Leibniz-Institut für Agrartechnik Potsdam-Bornim e.V., Abteilung Bioverfahrenstechnik, Potsdam, Germany.
Can J Microbiol. 2012 Jul;58(7):917-22. doi: 10.1139/w2012-058. Epub 2012 Jun 12.
Complex consortia of microorganisms are responsible for biogas production. A lot of information about the taxonomic structure and enzymatic potential of such communities has been collected by a variety of gene-based approaches, yet little is known about which of all the assumable metabolic pathways are active throughout the process of biogas formation. To tackle this problem, we established a protocol for the metaproteomic analysis of samples taken from biogas reactors fed with agricultural biomass. In contrast to previous studies where an anaerobic digester was fed with synthetic wastewater, the complex matrix in this study required the extraction of proteins with liquid phenol and the application of paper bridge loading for 2-dimensional gel electrophoresis. Proteins were subjected to nanoHPLC (high-performance liquid chromatography) coupled to tandem mass spectrometry for characterization. Several housekeeping proteins as well as methanogenesis-related enzymes were identified by a MASCOT search and de novo sequencing, which proved the feasibility of our approach. The establishment of such an approach is the basis for further metaproteomic studies of biogas-producing communities. In particular, the apparent status of metabolic activities within the communities can be monitored. The knowledge collected from such experiments could lead to further improvements of biogas production.
复杂的微生物联合体负责沼气的生产。通过各种基于基因的方法,已经收集了大量关于此类群落的分类结构和酶学潜力的信息,但对于在沼气形成过程中所有假定的代谢途径中哪些是活跃的,我们知之甚少。为了解决这个问题,我们建立了一种从以农业生物质为食的沼气反应器中提取样本的代谢组学分析方案。与以前使用厌氧消化器以合成废水为食的研究不同,本研究中复杂的基质需要用液体苯酚提取蛋白质,并应用纸桥加载进行二维凝胶电泳。蛋白质经过纳升高效液相色谱(nanoHPLC)与串联质谱联用进行表征。通过 Mascot 搜索和从头测序鉴定了几种管家蛋白和与甲烷生成相关的酶,证明了我们方法的可行性。该方法的建立是进一步研究产沼气群落代谢组学的基础。特别是可以监测群落内代谢活性的明显状态。从这些实验中收集的知识可以进一步提高沼气的产量。