Center for Adaptation Genetics and Drug Resistance, Tufts University School of Medicine, Boston, Massachusetts, USA.
Appl Environ Microbiol. 2012 Jun;78(12):4318-29. doi: 10.1128/AEM.07201-11. Epub 2012 Apr 6.
AdnA in Pseudomonas fluorescens, an ortholog of FleQ in P. aeruginosa, regulates both motility and flagellum-mediated attachment to various surfaces. A whole-genome microarray determined the AdnA transcriptome by comparing the gene expression pattern of wild-type Pf0-1 to that of Pf0-2x (adnA deletion mutant) in broth culture. In the absence of AdnA, expression of 92 genes was decreased, while 11 genes showed increased expression. Analysis of 16 of these genes fused to lacZ confirmed the microarray results. Several genes were further evaluated for their role in motility and biofilm formation. Two genes, Pfl01_1508 and Pfl01_1517, affected motility and had different effects on biofilm formation in Pf0-1. These two genes are predicted to specify proteins similar to the glycosyl transferases FgtA1 and FgtA2, which have been shown to be involved in virulence and motility in P. syringae. Three other genes, Pfl01_1516, Pfl01_1572, and Pfl01_1573, not previously associated with motility and biofilm formation in Pseudomonas had similar effects on biofilm formation in Pf0-1. Deletion of each of these genes led to different motility defects. Our data revealed an additional level of complexity in the control of flagellum function beyond the core genes known to be required and may yield insights into processes important for environmental persistence of P. fluorescens Pf0-1.
在荧光假单胞菌中,AdnA 是绿脓假单胞菌中 FleQ 的同源物,它调节运动性和鞭毛介导的对各种表面的附着。全基因组微阵列通过比较 Pf0-1 野生型和 Pf0-2x(adnA 缺失突变体)在肉汤培养物中的基因表达模式来确定 AdnA 转录组。在没有 AdnA 的情况下,92 个基因的表达减少,而 11 个基因的表达增加。对这些融合到 lacZ 的 16 个基因进行分析证实了微阵列的结果。进一步分析了这些基因中的几个,以确定它们在运动性和生物膜形成中的作用。两个基因,Pfl01_1508 和 Pfl01_1517,影响运动性,并对 Pf0-1 中的生物膜形成有不同的影响。这两个基因预测指定类似于糖基转移酶 FgtA1 和 FgtA2 的蛋白质,它们已被证明与丁香假单胞菌的毒力和运动性有关。另外三个基因,Pfl01_1516、Pfl01_1572 和 Pfl01_1573,以前与假单胞菌的运动性和生物膜形成无关,对 Pf0-1 中的生物膜形成有类似的影响。这些基因的缺失导致了不同的运动缺陷。我们的数据揭示了在控制鞭毛功能方面的一个额外的复杂程度,超出了已知对核心基因的要求,可能为荧光假单胞菌 Pf0-1 环境持久性的重要过程提供了新的认识。