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膜曝气生物膜中胞外聚合物的分布与组成

Distribution and composition of extracellular polymeric substances in membrane-aerated biofilm.

作者信息

Li Tinggang, Bai Renbi, Liu Junxin

机构信息

Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, People's Republic of China.

出版信息

J Biotechnol. 2008 May 20;135(1):52-7. doi: 10.1016/j.jbiotec.2008.02.011. Epub 2008 Feb 23.

Abstract

Extracellular polymeric substances (EPS) are one of the main components of the biofilm and perform important functions in the biofilm system. In this study, two membrane-aerated biofilms (MABs) were developed for the thin and thick biofilms under different surface loading rates (SLRs). Supplies of oxygen and substrates in the MAB were from two opposite directions. This counter diffusion of nutrients resulted in a different growth environment, in contrast to conventional biofilms receiving both oxygen and substrates from the same side. The compositions, distributions and physicochemical properties (solubility and bindability) of EPS in the MABs of different thicknesses under different SLRs were studied. The effect of dissolved oxygen (DO) concentration within the MAB on EPS properties and distribution was investigated. Experimental results showed the different biofilm thicknesses produced substantially different profiles of EPS composition and distribution. Soluble proteins were more dominant than soluble polysaccharides in the inner aerobic layer of the biofilms; in contrast, bound proteins were greater than bound polysaccharides in the outer anoxic or anaerobic layer of the biofilms. The biofilm-EPS matrix consisted mainly of bound EPS. Bound EPS exhibited a hump-shaped profile with the highest content occurring in an intermediate region in the thin MAB and relatively more uniformly in the one half of the biofilm close to the membrane side and then declined towards the biofilm-liquid interface in the thick MAB. The profiles of soluble EPS presented a similar declining trend from the membrane towards the outer region in both thin and thick MABs. The study suggested that not only EPS composition but also EPS distribution and properties (solubility and bindability) played a crucial role in controlling the cohesiveness and maintaining the structural stability and stratification of the MABs.

摘要

胞外聚合物(EPS)是生物膜的主要成分之一,在生物膜系统中发挥着重要作用。在本研究中,在不同表面负荷率(SLR)下,针对薄生物膜和厚生物膜培养了两种膜曝气生物膜(MAB)。MAB中的氧气和底物供应来自两个相反的方向。与从同一侧接收氧气和底物的传统生物膜相比,这种营养物质的反向扩散导致了不同的生长环境。研究了不同SLR下不同厚度MAB中EPS的组成、分布和物理化学性质(溶解性和结合性)。研究了MAB内溶解氧(DO)浓度对EPS性质和分布的影响。实验结果表明,不同的生物膜厚度产生了EPS组成和分布的显著差异。在生物膜的内层需氧层中,可溶性蛋白质比可溶性多糖更占优势;相反,在生物膜的外层缺氧或厌氧层中,结合蛋白大于结合多糖。生物膜-EPS基质主要由结合EPS组成。结合EPS呈现驼峰状分布,在薄MAB的中间区域含量最高,在厚MAB中靠近膜侧的生物膜一半区域相对更均匀,然后朝着生物膜-液体界面下降。在薄MAB和厚MAB中,可溶性EPS的分布从膜向外部区域都呈现出类似的下降趋势。该研究表明,不仅EPS组成,而且EPS分布和性质(溶解性和结合性)在控制MAB的内聚性以及维持其结构稳定性和分层方面都起着至关重要的作用。

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