Department of Biomedical Science, Faculty of Medicine, University of Malaya, 50603, Kuala Lumpur, Malaysia.
Academy of Sciences Malaysia, 50480, Kuala Lumpur, Malaysia.
Braz J Microbiol. 2021 Jun;52(2):517-529. doi: 10.1007/s42770-021-00457-8. Epub 2021 Mar 25.
Flagellar-mediated motility is a crucial virulence factor in many bacterial species. A dual flagellar system has been described in aeromonads; however, there is no flagella-related study in the emergent human pathogen Aeromonas dhakensis. Using 46 clinical A. dhakensis, phenotypic motility, genotypic characteristics (flagellar genes and sequence types), biochemical properties and their relationship were investigated in this study. All 46 strains showed swimming motility at 30 °C in 0.3% Bacto agar and carried the most prevalent 6 polar flagellar genes cheA, flgE, flgG, flgH, flgL, and flgN. On the contrary, only 18 strains (39%) demonstrated swarming motility on 0.5% Eiken agar at 30 °C and they harbored 11 lateral flagellar genes lafB, lafK, lafS, lafT, lafU, flgCL, flgGL, flgNL, fliEL, fliFL, and fliGL. No association was found between biochemical properties and motility phenotypes. Interestingly, a significant association between swarming and strains isolated from pus was observed (p = 0.0171). Three strains 187, 277, and 289 isolated from pus belonged to novel sequence types (ST522 and ST524) exhibited fast swimming and swarming profiles, and they harbored > 90% of the flagellar genes tested. Our findings provide a fundamental understanding of flagellar-mediated motility in A. dhakensis.
鞭毛介导的运动是许多细菌物种的重要毒力因子。气单胞菌中已经描述了双鞭毛系统;然而,在新兴的人类病原体嗜水气单胞菌中,没有与鞭毛相关的研究。本研究使用 46 株临床分离的嗜水气单胞菌,研究了表型运动性、基因型特征(鞭毛基因和序列类型)、生化特性及其关系。所有 46 株菌株在 30°C 时在 0.3%Bacto 琼脂中均表现出泳动性,并携带最常见的 6 个极性鞭毛基因 cheA、flgE、flgG、flgH、flgL 和 flgN。相反,只有 18 株(39%)在 30°C 的 0.5%Eiken 琼脂上表现出群集运动性,它们携带 11 个侧鞭毛基因 lafB、lafK、lafS、lafT、lafU、flgCL、flgGL、flgNL、fliEL、fliFL 和 fliGL。生化特性和运动表型之间没有关联。有趣的是,观察到群集运动与来自脓液的菌株之间存在显著关联(p=0.0171)。从脓液中分离的 3 株 187、277 和 289 菌株属于新型序列类型(ST522 和 ST524),表现出快速泳动和群集运动特征,并且携带了测试的>90%的鞭毛基因。我们的研究结果为嗜水气单胞菌鞭毛介导的运动提供了基本的理解。