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微生物胞外聚合物(EPSs)的相关性——第一部分:结构与生态方面

Relevance of microbial extracellular polymeric substances (EPSs)--Part I: Structural and ecological aspects.

作者信息

Flemming H C, Wingender J

机构信息

Department of Aquatic Microbiology, Gerhard-Mercator-University Duisburg, Geibelstr. 41, D-47057, Duisburg, Germany.

出版信息

Water Sci Technol. 2001;43(6):1-8.

Abstract

Extracellular polymeric substances are the construction materials for microbial aggregates such as biofilms, flocs ("planktonic biofilms") and sludge. Their major components are not only polysaccharides but also proteins and in some cases lipids, with minor contents of nucleic acids and other biopolymers. In the EPS, biofilm organisms can establish stable arrangements and function multicellularly as synergistic microconsortia. The matrix facilitates the retention of exoenzymes, cellular debris and genetic material; it can be considered as a microbial recycling yard. Gradients can develop due to the physiological activity and the fact that diffusive mass transport prevails over convective transport in the matrix. Biofilm cells tolerate higher concentrations of many biocides. The EPS matrix sequesters nutrients from the water phase. In photosynthetic communities, EPS molecules can function as light transmitters and provide photons to organisms located deeper in a microbial mat. The EPS matrix is a dynamic system, constructed by the organisms and responding to environmental changes. It enables the cells to function in a manner similar to multicellular organisms.

摘要

胞外聚合物是微生物聚集体(如生物膜、絮体(“浮游生物膜”)和污泥)的结构材料。其主要成分不仅有多糖,还有蛋白质,在某些情况下还有脂质,核酸和其他生物聚合物的含量较少。在胞外聚合物中,生物膜微生物可以建立稳定的排列,并作为协同微群落进行多细胞功能活动。基质有助于胞外酶、细胞碎片和遗传物质的保留;它可被视为一个微生物回收场。由于生理活动以及在基质中扩散传质比对流传输占优势这一事实,会形成梯度。生物膜细胞能耐受更高浓度的许多杀菌剂。胞外聚合物基质从水相中螯合营养物质。在光合群落中,胞外聚合物分子可作为光传输体,为位于微生物垫中较深处的生物体提供光子。胞外聚合物基质是一个动态系统,由生物体构建并对环境变化做出反应。它使细胞能够以类似于多细胞生物的方式发挥功能。

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