Bereschenko L A, Stams A J M, Heilig G H J, Euverink G J W, Nederlof M M, Van Loosdrecht M C M
Wetsus, Centre for Sustainable Water Technology, 8900 CC, Leeuwarden.
Water Sci Technol. 2007;55(8-9):181-90. doi: 10.2166/wst.2007.257.
In the present study, the diversity and the phylogenetic affiliation of bacteria in a biofouling layer on reverse osmosis (RO) membranes were determined. Fresh surface water was used as a feed in a membrane-based water purification process. Total DNA was extracted from attached cells from feed spacer, RO membrane and product spacer. Universal primers were used to amplify the bacterial 16S rRNA genes. The biofilm community was analysed by 16S rRNA-gene-targeted denaturing gradient gel electrophoresis (DGGE) and the phylogenetic affiliation was determined by sequence analyses of individual 16S rDNA clones. Using this approach, we found that five distinct bacterial genotypes (Sphingomonas, Beta proteobacterium, Flavobacterium, Nitrosomonas and Sphingobacterium) were dominant genera on surfaces of fouled RO membranes. Moreover, the finding that all five "key players" could be recovered from the cartridge filters of this RO system, which cartridge filters are positioned before the RO membrane, together with literature information where these bacteria are normally encountered, suggests that these microorganisms originate from the feed water rather than from the RO system itself, and represent the fresh water bacteria present in the feed water, despite the fact that the feed water passes an ultrafiltration (UF) membrane (pore size approximately 40 nm), which is able to remove microorganisms to a large extent.
在本研究中,测定了反渗透(RO)膜生物污垢层中细菌的多样性和系统发育关系。在基于膜的水净化过程中,使用新鲜地表水作为进料。从进料间隔物、RO膜和产品间隔物上附着的细胞中提取总DNA。使用通用引物扩增细菌16S rRNA基因。通过针对16S rRNA基因的变性梯度凝胶电泳(DGGE)分析生物膜群落,并通过对单个16S rDNA克隆的序列分析确定系统发育关系。使用这种方法,我们发现五种不同的细菌基因型(鞘氨醇单胞菌属、β-变形杆菌属、黄杆菌属、亚硝化单胞菌属和鞘氨醇杆菌属)是受污染RO膜表面的优势菌属。此外,所有这五种“关键参与者”都可以从该RO系统的滤芯中回收,这些滤芯位于RO膜之前,再结合这些细菌通常出现的文献信息,表明这些微生物起源于进水而非RO系统本身,并且代表了进水中存在的淡水细菌,尽管进水经过了超滤(UF)膜(孔径约40 nm),该超滤膜能够在很大程度上去除微生物。