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利用单细胞绿藻培养物分离和鉴定大型绿藻病毒(病毒 XW01)及其噬藻体(病毒噬藻体 SW01)。

Isolation and Identification of a Large Green Alga Virus ( Virus XW01) of and Its Virophage ( Virus Virophage SW01) by Using Unicellular Green Algal Cultures.

机构信息

College of Food Science and Technology, Shanghai Ocean Universitygrid.412514.7, Shanghai, China.

Laboratory for Marine Biology and Biotechnology, Qingdao National Laboratory for Marine Science and Technology, Qingdao, China.

出版信息

J Virol. 2022 Apr 13;96(7):e0211421. doi: 10.1128/jvi.02114-21. Epub 2022 Mar 9.

Abstract

Virophages are a group of small double-stranded DNA viruses that infect protist hosts and parasitize the viral factory of host giant/large viruses to propagate. Here, we discover a novel cell-virus-virophage (CVv) tripartite interaction system by using unicellular micro-green algae ( sp.) as eukaryotic hosts for the first time. Viral particles, resembling known virophages and large alga viruses, are detected in culture supernatants and inside algal cells. Complete genomic sequences of the virophage ( virus virophage SW01 [CVv-SW01]; 24,744 bp) and large virus ( virus XW01 [CV-XW01]; 407,612 bp) are obtained from the cocultures. Both genomic and phylogenetic analyses show that CVv-SW01 is closely related to virophages previously found in Dishui Lake. CV-XW01 shares the greatest number of homologous genes ( = 82) with (CroV) and phylogenetically represents the closest relative to CroV. This is the first report of a large green alga virus being affiliated with a heterotrophic zooplankton-infecting of the family . Moreover, the codon usage preferences of CV-XW01 and CVv-SW01 are highly similar to those of CroV and its virophage Mavirus, respectively. The discovery of such a novel CVv system with the green alga sp. as the single cellular eukaryotic host paves a way to further investigate the potential interaction mechanism of CVv and its significance in the ecology of green algae and the evolution of large/giant viruses and their parasitic viruses. Parasitic virophages are small unicellular eukaryotic dsDNA viruses that rely on the viral factories of coinfecting giant/large dsDNA viruses for propagation. Presently, the identified eukaryotic hosts of isolated virophages were restricted to a free-living amoeba, Acanthamoeba polyphaga, and a widespread marine heterotrophic flagellate, . In this study, we successfully discovered and identified a novel tripartite interaction system comprised of a micro-green alga ( sp.), large green alga virus, and virophage at the coculture level, with sp. as the eukaryotic host, based on combination analysis of infection, morphotype, genome, and phylogeny. The large green alga virus CV-XW01 represents the closest relative to the giant virus , host virus of the virophage Mavirus, as well as a novel large virus of that infects a non-protozoan protist host. The virophage CVv-SW01 highly resembles Mavirus in its codon usage frequency and preference, although they are phylogenetically distantly related. These findings give novel insights into the diversity of large/giant viruses and their virophages.

摘要

噬病毒体是一类感染原生生物宿主并寄生于宿主巨型/大型病毒病毒工厂进行繁殖的小型双链 DNA 病毒。在这里,我们首次发现了一种新型的细胞-病毒-噬病毒体 (CVv) 三方相互作用系统,使用单细胞微绿藻 (sp.) 作为真核宿主。在培养上清液和藻类细胞内检测到类似于已知噬病毒体和大型藻类病毒的病毒颗粒。从共培养物中获得了噬病毒体 (病毒噬病毒 SW01 [CVv-SW01];24744 bp) 和大型病毒 (病毒 XW01 [CV-XW01];407612 bp) 的完整基因组序列。基因组和系统发育分析表明,CVv-SW01 与以前在淡水湖中发现的噬病毒体密切相关。CV-XW01 与 (CroV) 具有最多的同源基因(=82),并且在系统发育上与 CroV 最接近。这是首次报道大型绿藻病毒与异养浮游动物感染的噬病毒体有关。此外,CV-XW01 和 CVv-SW01 的密码子使用偏好与 CroV 和其噬病毒体 Mavirus 分别高度相似。使用单细胞真核生物 sp. 作为唯一的宿主藻类发现这种新型 CVv 系统,为进一步研究 CVv 及其在绿藻生态学和大型/巨型病毒及其寄生病毒进化中的潜在相互作用机制铺平了道路。寄生性噬病毒体是小型单细胞真核 dsDNA 病毒,依赖于共感染的巨型/大型 dsDNA 病毒的病毒工厂进行繁殖。目前,已鉴定的分离噬病毒体的真核宿主仅限于自由生活的阿米巴虫 Acanthamoeba polyphaga 和广泛分布的海洋异养鞭毛藻。在这项研究中,我们成功地发现并鉴定了一种新型三方相互作用系统,该系统由微绿藻 (sp.)、大型绿藻病毒和噬病毒体组成,在共培养水平上,以 sp. 为真核宿主,基于感染、形态、基因组和系统发育的综合分析。大型绿藻病毒 CV-XW01 与 巨型病毒 宿主病毒以及感染非原生生物原生生物宿主的新型病毒 关系最密切。噬病毒体 CVv-SW01 在密码子使用频率和偏好上与 Mavirus 非常相似,尽管它们在系统发育上相距甚远。这些发现为大型/巨型病毒及其噬病毒体的多样性提供了新的见解。

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