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首页> 外文期刊>Applied Microbiology >Predation in Homogeneous and Heterogeneous Phage Environments Affects Virulence Determinants of Pseudomonas aeruginosa
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Predation in Homogeneous and Heterogeneous Phage Environments Affects Virulence Determinants of Pseudomonas aeruginosa

机译:均质和异构噬菌体环境中的捕食影响铜绿假单胞菌的毒力决定因素。

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The rise of bacterial variants in the presence of lytic phages has been one of the basic grounds for evolution studies. However, there are incongruent results among different studies investigating the effect of phage resistance acquisition on bacterial fitness and virulence. We used experimental evolution to generate three classes of Pseudomonas aeruginosa variants under selective pressure from two different homogeneous phage environments and one heterogeneous phage environment. The fitness and virulence determinants of the variants, such as growth, motility, biofilm formation, resistance to oxidative stress, and the production of siderophores and chromophores, changed significantly compared to the control. Variants with similar colony morphology that were developed through different phage treatments have different phenotypic traits. Also, mRNA transcription for genes associated with certain phenotypic traits changed significantly; however, sequencing did not reveal any point mutations in selected gene loci. Furthermore, the appearance of small colony variants and melanogenic variants and the increase in pyocyanin and pyoverdin production for some variants are believed to affect the virulence of the population. The knowledge gained from this study will fundamentally contribute to our understanding of the evolutionary dynamics of bacteria under phage selective pressure which is crucial to the efficient utilization of bacteriophages in medical contexts.
机译:在裂解噬菌体存在下细菌变种的出现一直是进化研究的基础之一。但是,在研究噬菌体抗性获得对细菌适应性和毒力的影响的不同研究之间,结果并不一致。我们使用实验进化在选择性压力下从两种不同的均质噬菌体环境和一种异质性噬菌体环境中产生了三类铜绿假单胞菌变体。与对照相比,变体的适应性和毒力决定因素,例如生长,运动性,生物膜形成,抗氧化应激以及铁载体和发色团的产生,发生了显着变化。通过不同噬菌体处理形成的具有相似菌落形态的变体具有不同的表型性状。同样,与某些表型性状相关的基因的mRNA转录也发生了显着变化。但是,测序未显示所选基因位点中的任何点突变。此外,据信小菌落变体和黑色素变体的出现以及某些变体的花青素和pyoverdin产量的增加会影响种群的毒力。从这项研究中获得的知识将从根本上帮助我们理解在噬菌体选择压力下细菌的进化动力学,这对于在医学环境中有效利用噬菌体至关重要。

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