Kirisits Mary Jo, Prost Lynne, Starkey Melissa, Parsek Matthew R
University of Iowa, Department of Microbiology, 540E EMRB, Iowa City, IA 52242.
Appl Environ Microbiol. 2005 Aug;71(8):4809-21. doi: 10.1128/AEM.71.8.4809-4821.2005.
In this study, we report the isolation of small, rough, strongly cohesive colony morphology variants from aging Pseudomonas aeruginosa PAO1 biofilms. Similar to many of the P. aeruginosa colony morphology variants previously described in the literature, these variants autoaggregate in liquid culture and hyperadhere to solid surfaces. They also exhibit increased hydrophobicity and reduced motility compared to the wild-type parent strain. Despite the similarities in appearance of our colony morphology variant isolates on solid medium, the isolates showed a range of responses in various phenotypic assays. These variants form biofilms with significant three-dimensional structure and more biomass than the wild-type parent. To further explore the nature of the variants, their transcriptional profiles were evaluated. The variants generally showed increased expression of the psl and pel loci, which have been previously implicated in the adherence of P. aeruginosa to solid surfaces. When a mutation in the psl locus was introduced into a colony morphology variant, the colony morphology was only partially affected, but hyperadherence and autoaggregation were lost. Finally, similar colony morphology variants were found in isolates from cystic fibrosis patients. These variants displayed many of the same characteristics as the laboratory variants, suggesting a link between laboratory and cystic fibrosis biofilms.
在本研究中,我们报告了从老化的铜绿假单胞菌PAO1生物膜中分离出小的、粗糙的、具有强凝聚力的菌落形态变体。与文献中先前描述的许多铜绿假单胞菌菌落形态变体相似,这些变体在液体培养中会自动聚集,并超粘附于固体表面。与野生型亲本菌株相比,它们还表现出疏水性增加和运动性降低。尽管我们的菌落形态变体分离株在固体培养基上的外观相似,但在各种表型分析中,这些分离株表现出一系列不同的反应。这些变体形成的生物膜具有显著的三维结构,且生物量比野生型亲本更多。为了进一步探究这些变体的本质,我们评估了它们的转录谱。这些变体通常显示出psl和pel基因座的表达增加,这两个基因座先前已被证明与铜绿假单胞菌对固体表面的粘附有关。当将psl基因座的一个突变引入一个菌落形态变体时,菌落形态仅受到部分影响,但超粘附和自动聚集特性丧失。最后,在囊性纤维化患者的分离株中发现了类似的菌落形态变体。这些变体表现出许多与实验室变体相同的特征,这表明实验室生物膜和囊性纤维化生物膜之间存在联系。