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生物除磷过程中的多级相关性:从细菌富集到基于电导率的代谢批次试验和多聚磷酸酶测定

Multilevel correlations in the biological phosphorus removal process: From bacterial enrichment to conductivity-based metabolic batch tests and polyphosphatase assays.

作者信息

Weissbrodt David G, Maillard Julien, Brovelli Alessandro, Chabrelie Alexandre, May Jonathan, Holliger Christof

机构信息

Ecole Polytechnique Fédérale de Lausanne, School of Architecture, Civil and Environmental Engineering, Laboratory for Environmental Biotechnology, Switzerland.

出版信息

Biotechnol Bioeng. 2014 Dec;111(12):2421-35. doi: 10.1002/bit.25320. Epub 2014 Sep 10.

DOI:10.1002/bit.25320
PMID:24975745
Abstract

Enhanced biological phosphorus removal (EBPR) from wastewater relies on the preferential selection of active polyphosphate-accumulating organisms (PAO) in the underlying bacterial community continuum. Efficient management of the bacterial resource requires understanding of population dynamics as well as availability of bioanalytical methods for rapid and regular assessment of relative abundances of active PAOs and their glycogen-accumulating competitors (GAO). A systems approach was adopted here toward the investigation of multilevel correlations from the EBPR bioprocess to the bacterial community, metabolic, and enzymatic levels. Two anaerobic-aerobic sequencing-batch reactors were operated to enrich activated sludge in PAOs and GAOs affiliating with "Candidati Accumulibacter and Competibacter phosphates", respectively. Bacterial selection was optimized by dynamic control of the organic loading rate and the anaerobic contact time. The distinct core bacteriomes mainly comprised populations related to the classes Betaproteobacteria, Cytophagia, and Chloroflexi in the PAO enrichment and of Gammaproteobacteria, Alphaproteobacteria, Acidobacteria, and Sphingobacteria in the GAO enrichment. An anaerobic metabolic batch test based on electrical conductivity evolution and a polyphosphatase enzymatic assay were developed for rapid and low-cost assessment of the active PAO fraction and dephosphatation potential of activated sludge. Linear correlations were obtained between the PAO fraction, biomass specific rate of conductivity increase under anaerobic conditions, and polyphosphate-hydrolyzing activity of PAO/GAO mixtures. The correlations between PAO/GAO ratios, metabolic activities, and conductivity profiles were confirmed by simulations with a mathematical model developed in the aqueous geochemistry software PHREEQC.

摘要

从废水中强化生物除磷(EBPR)依赖于在潜在细菌群落连续体中对活性聚磷积累生物体(PAO)的优先选择。对细菌资源的有效管理需要了解种群动态以及用于快速定期评估活性PAO及其糖原积累竞争者(GAO)相对丰度的生物分析方法。本文采用系统方法研究从EBPR生物过程到细菌群落、代谢和酶水平的多层次相关性。运行了两个厌氧-好氧序批式反应器,分别富集与“候选聚磷菌属和磷酸盐竞争菌属”相关的PAO和GAO的活性污泥。通过动态控制有机负荷率和厌氧接触时间来优化细菌选择。在PAO富集物中,不同的核心细菌群落主要由与β-变形菌纲、噬纤维菌纲和绿弯菌纲相关的种群组成,而在GAO富集物中,则由γ-变形菌纲、α-变形菌纲、酸杆菌纲和鞘脂杆菌纲相关的种群组成。开发了一种基于电导率变化的厌氧代谢批式试验和一种多磷酸酶酶活性测定方法,用于快速低成本评估活性污泥中活性PAO部分和脱磷潜力。在PAO部分、厌氧条件下生物量电导率增加的比速率以及PAO/GAO混合物的多磷酸盐水解活性之间获得了线性相关性。通过在水地球化学软件PHREEQC中开发的数学模型进行模拟,证实了PAO/GAO比率、代谢活性和电导率曲线之间的相关性。

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