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In situ detection of cell surface hydrophobicity of probe-defined bacteria in activated sludge

机译:原位检测活性污泥中探针定义细菌的细胞表面疏水性

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The surface hydrophobicity of different types of bacteria in activated sludge were investigated under in situ conditions by following the adhesion of fluorescent microspheres with defined surface properties to bacterial surfaces (the MAC-method). This technique was combined with identification of the bacteria with fluorescence in situ hybridization with rRNA-targeted oligonucleotides (FISH) and could thus be used for characterization of surface properties of probe-defined bacteria directly in a complex system without prior enrichment or isolation. This MAC-FISH technique could be used for single bacteria as well as filamentous bacteria. In the investigated activated sludge from an industrial wastewater treatment plant, two types of filamentous bacteria dominated. One morphotype consistently attracted only very few hydrophobic microspheres, indicating that the thin sheath of exopolymers around the cells had a hydrophilic surface. Use of a hierarchical set of gene probes revealed that these filaments were sulphide oxidising Thiothrix spp. The other predominating filamentous morphotype had a thick. very hydrophobic exopolymeric sheath. This filamentous bacterium was found to belong to the alpha-Proteobacteria. The relevance of the significant differences in surface hydrophobicity for the two morphotypes in respect to substrate uptake and flee formation is discussed. [References: 10]
机译:在原位条件下,通过追踪具有定义的表面性质的荧光微球与细菌表面的粘附(MAC方法),研究了活性污泥中不同类型细菌的表面疏水性。该技术与通过rRNA靶向的寡核苷酸(FISH)进行荧光原位杂交与细菌鉴定相结合,因此可直接用于复杂系统中探针定义的细菌的表面特性表征,而无需事先进行富集或分离。此MAC-FISH技术可用于单一细菌以及丝状细菌。在研究中的工业废水处理厂活性污泥中,两种类型的丝状细菌占主导地位。一种形态类型始终仅吸引很少的疏水性微球,表明细胞周围的外聚体薄鞘具有亲水性表面。使用一组分层的基因探针显示,这些细丝是硫化物氧化的硫磷菌。另一个主要的丝状形态具有较厚的形态。疏水性高分子外护套。发现该丝状细菌属于α-变形杆菌。讨论了两种形态型在表面疏水性方面的显着差异与底物吸收和起绒形成的相关性。 [参考:10]

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