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首页> 外文期刊>Environmental microbiology >Roles of type IV pili, flagellum-mediated motility and extracellular DNA in the formation of mature multicellular structures in Pseudomonas aeruginosa biofilms
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Roles of type IV pili, flagellum-mediated motility and extracellular DNA in the formation of mature multicellular structures in Pseudomonas aeruginosa biofilms

机译:铜绿假单胞菌生物膜中IV型菌毛,鞭毛介导的运动性和细胞外DNA在成熟多细胞结构形成中的作用

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When grown as a biofilm in laboratory flow chambers Pseudomonas aeruginosa can develop mushroom-shaped multicellular structures consisting of distinct subpopulations in the cap and stalk portions. We have previously presented evidence that formation of the cap portion of the mushroom-shaped structures in P. aeruginosa biofilms occurs via bacterial migration and depends on type IV pili (Mol Microbiol 50: 61-68). In the present study we examine additional factors involved in the formation of this multicellular substructure. While pilA mutants, lacking type IV pili, are deficient in mushroom cap formation, pilH and chpA mutants, which are inactivated in the type IV pili-linked chemosensory system, showed only minor defects in cap formation. On the contrary, fliM mutants, which are non-flagellated, and cheY mutants, which are inactivated in the flagellum-linked chemotaxis system, were largely deficient in cap formation. Experiments involving DNase treatment of developing biofilms provided evidence that extracellular DNA plays a role in cap formation. Moreover, mutants that are deficient in quorum sensing-controlled DNA release formed microcolonies upon which wild-type bacteria could not form caps. These results constitute evidence that type IV pili, flagellum-mediated motility and quorum sensing-controlled DNA release are involved in the formation of mature multicellular structures in P. aeruginosa biofilms.
机译:当铜绿假单胞菌在实验室流动室中以生物膜的形式生长时,可以形成蘑菇状的多细胞结构,该结构由帽和茎部分的不同亚群组成。我们以前已经提供了证据,表明铜绿假单胞菌生物膜中蘑菇状结构的帽部分的形成是通过细菌迁移发生的,并且取决于IV型菌毛(Mol Microbiol 50:61-68)。在本研究中,我们检查了涉及此多细胞亚结构形成的其他因素。缺少IV型菌毛的pilA突变体在蘑菇帽形成中缺乏,而在IV型菌毛连接的化学感应系统中失活的pilH和chpA突变体在帽形成中仅表现出较小的缺陷。相反,未鞭毛的fliM突变体和在鞭毛连接的趋化性系统中失活的cheY突变体在帽盖形成上明显不足。涉及DNase处理发育中的生物膜的实验提供了证据,表明细胞外DNA在帽盖形成中起作用。此外,缺乏群体感应控制的DNA释放的突变体形成了微菌落,野生型细菌无法形成菌落。这些结果构成了证据,证明第四型菌毛,鞭毛介导的运动性和群体感应控制的DNA释放参与了铜绿假单胞菌生物膜中成熟的多细胞结构的形成。

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