Herrera Carmen M, Koutsoudis Maria D, Wang Xiaolei, von Bodman Susanne B
Department of Plant Science, University of Connecticut, Storrs 06269, USA.
Mol Plant Microbe Interact. 2008 Oct;21(10):1359-70. doi: 10.1094/MPMI-21-10-1359.
Pantoea stewartii subsp. stewartii is a plant-pathogenic bacterium that causes Stewart's vascular wilt in maize. The organism is taxonomically described as aflagellated and nonmotile. We recently showed that P. stewartii colonizes the xylem of maize as sessile, cell-wall-adherent biofilms. Biofilm formation is a developmental process that generally involves some form of surface motility. For that reason, we reexamined the motility properties of P. stewartii DC283 based on the assumption that the organism requires some form of surface motility for biofilm development. Here, we show that the organism is highly motile on agar surfaces. This motility is flagella dependent, shown by the fact that a fliC mutant, impaired in flagellin subunit synthesis, is nonmotile. Motility also requires the production of stewartan exopolysaccharide. Moreover, surface motility plays a significant role in the colonization of the plant host.
斯氏泛菌斯氏亚种是一种植物致病细菌,可引起玉米的斯图尔特氏维管束萎蔫病。该生物体在分类学上被描述为无鞭毛且不运动。我们最近发现,斯氏泛菌以无柄、细胞壁附着生物膜的形式定殖于玉米木质部。生物膜形成是一个发育过程,通常涉及某种形式的表面运动。因此,基于该生物体在生物膜发育过程中需要某种形式的表面运动这一假设,我们重新研究了斯氏泛菌DC283的运动特性。在此,我们表明该生物体在琼脂表面具有高度运动性。这种运动性依赖于鞭毛,这一事实表明,在鞭毛蛋白亚基合成方面存在缺陷的fliC突变体不具有运动性。运动性还需要产生斯图尔特外多糖。此外,表面运动性在植物宿主的定殖过程中起着重要作用。