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一种二分体双链RNA病毒及其类卫星RNA共感染植物病原真菌核盘菌的分子特征

Molecular characterization of a bipartite double-stranded RNA virus and its satellite-like RNA co-infecting the phytopathogenic fungus Sclerotinia sclerotiorum.

作者信息

Liu Lijiang, Wang Qihua, Cheng Jiasen, Fu Yanping, Jiang Daohong, Xie Jiatao

机构信息

State Key Laboratory of Agricultural Microbiology and The Provincial Key Lab of Plant Pathology of Hubei Province, College of Plant Science and Technology, Huazhong Agricultural University Wuhan, China.

出版信息

Front Microbiol. 2015 May 6;6:406. doi: 10.3389/fmicb.2015.00406. eCollection 2015.

Abstract

A variety of mycoviruses have been found in Sclerotinia sclerotiorum. In this study, we report a novel mycovirus S. sclerotiorum botybirnavirus 1 (SsBRV1) that was originally isolated from the hypovirulent strain SCH941 of S. sclerotiorum. SsBRV1 has rigid spherical virions that are ∼38 nm in diameter, and three double-stranded RNA (dsRNA) segments (dsRNA1, 2, and 3 with lengths of 6.4, 6.0, and 1.7 kbp, respectively) were packaged in the virions. dsRNA1 encodes a cap-pol fusion protein, and dsRNA2 encodes a polyprotein with unknown functions but contributes to the formation of virus particles. The dsRNA3 is dispensable and may be a satellite-like RNA of SsBRV1. Although phylogenetic analysis of the RdRp domain demonstrated that SsBRV1 is related to Botrytis porri RNA virus 1 (BpRV1) and Ustilago maydis dsRNA virus-H1, the structure proteins of SsBRV1 do not have any significant sequence similarities with other known viral proteins with the exception of those of BpRV1. SsBRV1 carrying dsRNA3 seems to have no obvious effects on the colony morphology, but can significantly reduce the growth rate and virulence of S. sclerotiorum. These findings provide new insights into the virus taxonomy, virus evolution and the interactions between SsBRV1 and the fungal hosts.

摘要

在核盘菌中发现了多种真菌病毒。在本研究中,我们报道了一种新型真菌病毒——核盘菌葡萄孢双分病毒1(SsBRV1),它最初是从核盘菌的低毒力菌株SCH941中分离出来的。SsBRV1具有直径约为38 nm的刚性球形病毒粒子,病毒粒子中包裹着三个双链RNA(dsRNA)片段(dsRNA1、dsRNA2和dsRNA3,长度分别为6.4、6.0和1.7 kbp)。dsRNA1编码一种帽状聚合酶融合蛋白,dsRNA2编码一种功能未知的多蛋白,但有助于病毒粒子的形成。dsRNA3是可有可无的,可能是SsBRV1的类卫星RNA。尽管对RdRp结构域的系统发育分析表明SsBRV1与葱葡萄孢RNA病毒1(BpRV1)和玉米黑粉菌dsRNA病毒-H1相关,但除了BpRV1的结构蛋白外,SsBRV1的结构蛋白与其他已知病毒蛋白没有任何显著的序列相似性。携带dsRNA3的SsBRV1似乎对菌落形态没有明显影响,但能显著降低核盘菌的生长速率和毒力。这些发现为病毒分类学、病毒进化以及SsBRV1与真菌宿主之间的相互作用提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9b2/4422086/81d787cc6c87/fmicb-06-00406-g001.jpg

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