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Proteins dominate in the surface layers formed on materials exposed to extracellular polymeric substances from bacterial cultures

机译:蛋白质在细菌培养物暴露于细胞外聚合物质的材料上形成的表面层中占主导地位

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The chemical compositions of the surface conditioning layers formed by different types of solutions (from isolated EPS to whole culture media), involving different bacterial strains relevant for biocorrosion were compared, as they may influence the initial step in biofilm formation. Different substrata (polystyrene, glass, steel) were conditioned and analyzed by X-ray photoelectron spectroscopy. Peak decomposition and assignment were validated by correlations between independent spectral data and the ubiquitous presence of organic contaminants on inorganic substrata was taken into account. Proteins or peptides were found to be a major constituent of all conditioning layers and polysaccharides were not present in appreciable concentrations; the proportion of nitrogen which may be due to DNA was lower than 15%. There was no significant difference between the compositions of the adlayers formed from different conditioning solutions, except for the adlayers produced with tightly bound EPS extracted from D. alaskensis.
机译:比较了由不同类型的溶液(从分离的EPS到整个培养基)形成的,涉及与生物腐蚀有关的不同细菌菌株的表面调节层的化学成分,因为它们可能会影响生物膜形成的初始步骤。对不同的基质(聚苯乙烯,玻璃,钢)进行处理并通过X射线光电子能谱进行分析。通过独立光谱数据之间的相关性验证了峰的分解和归属,并考虑了无机基质上普遍存在的有机污染物。发现蛋白质或肽是所有调理层的主要成分,多糖的含量不高。 DNA可能导致的氮比例低于15%。由不同的调节溶液形成的添加层的组成之间没有显着差异,除了使用从阿拉斯加落叶松中提取的紧密结合的EPS生成的添加层。

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