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一种感染平脐蠕孢镰刀菌的新型分病毒的基因组和生物学特性

Genomic and biological characterization of a novel partitivirus infecting Fusarium equiseti.

作者信息

Mahillon Mathieu, Decroës Alain, Caulier Simon, Tiendrebeogo Assiata, Legrève Anne, Bragard Claude

机构信息

Earth and Life Institute, Applied Microbiology-Phytopathology, UCLouvain, Louvain-la-Neuve, Belgium.

Earth and Life Institute, Applied Microbiology-Phytopathology, UCLouvain, Louvain-la-Neuve, Belgium; Natural System, Agrosystem and Environmental Engineering, Phytopathology, Nazi Boni University, Bobo-Dioulasso, Burkina-Faso.

出版信息

Virus Res. 2021 May;297:198386. doi: 10.1016/j.virusres.2021.198386. Epub 2021 Mar 11.

Abstract

This study describes a new mycovirus infecting a strain from the Fusarium incarnatum-equiseti species complex. Based on phylogenetic and genomic analyses, this virus belongs to the recently proposed genus "Zetapartitivirus" in the family Partitiviridae. The name "Fusarium equiseti partitivirus 1″ (FePV1) is therefore suggested for this novel viral species. Similar to other partitiviruses, FePV1 genome is composed by two dsRNA segments that exhibit each one large ORF encoding for an RdRp and a CP, respectively. A smaller dsRNA was also detected in infected mycelium and could be a satellite RNA of FePV1. In addition to characterized zetapartitiviruses, other FePV1-related sequences were retrieved from online databases and their significance is discussed. Following conidial isolation, an FePV1-free isogenic line of the fungal host was obtained. In comparison with the original infected strain, this line showed higher growth, biomass production and pathogenicity on tomato, advocating that FePV1 induces hypovirulence on its host.

摘要

本研究描述了一种感染来自轮枝镰孢菌-木贼镰孢菌复合种菌株的新型真菌病毒。基于系统发育和基因组分析,该病毒属于最近在双分病毒科中提出的“Zetapartitivirus”属。因此,建议将这种新型病毒物种命名为“木贼镰孢双分病毒1”(FePV1)。与其他双分病毒类似,FePV1基因组由两个双链RNA片段组成,每个片段都有一个大的开放阅读框,分别编码一个RNA依赖的RNA聚合酶(RdRp)和一个衣壳蛋白(CP)。在受感染的菌丝体中还检测到一个较小的双链RNA,它可能是FePV1的卫星RNA。除了已鉴定的Zetapartitivirus病毒外,还从在线数据库中检索到了其他与FePV1相关的序列,并对其意义进行了讨论。通过分生孢子分离,获得了真菌宿主的无FePV1同基因系。与原始感染菌株相比,该品系在番茄上表现出更高的生长、生物量产量和致病性,表明FePV1对其宿主诱导了低毒力。

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