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好氧颗粒对细菌黏附、生物膜形成和污泥颗粒化的群体感应效应。

The quorum-sensing effect of aerobic granules on bacterial adhesion, biofilm formation, and sludge granulation.

机构信息

Environmental Engineering Research Centre, Department of Civil Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong, China.

出版信息

Appl Microbiol Biotechnol. 2010 Oct;88(3):789-97. doi: 10.1007/s00253-010-2796-8. Epub 2010 Aug 4.

Abstract

Quorum sensing (QS) through signal chemical molecules is known to be essential to bacterial adhesion and biofilm formation. In this study, the QS ability of aerobic granules--a special form of biofilms used for biological wastewater treatment--was investigated and compared with that of conventional activated sludge flocs. A novel sectional membrane bioreactor was used together with a flow-cell to evaluate the possible influence of signal chemicals produced by the source sludge on the growth mode of bacterial cells. The results demonstrate the apparent production of QS chemicals from granules and its impact on initial cell attachment and granule formation. When granules were used as the signal-producing biomass, the attached-growth mode was dominant for the free cells, and the biofilm formation rate in the flow-cell was about ten times faster than in cases which used activated sludge as the signal source biomass. In addition, the intracellular extract from mature granules significantly accelerated the sludge granulation process. It is argued that the production and expression of QS signal chemicals from granules and granule precursors might have induced the gene expression of bacteria in suspension for attached growth rather than suspended growth, leading to granule formation and its stable structure.

摘要

群体感应(QS)通过信号化学分子对于细菌黏附和生物膜形成至关重要。在这项研究中,研究了好氧颗粒(一种用于生物废水处理的特殊生物膜形式)的 QS 能力,并将其与传统活性污泥絮体进行了比较。使用新型分段膜生物反应器和流动池来评估源污泥产生的信号化学物质对细菌细胞生长模式的可能影响。结果表明,颗粒明显产生了 QS 化学物质,并对初始细胞附着和颗粒形成产生了影响。当颗粒用作产生信号的生物量时,附着生长模式对于游离细胞占主导地位,并且在流动池中生物膜形成速率比使用活性污泥作为信号源生物量的情况快约十倍。此外,成熟颗粒的细胞内提取物显著加速了污泥颗粒化过程。有人认为,颗粒和颗粒前体产生和表达 QS 信号化学物质可能诱导悬浮细菌的基因表达为附着生长而不是悬浮生长,从而导致颗粒形成及其稳定结构。

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