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Towards exposure of elusive metabolic mixed-culture processes: the application of metaproteomic analyses to activated sludge

机译:难以捉摸的代谢混合培养过程的暴露:元蛋白质组学分析在活性污泥中的应用

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摘要

Protein expression is a direct reflection of specific microbial activities in any ecosystem. In order to assess protein expression in mixed microbial communities, the feasibility of applying proteomic techniques to activated sludge samples has recently been demonstrated. We report the application of metaproteomics to two activated sludges from a laboratory-scale sequencing batch reactor with dissimilar phosphorus removal performances. Fluorescence in situ hybridization (FISH) revealed that the sludge with good enhanced biological phosphorus removal performance (EBPR) was dominated by Betaproteobacteria (65% of EUBMIX binding cells) and gave positive signals for the Rhodocyclus-type PAO specific probe (59%). The non-EBPR sludge was dominated by tetrad-forming Alphaproteobacteria (75%). With regard to the proteomic investigation, 630 individual protein spots were matched across the replicate groups of the anaerobic and aerobic phases of the EBPR sludge with 9.4% of all spots being statistically different between the two phases. The non-EBPR metaproteomic maps exhibited 590 matched spots with 14.7% statistical differences between the two phases. Overall, the non-EBPR sludge expressed around 30% more significant differences than the EBPR sludge. The comparison of protein expression in the two sludges showed that their metaproteomes were substantially different and this was reflected in their microbial community structures and metabolic transformations.
机译:蛋白质表达是任何生态系统中特定微生物活动的直接反映。为了评估蛋白质在混合微生物群落中的表达,最近已经证明了将蛋白质组学技术应用于活性污泥样品的可行性。我们报告了元蛋白质组学在实验室规模的测序分批反应器中具有两种不同的除磷性能的两种活性污泥的应用。荧光原位杂交(FISH)显示,具有良好的生物除磷性能(EBPR)的污泥主要由β变形杆菌(EUBMIX结合细胞的65%)主导,并为Rhodocyclus型PAO特异性探针(59%)给出阳性信号。非EBPR污泥主要由形成四重链的Alteproteobacteria(75%)占据。关于蛋白质组学研究,在EBPR污泥的厌氧和好氧阶段的重复组中匹配了630个单独的蛋白质斑点,这两个阶段之间有9.4%的所有斑点在统计学上是不同的。非EBPR元蛋白质组图谱显示590个匹配点,两个阶段之间的统计差异为14.7%。总体而言,非EBPR污泥比EBPR污泥表现出约30%的显着差异。两种污泥中蛋白质表达的比较表明,它们的元蛋白质组存在显着差异,这反映在它们的微生物群落结构和代谢转化上。

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