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Rhodococcus erythropolis cells adapt their fatty acid composition during biofilm formation on metallic and non-metallic surfaces

机译:rhodococcus eryhropolis细胞在金属和非金属表面上的生物膜形成过程中适应它们的脂肪酸组成

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摘要

Several parameters are involved in bacterial adhesion and biofilm formation including surface type, medium composition and cellular surface hydrophobicty. When the cells are placed inside tubes, parameters such as oxygen availability should also influence cell adhesion. To understand which cellular lipids are involved in the molecular events of biofilm formation in Rhodococcus erythropolis, cell adhesion was promoted on different metallic and non-metallic surfaces immersed in culture media. These cells were able to modulate the fatty acid composition of the cell membrane in response to both the surface to which they adhered and the growth medium used. To assess the response of the cells to both surfaces and operational conditions, biofilms were also promoted inside a reactor built with five different types of tubes and with medium recirculation. The biofilm biomass could be directly related not to the hydrophobicity of the tubes used but to the oxygen permeability of the tubes. Besides this, cell age influenced the adhesion of the R. erythropolis cells to the tubes. Principal component analysis showed that the lipid composition of the cells could separate cells attached to metallic from those on non-metallic surfaces in the plane formed by PC1 and PC2, and influence biofilm biomass.
机译:几种参数涉及细菌粘附和生物膜形成,包括表面型,培养基组成和细胞表面疏水。当细胞放置在管内时,诸如氧可用性的参数也应该影响细胞粘附。为了了解哪些细胞脂质涉及罗达科射频中的生物膜形成的分子事件,在浸入培养基中的不同金属和非金属表面上促进了细胞粘附。这些细胞能够响应于它们粘附的表面和所用的生长培养基来调节细胞膜的脂肪酸组合物。为了评估细胞对表面和操作条件的响应,还在用五种不同类型的管和培养基再循环内部构建的反应器内促进生物膜。生物膜生物质可以直接相关,而不是用于管的管的疏水性,而是对管的透氧性。除此之外,细胞年龄还影响了R. erythopolis细胞对管的粘附性。主成分分析表明,细胞的脂质组合物可以将连接到金属的细胞与由PC1和PC2形成的平面中的非金属表面上的金属表面分离,并影响生物膜生物质。

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