Identification of a novel mycovirus belonging to the "flexivirus"-related family with icosahedral virion.

IF 5.5 2区 医学 Q1 VIROLOGY
Virus Evolution Pub Date : 2024-11-06 eCollection Date: 2024-01-01 DOI:10.1093/ve/veae093
Chien-Fu Wu, Ryo Okada, Uri Neri, Yi-Cheng Chang, Takashi Ogawara, Kentaro Kitaura, Ken Komatsu, Hiromitsu Moriyama
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引用次数: 0

Abstract

The order Tymovirales currently comprises five viral families with positive-sense RNA [(+)RNA] genomes that infect plants, fungi, and insects. Virion morphologies within the order Tymovirales differ between families, with icosahedral virions in the Tymoviridae and filamentous virions in the other "flexi"viridae families. Despite their different morphologies, these viruses are placed in the same order based on phylogenetic analyses of replicase-associated polyproteins. However, one of the families in the Tymovirales, Deltaflexiviridae, is considered to be capsidless because there have been no published reports of virion isolation. Here, we report that a new "flexivirus"-related (+)RNA virus, prospectively named Fusarium oxysporum icosahedral virus 1 (FoIV1), is icosahedral and that most deltaflexiviruses may have icosahedral virions. Phylogenetic analyses based on replicase-associated polyproteins indicated that FoIV1 forms a distinct group in the Tymovirales with some viruses originally assigned to the Deltaflexiviridae. Electron microscopy, protein analysis, and protein structure predictions indicate that FoIV1 open reading frame 4 encodes a single jelly-roll (SJR)-like coat protein (CP) that constitutes the icosahedral virions. Results of clustering analyses based on amino acid sequences and predicted CP structures suggested that most of the deltaflexiviruses have icosahedral virions composed of SJR-like CPs as in FoIV1, rather than having filamentous virions or capsidless. These results challenge the conventional understanding of viruses in the order Tymovirales, with important implications for revising its taxonomic framework and providing insights into the evolutionary relationships within this diverse and broad host range group of (+)RNA viruses.

一种具有二十面体病毒粒子的“柔性病毒”相关科新型分枝病毒的鉴定。
Tymovirales目目前包括5个具有正义RNA (+)RNA)基因组的病毒科,可感染植物、真菌和昆虫。tymovirae目不同科的病毒粒子形态不同,tymovirae科的病毒粒子为二十面体病毒粒子,而其他“弹性”病毒科的病毒粒子为丝状病毒粒子。尽管它们的形态不同,但基于复制酶相关多蛋白的系统发育分析,这些病毒被置于相同的顺序。然而,Tymovirales中的一个科Deltaflexiviridae被认为是无衣壳的,因为没有关于分离病毒粒子的已发表报告。在这里,我们报道了一种新的“弯曲病毒”相关(+)RNA病毒,可能被命名为镰刀菌二十面体病毒1 (FoIV1),它是二十面体,大多数三角弯曲病毒可能具有二十面体病毒粒子。基于复制酶相关多蛋白的系统发育分析表明,FoIV1与最初归属于三角洲病毒科的一些病毒在Tymovirales中形成了一个独特的群。电子显微镜、蛋白质分析和蛋白质结构预测表明,FoIV1开放阅读框4编码一个构成二十面体病毒粒子的果冻卷状(SJR)样外壳蛋白(CP)。基于氨基酸序列和预测CP结构的聚类分析结果表明,大多数三角弯曲病毒具有像FoIV1一样由sjr样CP组成的二十面体病毒粒子,而不是丝状病毒粒子或无衣壳病毒粒子。这些结果挑战了对Tymovirales目病毒的传统认识,对修订其分类框架具有重要意义,并为了解这一多样化和广泛宿主范围的(+)RNA病毒群的进化关系提供了重要启示。
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来源期刊
Virus Evolution
Virus Evolution Immunology and Microbiology-Microbiology
CiteScore
10.50
自引率
5.70%
发文量
108
审稿时长
14 weeks
期刊介绍: Virus Evolution is a new Open Access journal focusing on the long-term evolution of viruses, viruses as a model system for studying evolutionary processes, viral molecular epidemiology and environmental virology. The aim of the journal is to provide a forum for original research papers, reviews, commentaries and a venue for in-depth discussion on the topics relevant to virus evolution.
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