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丝状噬菌体 Pf4 促进铜绿假单胞菌的基因交换。

Filamentous prophage Pf4 promotes genetic exchange in Pseudomonas aeruginosa.

机构信息

State Key Laboratory of Microbial Metabolism, Joint International Research Laboratory of Metabolic & Developmental Sciences, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai 200240, China.

Department of Immunology and Microbiology, School of Life Sciences, Southern University of Science and Technology, Shenzhen 518055, China.

出版信息

ISME J. 2024 Jan 8;18(1). doi: 10.1093/ismejo/wrad025.

Abstract

Filamentous prophages are widespread among bacteria and play crucial functions in virulence, antibiotic resistance, and biofilm structures. The filamentous Pf4 particles, extruded by an important pathogen Pseudomonas aeruginosa, can protect producing cells from adverse conditions. Contrary to the conventional belief that the Pf4-encoding cells resist reinfection, we herein report that the Pf4 prophage is reciprocally and commonly exchanged within P. aeruginosa colonies, which can repair defective Pf4 within the community. By labeling the Pf4 locus with antibiotic resistance and fluorescence markers, we demonstrate that the Pf4 locus is frequently exchanged within colony biofilms, in artificial sputum media, and in infected mouse lungs. We further show that Pf4 trafficking is a rapid process and capable of rescuing Pf4-defective mutants. The Pf4 phage is highly adaptable and can package additional DNA doubling its genome size. We also report that two clinical P. aeruginosa isolates are susceptible to the Pf4-mediated exchange, and the Pf5 prophage can be exchanged between cells as well. These findings suggest that the genetic exchanging interactions by filamentous prophages may facilitate defect rescue and the sharing of prophage-dependent benefits and costs within the P. aeruginosa community.

摘要

丝状噬菌体在细菌中广泛存在,在毒力、抗生素耐药性和生物膜结构中发挥着关键作用。由重要病原体铜绿假单胞菌挤出的丝状 Pf4 颗粒可以保护产生细胞免受不利条件的影响。与传统观点相反,即 Pf4 编码细胞抵抗再次感染,我们在此报告 Pf4 噬菌体在铜绿假单胞菌群落中相互且普遍地交换,这可以修复群落内缺陷的 Pf4。通过用抗生素抗性和荧光标记标记 Pf4 基因座,我们证明 Pf4 基因座在群落生物膜、人工痰培养基和感染小鼠肺部中经常交换。我们进一步表明 Pf4 运输是一个快速的过程,能够拯救 Pf4 缺陷突变体。Pf4 噬菌体具有高度适应性,可以包装额外的 DNA,使其基因组大小加倍。我们还报告说,两个临床分离的铜绿假单胞菌菌株容易受到 Pf4 介导的交换影响,Pf5 噬菌体也可以在细胞之间交换。这些发现表明,丝状噬菌体的遗传交换相互作用可能有助于在铜绿假单胞菌群落内修复缺陷并共享噬菌体依赖性的利益和成本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9999/10837833/4da4d07abdf8/wrad025f1.jpg

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