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首页> 外文期刊>Journal of Clinical Microbiology >Variability of cell surface hydrophobicity among Pasteurella multocida somatic serotype and Actinobacillus lignieresii strains.
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Variability of cell surface hydrophobicity among Pasteurella multocida somatic serotype and Actinobacillus lignieresii strains.

机译:多杀性巴斯德氏菌体细胞血清型和放线放线杆菌菌株之间细胞表面疏水性的变化。

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Pasteurella multocida possesses a characteristically gram-negative ultrastructure, yet its inability to grow in the presence of hydrophobic compounds and the general penicillin susceptibility of genera making up the family Pasteurellaceae suggest a cell envelope having atypical permeability properties. The cell surface hydrophobicity properties of strains representing 15 of the 16 somatic serotypes of P. multocida and three strains of Actinobacillus lignieresii were assessed with hydrocarbon adherence and hydrophobic interaction chromatographic assays. These methods revealed surface hydrophobicity to vary dramatically among strains in both species. No direct correlation was observed with species, growth rate, or susceptibility to the antibiotics oxytetracycline (polar), polymyxin B (amphiphilic), or novobiocin (nonpolar) as measured with MIC determinations. All strains were susceptible to the antibiotics, although A. lignieresii was significantly less susceptible than P. multocida to novobiocin. These data suggest that cell surface hydrophobicity in P. multocida may be influenced by the type of lipopolysaccharide present but is not directly related to permeability of the antibiotics examined. The wide diversity of hydrophobic properties exhibited by strains of both P. multocida and A. lignieresii precludes the use of this parameter as a taxonomic acid.
机译:多杀巴斯德氏菌具有特征性的革兰氏阴性超微结构,但是其不能在疏水化合物存在下生长,并且组成巴斯德氏菌科的属一般对青霉素的敏感性表明其具有非典型的渗透性。用烃粘附和疏水相互作用色谱分析法评估了代表多杀毕赤酵母的16种体型血清型中的15种菌株和轻木放线杆菌的3种菌株的细胞表面疏水性。这些方法揭示了表面疏水性在两个物种的菌株之间显着变化。通过MIC测定,未观察到与物种,生长速度或对抗生素土霉素(极性),多粘菌素B(两亲性)或新霉素(非极性)的敏感性直接相关。所有菌株均对抗生素敏感,尽管木霉曲霉对新霉素的敏感性比多杀疟原虫低得多。这些数据表明,多杀性巴氏杆菌的细胞表面疏水性可能受存在的脂多糖类型的影响,但与所检查抗生素的渗透性没有直接关系。多杀性巴氏杆菌和木霉曲霉菌株均显示出广泛的疏水性,因此无法使用该参数作为生物分类酸。

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