a close relative of Geobacter metallireducens, which is capable of DIET. P. carbinolicus grew in coculture with Geobacter sulfurreducens with ethanol as the electron donor and fumarate as the electron acceptor, conditions under which G. sulfurreducens formed direct electrical connections with G. metallireducens. In contrast to the cell aggregation associated with DIET, P. carbinolicus and G. sulfurreducens did not aggregate. Attempts to initiate cocultures with a genetically modified strain of G. sulfurreducens incapable of both H2 and formate utilization were unsuccessful, whereas cocultures readily grew …
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