Pham The Hai, Boon Nico, De Maeyer Katrien, Höfte Monica, Rabaey Korneel, Verstraete Willy
Laboratory of Microbial Ecology and Technology (LabMET), Ghent University, Ghent, Belgium.
Appl Microbiol Biotechnol. 2008 Oct;80(6):985-93. doi: 10.1007/s00253-008-1619-7. Epub 2008 Aug 8.
The rate of anodic electron transfer is one of the factors limiting the performance of microbial fuel cells (MFCs). It is known that phenazine-based metabolites produced by Pseudomonas species can function as electron shuttles for Pseudomonas themselves and also, in a syntrophic association, for Gram-positive bacteria. In this study, we have investigated whether phenazine-based metabolites and their producers could be used to improve the electricity generation of a MFC operated with a mixed culture. Both anodic supernatants obtained from MFCs operated with a Pseudomonas strain (P-PCA) producing phenazine-1-carboxylic acid (PCA) and those from MFCs operated with a strain (P-PCN) producing phenazine-1-carboxamide (PCN) exerted similarly positive effects on the electricity generation of a mixed culture. Replacing supernatants of MFCs operated with a mixed culture with supernatants of MFCs operated with P-PCN could double the currents generated. Purified PCA and purified PCN had similar effects. If the supernatant of an engineered strain overproducing PCN was used, the effect could be maintained over longer time courses, resulting in a 1.5-fold increase in the production of charge. Bioaugmentation of the mixed culture MFCs using slow release tubes containing P-PCN not only doubled the currents but also maintained the effect over longer periods. The results demonstrated the electron-shuttling effect of phenazine-based compounds produced by Pseudomonas species and their capacity to improve the performance of MFCs operated with mixed cultures.
阳极电子转移速率是限制微生物燃料电池(MFC)性能的因素之一。已知假单胞菌属产生的基于吩嗪的代谢产物可作为假单胞菌自身的电子穿梭体,在互营共生关系中,也可作为革兰氏阳性菌的电子穿梭体。在本研究中,我们调查了基于吩嗪的代谢产物及其产生菌是否可用于提高混合培养运行的MFC的发电量。从用产生吩嗪 - 1 - 羧酸(PCA)的假单胞菌菌株(P - PCA)运行的MFC获得的阳极上清液,以及从用产生吩嗪 - 1 - 甲酰胺(PCN)的菌株(P - PCN)运行的MFC获得的阳极上清液,对混合培养的发电量都产生了类似的积极影响。用P - PCN运行的MFC的上清液替换混合培养运行的MFC的上清液,可使产生的电流加倍。纯化的PCA和纯化的PCN具有类似的效果。如果使用过量产生PCN的工程菌株的上清液,这种效果可以在更长的时间过程中保持,导致电荷产生增加1.5倍。使用含有P - PCN的缓释管对混合培养的MFC进行生物强化,不仅使电流加倍,而且在更长时间内保持这种效果。结果证明了假单胞菌属产生的基于吩嗪的化合物的电子穿梭效应及其改善混合培养运行的MFC性能的能力。