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基于胞内聚合物谱分析和代谢多样性及异质性的研究,鉴定增强型生物除磷工艺中具有功能相关性的微生物种群。

Identification of functionally relevant populations in enhanced biological phosphorus removal processes based on intracellular polymers profiles and insights into the metabolic diversity and heterogeneity.

机构信息

Department of Civil & Environmental Engineering, Northeastern University, 360 Huntington Avenue, Boston, Massachusetts 02115, USA.

出版信息

Environ Sci Technol. 2012 May 1;46(9):5010-7. doi: 10.1021/es300044h. Epub 2012 Apr 17.

Abstract

This study proposed and demonstrated the application of a new Raman microscopy-based method for metabolic state-based identification and quantification of functionally relevant populations, namely polyphosphate accumulating organisms (PAOs) and glycogen accumulating organisms (GAOs), in enhanced biological phosphorus removal (EBPR) system via simultaneous detection of multiple intracellular polymers including polyphosphate (polyP), glycogen, and polyhydroxybutyrate (PHB). The unique Raman spectrum of different combinations of intracellular polymers within a cell at a given stage of the EBPR cycle allowed for its identification as PAO, GAO, or neither. The abundance of total PAOs and GAOs determined by Raman method were consistent with those obtained with polyP staining and fluorescence in situ hybridization (FISH). Different combinations and quantities of intracellular polymer inclusions observed in single cells revealed the distribution of different sub-PAOs groups among the total PAO populations, which exhibit phenotypic and metabolic heterogeneity and diversity. These results also provided evidence for the hypothesis that different PAOs may employ different extents of combination of glycolysis and TCA cycle pathways for anaerobic reducing power and energy generation and it is possible that some PAOs may rely on TCA cycle solely without glycolysis. Sum of cellular level quantification of the internal polymers associated with different population groups showed differentiated and distributed trends of glycogen and PHB level between PAOs and GAOs, which could not be elucidated before with conventional bulk measurements of EBPR mixed cultures.

摘要

本研究提出并展示了一种新的基于拉曼显微镜的方法,用于通过同时检测多种细胞内聚合物(包括多磷酸盐 (polyP)、糖原和聚羟基丁酸酯 (PHB)),对增强型生物除磷 (EBPR) 系统中基于代谢状态的功能相关种群(即聚磷酸盐积累菌 (PAO) 和糖原积累菌 (GAO))进行识别和定量。在 EBPR 周期的给定阶段,细胞内不同组合的聚合物的独特拉曼光谱可将其识别为 PAO、GAO 或两者都不是。通过拉曼法确定的总 PAO 和 GAO 的丰度与通过多磷酸盐染色和荧光原位杂交 (FISH) 获得的丰度一致。单个细胞中观察到的细胞内聚合物内含物的不同组合和数量揭示了总 PAO 群体中不同亚 PAO 群体的分布,这些群体表现出表型和代谢异质性和多样性。这些结果还为以下假设提供了证据:不同的 PAO 可能在无氧还原力和能量生成方面采用不同程度的糖酵解和三羧酸 (TCA) 循环途径的组合,并且一些 PAO 可能仅依赖 TCA 循环而不依赖糖酵解。与不同群体相关的内部聚合物的细胞水平定量总和显示了 PAO 和 GAO 之间糖原和 PHB 水平的差异化和分布趋势,这在以前使用 EBPR 混合培养物的常规批量测量方法无法阐明。

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