Departamento de Biología. Universidad Autónoma de Madrid. c/Darwin, 2, 28049 Madrid, Spain.
Microb Biotechnol. 2009 Jul;2(4):489-98. doi: 10.1111/j.1751-7915.2009.00103.x. Epub 2009 Apr 16.
Motility is one of the most important traits for rhizosphere colonization by pseudomonads. Despite this importance, motility is severely repressed in the rhizosphere-colonizing strain Pseudomonas fluorescens F113. This bacterium is unable to swarm under laboratory conditions and produce relatively small swimming haloes. However, phenotypic variants with the ability to swarm and producing swimming haloes up to 300% larger than the wild-type strain, arise during rhizosphere colonization. These variants harbour mutations in the genes encoding the GacA/GacS two-component system and in other genes. In order to identify genes and pathways implicated in motility repression, we have used generalized mutagenesis with transposons. Analysis of the mutants has shown that besides the Gac system, the Wsp system and the sadB gene, which have been previously implicated in cyclic di-GMP turnover, are implicated in motility repression: mutants in the gacS, sadB or wspR genes can swarm and produce swimming haloes larger than the wild-type strain. Epistasis analysis has shown that the pathways defined by each of these genes are independent, because double and triple mutants show an additive phenotype. Furthermore, GacS, SadB and WspR act at different levels. Expression of the fleQ gene, encoding the master regulator of flagella synthesis is higher in the gacS(-) and sadB(-) backgrounds than in the wild-type strain and this differential expression is reflected by a higher secretion of the flagellin protein FliC. Conversely, no differences in fleQ expression or FliC secretion were observed between the wild-type strain and the wspR(-) mutant.
运动性是假单胞菌定殖根际的最重要特征之一。尽管如此,根际定殖菌株荧光假单胞菌 F113 的运动性受到严重抑制。该细菌在实验室条件下无法群集,游动晕圈相对较小。然而,在根际定殖过程中会出现具有群集能力并产生游动晕圈的表型变体,其大小比野生型菌株大 300%。这些变体在编码 GacA/GacS 双组分系统和其他基因的基因中发生突变。为了确定参与运动性抑制的基因和途径,我们使用转座子进行了广义诱变。突变体分析表明,除了 Gac 系统、Wsp 系统和 sadB 基因(先前与环二鸟苷酸周转有关)外,还涉及运动性抑制:gacS、sadB 或 wspR 基因的突变体能群集并产生比野生型菌株更大的游动晕圈。上位性分析表明,这些基因定义的途径是独立的,因为双突变体和三突变体表现出相加表型。此外,GacS、SadB 和 WspR 作用于不同的水平。编码鞭毛合成主调控因子的 fleQ 基因的表达在 gacS(-)和 sadB(-)背景中高于野生型菌株,这种差异表达反映在 flagellin 蛋白 FliC 的更高分泌上。相反,在野生型菌株和 wspR(-)突变体之间,fleQ 表达或 FliC 分泌没有差异。