Zhang Zefeng, Wu Zuqing, Liu He, Yang Mingyu, Wang Rui, Zhao Yanlin, Chen Feng
Institute of Marine Science and Technology, Shandong University, Qingdao, China.
Fujian Provincial Key Laboratory of Agroecological Processing and Safety Monitoring, College of Life Sciences, Fujian Agriculture and Forestry University, Fuzhou, China.
Front Microbiol. 2023 Apr 17;14:1164101. doi: 10.3389/fmicb.2023.1164101. eCollection 2023.
Marine phages play an important role in marine biogeochemical cycles by regulating the death, physiological metabolism, and evolutionary trajectory of bacteria. The group is an abundant and important heterotrophic bacterial group in the ocean, and plays an important role in carbon, nitrogen, sulfur and phosphorus cycling. The CHAB-I-5 lineage is one of the most dominant lineages, but remains largely uncultured. Phages infecting CHAB-I-5 bacteria have not yet been investigated due to the lack of culturable CHAB-I-5 strains. In this study, we isolated and sequenced two new phages (CRP-901 and CRP-902) infecting the CHAB-I-5 strain FZCC0083. We applied metagenomic data mining, comparative genomics, phylogenetic analysis, and metagenomic read-mapping to investigate the diversity, evolution, taxonomy, and biogeography of the phage group represented by the two phages. The two phages are highly similar, with an average nucleotide identity of 89.17%, and sharing 77% of their open reading frames. We identified several genes involved in DNA replication and metabolism, virion structure, DNA packing, and host lysis from their genomes. Metagenomic mining identified 24 metagenomic viral genomes closely related to CRP-901 and CRP-902. Genomic comparison and phylogenetic analysis demonstrated that these phages are distinct from other known viruses, representing a novel genus-level phage group (CRP-901-type). The CRP-901-type phages do not contain DNA primase and DNA polymerase genes, but possess a novel bifunctional DNA primase-polymerase gene with both primase and polymerase activities. Read-mapping analysis showed that the CRP-901-type phages are widespread across the world's oceans and are most abundant in estuarine and polar waters. Their abundance is generally higher than other known roseophages and even higher than most pelagiphages in the polar region. In summary, this study has greatly expanded our understanding of the genetic diversity, evolution, and distribution of roseophages. Our analysis suggests that the CRP-901-type phage is an important and novel marine phage group that plays important roles in the physiology and ecology of roseobacters.
海洋噬菌体通过调控细菌的死亡、生理代谢和进化轨迹,在海洋生物地球化学循环中发挥着重要作用。玫瑰杆菌属是海洋中丰富且重要的异养细菌类群,在碳、氮、硫和磷循环中发挥着重要作用。CHAB - I - 5谱系是最主要的谱系之一,但在很大程度上仍未被培养。由于缺乏可培养的CHAB - I - 5菌株,感染CHAB - I - 5细菌的噬菌体尚未得到研究。在本研究中,我们分离并测序了两种感染CHAB - I - 5菌株FZCC0083的新型噬菌体(CRP - 901和CRP - 902)。我们应用宏基因组数据挖掘、比较基因组学、系统发育分析和宏基因组读段映射,来研究以这两种噬菌体为代表的噬菌体群体的多样性、进化、分类和生物地理学。这两种噬菌体高度相似,平均核苷酸同一性为89.17%,其开放阅读框有77%相同。我们从它们的基因组中鉴定出了几个参与DNA复制与代谢、病毒粒子结构、DNA包装和宿主裂解的基因。宏基因组挖掘鉴定出24个与CRP - 901和CRP - 902密切相关的宏基因组病毒基因组。基因组比较和系统发育分析表明,这些噬菌体与其他已知病毒不同,代表了一个新的属级噬菌体群体(CRP - 901型)。CRP - 901型噬菌体不包含DNA引发酶和DNA聚合酶基因,但拥有一个兼具引发酶和聚合酶活性的新型双功能DNA引发酶 - 聚合酶基因。读段映射分析表明,CRP - 901型噬菌体广泛分布于全球海洋,在河口和极地水域最为丰富。它们的丰度通常高于其他已知的玫瑰噬菌体,在极地地区甚至高于大多数浮游噬菌体。总之,本研究极大地扩展了我们对玫瑰噬菌体遗传多样性、进化和分布的理解。我们的分析表明,CRP - 901型噬菌体是一个重要的新型海洋噬菌体群体,在玫瑰杆菌的生理学和生态学中发挥着重要作用。