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多样且丰富的噬菌体利用接合质粒。

Diverse and abundant phages exploit conjugative plasmids.

作者信息

Quinones-Olvera Natalia, Owen Siân V, McCully Lucy M, Marin Maximillian G, Rand Eleanor A, Fan Alice C, Martins Dosumu Oluremi J, Paul Kay, Sanchez Castaño Cleotilde E, Petherbridge Rachel, Paull Jillian S, Baym Michael

机构信息

Department of Biomedical Informatics, Harvard Medical School, Boston, MA 02115, USA.

Laboratory of Systems Pharmacology, Harvard Medical School, Boston, MA 02115, USA.

出版信息

bioRxiv. 2023 Dec 21:2023.03.19.532758. doi: 10.1101/2023.03.19.532758.

Abstract

Phages exert profound evolutionary pressure on bacteria by interacting with receptors on the cell surface to initiate infection. While the majority of phages use chromosomally-encoded cell surface structures as receptors, plasmid-dependent phages exploit plasmid-encoded conjugation proteins, making their host range dependent on horizontal transfer of the plasmid. Despite their unique biology and biotechnological significance, only a small number of plasmid-dependent phages have been characterized. Here we systematically search for new plasmid-dependent phages targeting IncP and IncF plasmids using a targeted discovery platform, and find that they are common and abundant in wastewater, and largely unexplored in terms of their genetic diversity. Plasmid-dependent phages are enriched in non-canonical types of phages, and all but one of the 64 phages we isolated were non-tailed, and members of the lipid-containing tectiviruses, ssDNA filamentous phages or ssRNA phages. We show that plasmid-dependent tectiviruses exhibit profound differences in their host range which is associated with variation in the phage holin protein. Despite their relatively high abundance in wastewater, plasmid-dependent tectiviruses are missed by metaviromic analyses, underscoring the continued importance of culture-based phage discovery. Finally, we identify a tailed phage dependent on the IncF plasmid, and find related structural genes in phages that use the orthogonal type 4 pilus as a receptor, highlighting the promiscuous use of these distinct contractile structures by multiple groups of phages. Taken together, these results indicate plasmid-dependent phages play an under-appreciated evolutionary role in constraining horizontal gene transfer via conjugative plasmids.

摘要

噬菌体通过与细胞表面的受体相互作用来引发感染,从而对细菌施加深远的进化压力。虽然大多数噬菌体利用染色体编码的细胞表面结构作为受体,但依赖质粒的噬菌体利用质粒编码的接合蛋白,使其宿主范围依赖于质粒的水平转移。尽管它们具有独特的生物学特性和生物技术意义,但只有少数依赖质粒的噬菌体得到了表征。在这里,我们使用靶向发现平台系统地搜索靶向IncP和IncF质粒的新型依赖质粒的噬菌体,发现它们在废水中很常见且数量丰富,但其遗传多样性在很大程度上尚未得到探索。依赖质粒的噬菌体在非典型噬菌体类型中富集,我们分离的64种噬菌体中除一种外均无尾,属于含脂质的有尾噬菌体、单链DNA丝状噬菌体或单链RNA噬菌体。我们表明,依赖质粒的有尾噬菌体在宿主范围上表现出显著差异,这与噬菌体孔蛋白的变异有关。尽管依赖质粒的有尾噬菌体在废水中相对丰度较高,但宏病毒组分析却遗漏了它们,这突出了基于培养的噬菌体发现的持续重要性。最后,我们鉴定出一种依赖IncF质粒的有尾噬菌体,并在使用正交4型菌毛作为受体的噬菌体中发现了相关的结构基因,这突出了多组噬菌体对这些不同收缩结构的混杂使用。综上所述,这些结果表明,依赖质粒的噬菌体在通过接合质粒限制水平基因转移方面发挥着未被充分认识的进化作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a01/10750900/122c2bfcfc5f/nihpp-2023.03.19.532758v3-f0001.jpg

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