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蜜环菌根腐病真菌携带单链 RNA 病毒。

Armillaria root rot fungi host single-stranded RNA viruses.

机构信息

Natural Resources Institute Finland (Luke), Helsinki, Finland.

Department of Biochemistry, Genetics and Microbiology, Forestry and Agricultural Biotechnology Institute (FABI), University of Pretoria, Pretoria, South Africa.

出版信息

Sci Rep. 2021 Apr 1;11(1):7336. doi: 10.1038/s41598-021-86343-7.

Abstract

Species of Armillaria are distributed globally and include some of the most important pathogens of forest and ornamental trees. Some of them form large long-living clones that are considered as one of the largest organisms on earth and are capable of long-range spore-mediated transfer as well as vegetative spread by drought-resistant hyphal cords called rhizomorphs. However, the virus community infecting these species has remained unknown. In this study we used dsRNA screening and high-throughput sequencing to search for possible virus infections in a collection of Armillaria isolates representing three different species: Armillaria mellea from South Africa, A. borealis from Finland and Russia (Siberia) and A. cepistipes from Finland. Our analysis revealed the presence of both negative-sense RNA viruses and positive-sense RNA viruses, while no dsRNA viruses were detected. The viruses included putative new members of virus families Mymonaviridae, Botourmiaviridae and Virgaviridae and members of a recently discovered virus group tentatively named "ambiviruses" with ambisense bicistronic genomic organization. We demonstrated that Armillaria isolates can be cured of viruses by thermal treatment, which enables the examination of virus effects on host growth and phenotype using isogenic virus-infected and virus-free strains.

摘要

蜜环菌属的物种分布于全球各地,包括一些最重要的森林和观赏树木病原菌。其中一些形成大型长寿克隆,被认为是地球上最大的生物之一,能够进行长距离孢子介导的转移,以及通过耐旱的菌丝索(称为根状菌索)进行营养繁殖。然而,这些物种所感染的病毒群仍然未知。在这项研究中,我们使用 dsRNA 筛选和高通量测序技术,在代表三个不同物种的蜜环菌分离物集中搜索可能的病毒感染:来自南非的蜜环菌、来自芬兰和俄罗斯(西伯利亚)的蜜环菌和来自芬兰的蜜环菌。我们的分析表明,存在负义 RNA 病毒和正义 RNA 病毒,而未检测到双链 RNA 病毒。这些病毒包括假定的新型病毒科成员 Mymonaviridae、Botourmiaviridae 和 Virgaviridae,以及最近发现的一种暂定名为“ambiviruses”的病毒组的成员,其具有双顺反子双义基因组组织。我们证明,蜜环菌分离物可以通过热处理来清除病毒,这使得使用同源病毒感染和无病毒株来研究病毒对宿主生长和表型的影响成为可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afc9/8016926/b774d32711b5/41598_2021_86343_Fig1_HTML.jpg

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