Department of Environmental Microbiology, School of Biotechnology, Royal Institute of Technology, AlbaNova University Centre, S-106 91 Stockholm, Sweden.
Microbiol Res. 2011 Sep 20;166(6):449-57. doi: 10.1016/j.micres.2010.08.005. Epub 2010 Sep 24.
The study of biofilm function, structure and microbial interactions might help to improve our understanding of biofilm wastewater treatment processes. However, few reports specifically address the influence of interactions within multispecies biofilms on microbial activity and biofilm composition. Thus, the relationship between biofilm formation, denitrification activity, phosphorus removal and the composition of extracellular polymeric substances (EPS), exopolysaccharides and the bacterial community was investigated using biofilms of denitrifying and phosphorus removing strains Comamonas denitrificans 110, Brachymonas denitrificans B79, Aeromonas hydrophila L6 and Acinetobacter calcoaceticus ATCC23055. Denitrification activity within the biofilms generally increased with the amount of biofilm while phosphorus removal depended on bacterial growth rate. Synergistic effects of co-growth on denitrification (B. denitrificans B79 and A. hydrophila L6) and phosphorus removal (C. denitrificans 110 with either A. calcoaceticus or A. hydrophila L6) were observed. B. denitrificans B79 was highly affected by interspecies interactions with respect to biofilm formation, denitrification activity and EPS composition, while C. denitrificans 110 remained largely unaffected. In some of the dual and quadruple strain biofilms new exopolysaccharide monomers were detected which were not present in the pure strain samples.
研究生物膜的功能、结构和微生物相互作用可能有助于提高我们对生物膜废水处理过程的理解。然而,很少有报告专门针对多物种生物膜内部相互作用对微生物活性和生物膜组成的影响。因此,使用具有脱氮和除磷功能的菌株 Comamonas denitrificans 110、Brachymonas denitrificans B79、Aeromonas hydrophila L6 和 Acinetobacter calcoaceticus ATCC23055 的生物膜,研究了生物膜形成、反硝化活性、磷去除以及胞外聚合物物质 (EPS)、胞外多糖和细菌群落的组成之间的关系。生物膜内的反硝化活性通常随生物膜量的增加而增加,而磷去除取决于细菌生长速率。发现共生长对反硝化(B. denitrificans B79 和 A. hydrophila L6)和磷去除(C. denitrificans 110 与 A. calcoaceticus 或 A. hydrophila L6 共生长)具有协同作用。B. denitrificans B79 的生物膜形成、反硝化活性和 EPS 组成受种间相互作用的影响很大,而 C. denitrificans 110 则基本不受影响。在一些双菌株和四菌株生物膜中,检测到了一些新的胞外多糖单体,而这些单体在纯菌株样本中不存在。