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1 型菌毛和鞭毛在 中的共表达:对界面粘附的影响。

Co-Expression of type 1 fimbriae and flagella in : consequences for adhesion at interfaces.

机构信息

Department of Chemical and Biomolecular Engineering, University of Houston, Houston, TX 77204, USA.

出版信息

Soft Matter. 2024 Sep 25;20(37):7397-7404. doi: 10.1039/d4sm00499j.

Abstract

expresses surface appendages including fimbriae, flagella, and curli, at various levels in response to environmental conditions and external stimuli. Previous studies have revealed an interplay between expression of fimbriae and flagella in several strains, but how this regulation between fimbrial and flagellar expression affects adhesion to interfaces is incompletely understood. Here, we investigate how the concurrent expression of fimbriae and flagella by engineered strains of MG1655 affects their adhesion at liquid-solid and liquid-liquid interfaces. We tune fimbrial and flagellar expression on the cell surface through plasmid-based inducible expression of the operon and genes. We show that increased fimbrial expression increases interfacial adhesion as well as bacteria-driven actuation of micron-sized objects. Co-expression of flagella in fimbriated bacteria, however, does not greatly affect either of these properties. Together, these results suggest that interfacial adhesion as well as motion actuated by adherent bacteria can be altered by controlling the expression of surface appendages.

摘要

在各种环境条件和外部刺激下,表达表面附属物,包括菌毛、鞭毛和卷曲菌,在不同水平上。先前的研究揭示了几种 菌株中菌毛和鞭毛表达之间的相互作用,但这种菌毛和鞭毛表达之间的调节如何影响对界面的粘附还不完全清楚。在这里,我们研究了通过工程化的 MG1655 菌株同时表达菌毛和鞭毛如何影响它们在液-固和液-液界面的粘附。我们通过基于质粒的诱导表达 操纵子和 基因来调节细胞表面上菌毛和鞭毛的表达。我们表明,菌毛表达的增加会增加界面粘附以及细菌驱动的微米大小物体的驱动。然而,在菌毛细菌中共同表达鞭毛对这两种性质都没有很大影响。总之,这些结果表明,通过控制表面附属物的表达,可以改变界面粘附以及由附着细菌驱动的运动。

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