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Prevalence of ‘ Candidatus Accumulibacter phosphatis’ type II under phosphate limiting conditions

机译:在磷酸盐限制条件下,II型“磷脂酸假丝酵母”的患病率

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摘要

P-limitation in enhanced biological phosphorus removal (EBPR) systems fed with acetate, has generally been considered as a condition leading to enrichment of organisms of the genotype’ Candidatus Competibacter phosphatis’ expressing the glycogen-accumulating organisms (GAO) phenotype. Recent studies have demonstrated in short-term experiments that organisms of the genotype ‘Candidatus Accumulibacter phosphatis’ clade I and II, known to express the polyphosphate-accumulating organisms (PAO) phenotype can switch to the GAO phenotype when poly-P is absent, but are performing the HAc-uptake at lower kinetic rates, where clade I showed the lowest rates. The objective of this study was to verify whether organisms of the genotype ‘Candidatus Accumulibacter phosphatis’ can also be enriched under P-limiting conditions while expressing a GAO phenotype and more specifically to see which specific clade prevails. A sequencing batch reactor was inoculated with activated sludge to enrich an EBPR culture for a cultivation period of 128?days (16 times the solids retention time) under P-limiting conditions. A mixed culture was obtained comprising of 49?% ‘Candidatus Accumulibacter phosphatis’ clade II and 46?% ‘Candidatus Competibacter phosphatis’. The culture performed a full GAO metabolism for anaerobic HAc-uptake, but was still able to switch to a PAO metabolism, taking up excessive amounts of phosphate during the aerobic phase when it became available in the influent. These findings show that P-limitation, often used as strategy for enrichment of ‘Candidatus Competibacter phosphatis’, does not always lead to enrichment of only ‘Candidatus Competibacter phosphatis’. Furthermore, it demonstrates that ‘Candidatus Accumulibacter phosphatis’ are able to proliferate in activated sludge systems for periods of up to 128?days or longer when the influent phosphate concentrations are just enough for assimilation purposes and no poly-P is formed. The ‘Candidatus Accumulibacter phosphatis’ retain the ability to switch to the PAO phenotype, taking up phosphate from the influent as soon as it becomes available.
机译:人们普遍认为,添加乙酸盐的增强型生物除磷(EBPR)系统中的P限制是导致表达糖原累积性生物(GAO)表型的基因型“念珠菌磷脂菌”富集的条件。最近的研究已在短期实验中证明,基因型为“ Candidatus Accumulibacter phosphatis phosphatis phosphatis phosphatis phosphatis phosphatis phosphatis phosphatis”的基因型Ⅰ和Ⅱ可以在没有poly-P的情况下转换为GAO表型。正在以较低的动力学速率进行HAc吸收,其中进化枝I的速率最低。这项研究的目的是验证“ Pandidatus Accumulibacter phosphatis”基因型生物是否也可以在P限制条件下富集,同时表达GAO表型,更具体地说,看看哪个特定进化枝占优势。在P限制条件下,用活性污泥接种定序批处理反应器以富集EBPR培养物,培养时间为128天(固体保留时间的16倍)。获得了混合培养物,其中包含49%的“ Candidatus Accumulibacter phosphatis磷脂球”进化枝II和46%的“ Candidatus Competibacter phosphatis”。该培养物进行了完整的GAO代谢以吸收无氧的HAc,但仍能够转换为PAO代谢,在好氧阶段(当进水中可用时)会吸收过量的磷酸盐。这些发现表明,通常将P限制用作“磷脂竞争杆菌”的富集策略,但并不总是导致“磷酸竞争杆菌”的富集。此外,它表明,当进水磷酸盐浓度刚好足以同化且未形成多聚P时,“ Candidatus Accumulibacter phosphatis”能够在活性污泥系统中增殖长达128天或更长的时间。 ‘Candidatus Accumulibacter phosphatis(Candidatus Accumulibacter phosphatis)’保留了切换至PAO表型的能力,可在进水后立即从进水中吸收磷酸盐。

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