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Swarming Differentiation and Swimming Motility in Bacillus subtilis Are Controlled by swrA, a Newly Identified Dicistronic Operon

机译:新发现的双顺反子操纵子swrA控制枯草芽孢杆菌的成群分化和游泳运动

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摘要

The number and disposition of flagella harbored by eubacteria are regulated by a specific trait successfully maintained over generations. The genes governing the number of flagella in Bacillus subtilis have never been identified, although the ifm locus has long been recognized to influence the motility phenotype of this microorganism. The characterization of a spontaneous ifm mutant of B. subtilis, displaying diverse degrees of cell flagellation in both liquid and solid media, raised the question of how the ifm locus governs the number and assembly of functional flagella. The major finding of this investigation is the characterization of a newly identified dicistronic operon, named swrA, that controls both swimming motility and swarming differentiation in B. subtilis. Functional analysis of the swrA operon allowed swrAA (previously named swrA [D. B. Kearns, F. Chu, R. Rudner, and R. Losick, Mol. Microbiol. 52:357-369, 2004]) to be the first gene identified in B. subtilis that controls the number of flagella in liquid environments and the assembly of flagella in response to cell contact with solid surfaces. Evidence is given that the second gene of the operon, swrAB, is essential for enabling the surface-adhering cells to undergo swarming differentiation. Preliminary data point to a molecular interaction between the two gene products.
机译:真细菌携带的鞭毛的数量和分布受世代成功维持的特定性状的调节。尽管早就认识到ifm基因座会影响该微生物的运动表型,但从未发现控制枯草芽孢杆菌鞭毛数量的基因。枯草芽孢杆菌自发ifm突变体的表征,在液体和固体培养基中均显示出不同程度的细胞鞭毛形成,提出了一个问题:ifm基因座如何控制功能性鞭毛的数量和组装。这项研究的主要发现是对新鉴定的双顺反子操纵子的特性进行了表征,该操纵子名为swrA,可控制枯草芽孢杆菌的游泳运动和成群分化。 swrA操纵子的功能分析使swrAA(以前称为swrA [DB Kearns,F. Chu,R. Rudner和R. Losick,Mol。Microbiol。52:357-369,2004])是在B中鉴定的第一个基因。枯草杆菌,可控制液体环境中的鞭毛数量以及响应细胞与固体表面接触而产生的鞭毛装配。有证据表明,操纵子的第二个基因swrAB对于使表面粘附细胞能够进行成群分化至关重要。初步数据表明两种基因产物之间存在分子相互作用。

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