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Bacterial hydrophobicity, an overall parameter for the measurement of adhesion potential to soil particles.

机译:细菌疏水性,用于测量对土壤颗粒的附着力的总体参数。

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The adhesion of Salmonella typhimurium to the mineral particles quartz, albite, feldspar, and magnetite was shown to correlate with the hydrophobicity of the cell surface as measured by hydrophobic interaction chromatography. The same effects were also seen for seven other selected test strains, including Streptococcus faecalis, Streptococcus faecium, Escherichia coli, Citrobacter freundii, Shigella sonnei, and Shigella boydii. When the test strain of Salmonella typhimurium, was repeatedly cultivated in Luria broth, thus selecting for different degrees of fimbriation and roughness of the cell surface, varied cell hydrophobicity but constant negative and positive charge values were obtained. High hydrophobicity values always coincided with enhanced adhesion to the mineral particles. The negative charge of the bacterial surface as measured by electrostatic interaction chromatography appeared to play no role in the adhesion event. However, the positive charges on the cell surface contributed to the adhesion process. This was especially evident for cells exhibiting a high degree of hydrophobicity. Alteration of the pH between 4 and 9 did not significantly affect the adhesion process.
机译:结果表明,鼠伤寒沙门氏菌对石英,钠长石,长石和磁铁矿等矿物颗粒的附着力与细胞表面的疏水性相关,如通过疏水作用色谱法所测。对于其他七个选定的测试菌株,包括粪链球菌,粪链球菌,大肠埃希氏菌,弗氏柠檬酸杆菌,索尼氏志贺氏菌和博伊氏志贺氏菌,也观察到了相同的效果。当鼠伤寒沙门氏菌的测试菌株在Luria肉汤中重复培养时,选择不同程度的纤维化和细胞表面粗糙度,可以得到变化的细胞疏水性,但获得恒定的负电荷和正电荷值。高疏水性值总是与增强的对矿物颗粒的附着力相吻合。通过静电相互作用色谱法测量的细菌表面的负电荷似乎在粘附事件中不起作用。但是,细胞表面的正电荷有助于粘附过程。这对于表现出高度疏水性的细胞尤其明显。 pH在4到9之间变化不会显着影响粘附过程。

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