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聚磷菌和聚糖原菌的脂肪酸组成及动力学比较。

Comparison of fatty acid composition and kinetics of phosphorus-accumulating organisms and glycogen-accumulating organisms.

作者信息

Wang J C, Park J K, Whang L M

机构信息

Department of Civil and Environmental Engineering, University of Wisconsin-Madison, 53706-1691, USA.

出版信息

Water Environ Res. 2001 Nov-Dec;73(6):704-10. doi: 10.2175/106143001x143448.

Abstract

It was demonstrated that glycogen-accumulating organisms (GAOs) were able to compete with phosphorus-accumulating organisms (PAOs) for acetate in a biological phosphorus removal (BPR) process, leading to a loss of BPR capability. Cellular fatty acid composition, which serves as a fingerprint for microbial identification, was used to determine microbial population change and to investigate the competition mechanisms of PAOs and GAOs. Analysis of cellular fatty acid composition indicated that PAOs grown with acetate and glucose were different species and that GAOs and PAOs grown with the same substrate were also different species. Glycogen-accumulating organisms seemed to coexist with PAOs even in a well-developed BPR process. The GAOs were able to accumulate more poly-beta-hydroxybutyrate (PHB) and glycogen than PAOs during the anaerobic stage of the BPR process. The GAOs synthesized more in-cell glycogen than PAOs. The growth rate for PAOs was always greater than that for GAOs at various acetate or glucose concentrations, while GAOs had higher acetate uptake and PHB synthesis rates than PAOs. Therefore, GAOs are thought to compete with PAOs only at long solids retention times (> or = 20 days).

摘要

结果表明,在生物除磷(BPR)过程中,糖原积累菌(GAOs)能够与聚磷菌(PAOs)竞争乙酸盐,导致生物除磷能力丧失。细胞脂肪酸组成可作为微生物鉴定的指纹图谱,用于确定微生物种群变化以及研究聚磷菌和糖原积累菌的竞争机制。细胞脂肪酸组成分析表明,以乙酸盐和葡萄糖为碳源生长的聚磷菌是不同的菌种,并且以相同底物生长的糖原积累菌和聚磷菌也是不同的菌种。即使在成熟的生物除磷工艺中,糖原积累菌似乎也能与聚磷菌共存。在生物除磷过程的厌氧阶段,糖原积累菌比聚磷菌能够积累更多的聚-β-羟基丁酸酯(PHB)和糖原。糖原积累菌合成的胞内糖原比聚磷菌更多。在不同的乙酸盐或葡萄糖浓度下,聚磷菌的生长速率始终高于糖原积累菌,而糖原积累菌的乙酸盐摄取率和PHB合成速率高于聚磷菌。因此,人们认为糖原积累菌仅在长污泥停留时间(≥20天)时才会与聚磷菌竞争。

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