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是病毒还是非病毒:一种具有家族间基因交换的新型嵌合环状Rep编码单链DNA病毒展示了单链DNA病毒强大的进化能力。

To be or not to be a virus: A novel chimeric circular Rep-encoding single stranded DNA virus with interfamilial gene exchange illustrates the considerable evolutionary capacity of ssDNA viruses.

作者信息

Ben Chéhida Sélim, Lacroix Sylvain, Hoareau Murielle, Fenelon Babbitha, Varsani Arvind, Martin Darren P, Teycheney Pierre-Yves, Lefeuvre Pierre, Lett Jean-Michel

机构信息

CIRAD, UMR PVBMT, St Pierre, France.

The Biodesign Center for Fundamental and Applied Microbiomics, Center for Evolution and Medicine, School of Life Sciences, Arizona State University, Tempe, Arizona, United States of America.

出版信息

PLoS One. 2025 Aug 18;20(8):e0309278. doi: 10.1371/journal.pone.0309278. eCollection 2025.

Abstract

Viruses in the family Geminiviridae cause significant economic losses in numerous crops worldwide. Some geminiviruses are often associated with satellite DNA molecules, such as alphasatellites (familly Alphasatellitidae), that require the assistance of a helper virus for their transmission. Here, we report the discovery of a chimeric virus, tentatively named Cenchrus purpureus associated virus (CPAV), in Cenchrus purpureus plants in La Réunion. The genome of CPAV consists of a single component that is primarily geminivirus-like. It contains a rep gene phylogenetically most closely related alphasatellites. This rep gene is positioned upstream of, and in the same orientation as, the movement and capsid protein genes. Both of these genes are phylogenetically most related to members of the genus Mastrevirus (family Geminiviridae). We found that CPAV is associated in the field with Cenchrus purpureus mild streak virus (CPMSV). Using agroinfectious clones and insect transmission assays, we demonstrated that CPAV is able to initiate infections in C. purpureus but its ability to establish long-term infection and be insect transmitted is apparently facilitated by CPMSV. This raises the question of whether CPAV qualifies as an autonomous virus or rather a satellite-like element with partial autonomy. The chimeric nature of CPAV illustrates the interfamily gene exchange between circular ssDNA viruses and satellites and how such recombination events can blur the boundaries between viruses and subviral agents. These findings highlight the evolutionary plasticity of circular ssDNA viruses and suggest that chimerism may be a key mechanism driving the emergence of novel viral forms with modified pathogenicity and host range.

摘要

双生病毒科的病毒在全球众多作物中造成了巨大的经济损失。一些双生病毒常与卫星DNA分子相关联,比如α卫星(α卫星科),它们需要辅助病毒的协助才能传播。在此,我们报告在留尼汪岛的象草植株中发现了一种嵌合病毒,暂命名为象草相关病毒(CPAV)。CPAV的基因组由一个主要类似双生病毒的单一组件组成。它含有一个rep基因,在系统发育上与α卫星最为密切相关。这个rep基因位于运动蛋白基因和衣壳蛋白基因的上游,且方向相同。这两个基因在系统发育上与玉米线条病毒属(双生病毒科)的成员最为相关。我们发现,在田间CPAV与象草轻度条纹病毒(CPMSV)相关联。通过农杆菌介导的感染性克隆和昆虫传播试验,我们证明CPAV能够在象草中引发感染,但其建立长期感染和通过昆虫传播的能力显然受到CPMSV促进。这就提出了一个问题,即CPAV究竟是一种自主病毒,还是一种具有部分自主性的类卫星元件。CPAV的嵌合性质说明了环状单链DNA病毒与卫星之间的科间基因交换以及这种重组事件如何模糊病毒与亚病毒因子之间的界限。这些发现突出了环状单链DNA病毒进化的可塑性,并表明嵌合现象可能是驱动具有改变的致病性和宿主范围新病毒形式出现的关键机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78e9/12360566/ab4f85fff545/pone.0309278.g001.jpg

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