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Involvement of motility and flagella in Bacillus cereus biofilm formation

机译:运动和鞭毛在芽孢杆菌生物膜形成中的参与

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Bacillus cereus is a food-borne pathogen and a frequent contaminant of food production plants. The persistence of this pathogen in various environments results from the formation of spores and of biofilms. To investigate the role of the B. cereus flagellar apparatus in biofilm formation, we constructed a non-flagellated mutant and a flagellated but non-motile mutant. Unexpectedly, we found that the presence of flagella decreased the adhesion of the bacterium to glass surfaces. We hypothesize that this decrease is a consequence of the flagella hindering a direct interaction between the bacterial cell wall and the surface. In contrast, in specific conditions, motility promotes biofilm formation. Our results suggest that motility could influence biofilm formation by three mechanisms. Motility is necessary for the bacteria to reach surfaces suitable for biofilm formation. In static conditions, reaching the air–liquid interface, where the biofilm forms, is a strong requirement, whereas in flow cells bacteria can have access to the bottom glass slide by sedimentation. Therefore, motility is important for biofilm formation in glass tubes and in microtitre plates, but not in flow cells. Motility also promotes recruitment of planktonic cells within the biofilm by allowing motile bacteria to invade the whole biofilm. Finally, motility is involved in the spreading of the biofilm on glass surfaces.
机译:芽孢杆菌是一种食品传播的病原体和食品生产植物的常见污染物。这种病原体在各种环境中的持续存在导致孢子和生物膜的形成。为了探讨B.培养鞭毛装置在生物膜形成中的作用,我们构建了非鞭毛突变体和鞭打但非运动突变体。出乎意料的是,我们发现鞭毛的存在降低了细菌对玻璃表面的粘附性。我们假设这种减少是鞭毛阻碍细菌细胞壁和表面之间的直接相互作用的结果。相反,在特定条件下,动力促进生物膜形成。我们的研究结果表明,运动能够通过三种机制影响生物膜形成。细菌必须达到适合生物膜形成的表面是必要的。在静态条件下,到达气液界面,在生物膜形式的情况下是强烈的要求,而在流动细胞中,细菌可以通过沉降进入底部玻璃载玻片。因此,玻璃管中的生物膜形成和微量滴定板,但在流动细胞中是重要的。通过允许动机细菌侵入全生物膜,运动还促进了生物膜内的浮游细胞的募集。最后,动力涉及生物膜在玻璃表面上的展开。

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