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首页> 外文期刊>Biofouling >Role of type 1 fimbriae and mannose in the development of Escherichia coli K12 biofilm: from initial cell adhesion to biofilm formation
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Role of type 1 fimbriae and mannose in the development of Escherichia coli K12 biofilm: from initial cell adhesion to biofilm formation

机译:1型菌毛和甘露糖在大肠杆菌K12生物膜发育中的作用:从最初的细胞粘附到生物膜形成

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The influence of type 1 fimbriae, mannose-sensitive structures, on biofilm development and maturation has been examined by the use of three isogenic Escherichia coli K12 strains: wild type, fimbriated, and non-fimbriated. Experiments with the three strains were done in minimal medium or Luria-Bertani broth supplemented with different concentrations of D-mannose. The investigation consisted of: (1) characterizing the bacterial surface of the three strains with respect to hydrophilicity and surface charge, (2) investigating the effect of type 1 fimbriae on bacterial adhesion rate and reversibility of initial adhesion on glass surfaces, and (3) verifying the role of type 1 fimbriae and exopolysaccharides (EPS) in biofilm maturation. The results suggest that type 1 fimbriae are not required for the initial bacterial adhesion on glass surfaces as the non-fimbriated cells had higher adhesion rates and irreversible deposition. Type 1 fimbriae, however, are critical for subsequent biofilm development. It was hypothesized that in the biofilm maturation step, the cells synthesize mannose-rich EPS, which functions as a 'conditioning film' that can be recognized by the type 1 fimbriae.
机译:1型菌毛,甘露糖敏感结构对生物膜发育和成熟的影响已通过使用三种同基因的大肠杆菌K12菌株进行了检验:野生型,菌毛和非菌毛。在添加了不同浓度D-甘露糖的基本培养基或Luria-Bertani肉汤中对这三种菌株进行了实验。研究包括:(1)从亲水性和表面电荷方面表征这三种菌株的细菌表面,(2)研究1型菌毛对细菌粘附率和玻璃表面初始粘附性的可逆性的影响,以及(3 )验证1型菌毛和胞外多糖(EPS)在生物膜成熟中的作用。结果表明,玻璃纤维表面的初始细菌粘附不需要1型菌毛,因为非菌毛细胞具有更高的粘附率和不可逆的沉积。然而,1型菌毛对于随后的生物膜发育至关重要。据推测,在生物膜成熟步骤中,细胞合成了富含甘露糖的EPS,其充当“调节膜”,可以被1型菌毛识别。

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