Department of Microbiology, University of Massachusetts, Morrill IVN, 639 North Pleasant Street, Amherst, MA, USA.
ChemSusChem. 2012 Jun;5(6):1092-8. doi: 10.1002/cssc.201100714. Epub 2012 May 10.
The expression of genes involved in central metabolism and extracellular electron transfer was examined in real-time in current-producing anode biofilms of Geobacter sulfurreducens. Strains of G. sulfurreducens were generated, in which the expression of the gene for a short half-life fluorescent protein was placed under control of the promoter of the genes of interest. Anode biofilms were grown in a chamber that permitted direct examination of the cell fluorescence with confocal scanning laser microscopy. Studies on nifD and citrate synthase expression in response to environmental changes demonstrated that the reporter system revealed initiation and termination of gene transcription. Uniform expression throughout the biofilms was noted for the genes for citrate synthase; PilA, the structural protein of the conductive pili; and OmcZ, a c-type cytochrome essential for optimal current production, which was localized at the anode-biofilm interface. These results demonstrate that even cells at great distance from the anode, or within expected low-pH zones, are metabolically active and likely to contribute to current production and that there are factors other than gene expression differences influencing the distribution of OmcZ. This real-time reporter approach is likely to be a useful tool in optimizing the design of technologies relying on microbe-electrode interactions.
本研究实时检测了产电阳极生物膜中参与中心代谢和细胞外电子传递的基因表达。通过构建特定基因启动子控制下短半衰期荧光蛋白表达的基因工程菌,在允许共聚焦扫描激光显微镜直接观察细胞荧光的腔室内培养产电阳极生物膜。以 nifD 和柠檬酸合酶的表达研究为例,该报告基因系统揭示了基因转录的起始和终止。生物膜中柠檬酸合酶、导电菌毛结构蛋白 PilA 和 c 型细胞色素 OmcZ 的基因表达均匀,OmcZ 定位于阳极-生物膜界面,这表明即使是远离阳极或处于预期低 pH 区的细胞也具有代谢活性,可能有助于电流产生,而且除了基因表达差异之外,还有其他因素影响 OmcZ 的分布。这种实时报告基因方法可能成为优化依赖微生物-电极相互作用的技术设计的有用工具。