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Bacteria Associated with Benthic Diatoms from Lake Constance: Phylogeny and Influences on Diatom Growth and Secretion of Extracellular Polymeric Substances

机译:与康斯坦茨湖底栖硅藻相关的细菌:系统发育及其对硅藻生长和细胞外聚合物质分泌的影响

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摘要

The composition of diatom-associated bacterial communities was studied with 14 different unialgal xenic diatom cultures isolated from freshwater epilithic biofilms of Lake Constance, Germany. A clear dominance of Alphaproteobacteria was observed, followed by Betaproteobacteria, Gammaproteobacteria, Bacteroidetes, and Verrucomicrobia. Pure cultures of the diatom Cymbella microcephala, which was found to be dominant in epilithic biofilms in Lake Constance, were cocultivated with six associated bacterial strains. All these bacterial strains were able to grow in C. microcephala cultures in the absence of organic cosubstrates. Diatom growth was generally enhanced in the presence of bacteria, and polysaccharide secretion was generally increased in the presence of Proteobacteria. The monomer composition of extracellular polysaccharides of C. microcephala changed in relation to the presence of different bacteria, but the dominant monomers were less affected. Our results indicate that these changes were caused by the diatom itself rather than by specific bacterial degradation. One Bacteroidetes strain strongly influenced carbohydrate secretion by the alga via extracellular soluble compounds. Biofilms were formed only in the presence of bacteria. Phylogenetic analysis and coculture studies indicate an adaptation of Proteobacteria and Bacteroidetes to the microenvironment created by the diatom biofilm.
机译:硅藻相关细菌群落的组成进行了研究,从德国博登湖的淡水表层生物膜中分离出14种不同的单藻类异种硅藻培养物。观察到了明显的支原体细菌,其次是贝塔氏杆菌,丙种细菌,拟杆菌和疣状微生物。将硅藻小头藻的纯培养物与六种相关细菌菌株共培养,这是在康斯坦茨湖上石板生物膜中占主导地位的。在没有有机共底物的情况下,所有这些细菌菌株都能在小头孢菌培养物中生长。在细菌的存在下,硅藻的生长通常会增强,而在变形杆菌的存在下,多糖的分泌通常会增加。细头梭菌胞外多糖的单体组成随不同细菌的存在而变化,但主要单体受到的影响较小。我们的结果表明,这些变化是由硅藻本身而不是特定的细菌降解引起的。一种拟杆菌属菌株通过细胞外可溶性化合物强烈影响藻类的碳水化合物分泌。生物膜仅在细菌存在下形成。系统发育分析和共培养研究表明,变形杆菌和拟杆菌适应硅藻生物膜产生的微环境。

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