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Metabolic Response of “Candidatus Accumulibacter Phosphatis” Clade II C to Changes in Influent P/C Ratio

机译:“ Candidatus Accumulibacter Phosphatis Phadephatis”进化枝II C对进水P / C比变化的代谢响应

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摘要

The objective of this study was to investigate the ability of a culture highly enriched with the polyphosphate-accumulating organism, “Candidatus Accumulibacter phosphatis” clade IIC, to adjust their metabolism to different phosphate availabilities. For this purpose the biomass was cultivated in a sequencing batch reactor with acetate and exposed to different phosphate/carbon influent ratios during six experimental phases. Activity tests were conducted to determine the anaerobic kinetic and stoichiometric parameters as well as the composition of the microbial community. Increasing influent phosphate concentrations led to increased poly-phosphate content and decreased glycogen content of the biomass. In response to higher biomass poly-phosphate content, the biomass showed higher specific phosphate release rates. Together with the phosphate release rates, acetate uptake rates also increased up to an optimal poly-phosphate/glycogen ratio of 0.3 P-mol/C-mol. At higher poly-phosphate/glycogen ratios (obtained at influent P/C ratios above 0.051 P-mol/C-mol), the acetate uptake rates started to decrease. The stoichiometry of the anaerobic conversions clearly demonstrated a metabolic shift from a glycogen dominated to a poly-phosphate dominated metabolism as the biomass poly-phosphate content increased. FISH and DGGE analyses confirmed that no significant changes occurred in the microbial community, suggesting that the changes in the biomass activity were due to different metabolic behavior, allowing the organisms to proliferate under conditions with fluctuating phosphate levels.
机译:这项研究的目的是研究富含聚磷酸盐的生物体“ Candidatus Accumulibacter phosphatis phosphatis phosphatis”进化枝IIC的培养物将其代谢调节至不同磷酸盐利用率的能力。为此目的,生物质在具有乙酸盐的测序间歇反应器中培养,并在六个实验阶段中暴露于不同的磷酸盐/碳进水比。进行活性测试以确定厌氧动力学和化学计量参数以及微生物群落的组成。进水磷酸盐浓度的增加导致多磷酸盐含量的增加和生物质糖原含量的降低。响应于更高的生物质多磷酸盐含量,生物质显示出更高的特定磷酸盐释放速率。连同磷酸盐的释放速率,乙酸盐的摄取速率也增加到最合适的多磷酸盐/糖原比为0.3 P-mol / C-mol。在较高的多磷酸盐/糖原比率(在进水的P / C比率高于0.051 P-mol / C-mol时获得)下,乙酸盐的吸收速率开始降低。无氧转化的化学计量学清楚地表明,随着生物量多磷酸盐含量的增加,代谢从糖原为主的代谢转变为以多磷酸盐为主的代谢。 FISH和DGGE分析证实,微生物群落没有发生显着变化,这表明生物量活性的变化是由于不同的代谢行为引起的,从而使生物体在磷酸盐水平波动的条件下增殖。

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