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揭示单细胞藻类转录组中的RNA病毒多样性与进化

Revealing RNA virus diversity and evolution in unicellular algae transcriptomes.

作者信息

Charon Justine, Murray Shauna, Holmes Edward C

机构信息

Marie Bashir Institute for Infectious Diseases and Biosecurity, School of Life and Environmental Sciences and School of Medical Sciences, The University of Sydney, Sydney, NSW 2006, Australia.

School of Life Sciences, University of Technology Sydney, Sydney, NSW 2007, Australia.

出版信息

Virus Evol. 2021 Aug 14;7(2):veab070. doi: 10.1093/ve/veab070. eCollection 2021 Sep.

Abstract

Remarkably little is known about the diversity and evolution of RNA viruses in unicellular eukaryotes. We screened a total of 570 transcriptomes from the Marine Microbial Eukaryote Transcriptome Sequencing Project that encompasses a wide diversity of microbial eukaryotes, including most major photosynthetic lineages (i.e. the microalgae). From this, we identified thirty new and divergent RNA virus species, occupying a range of phylogenetic positions within the overall diversity of RNA viruses. Approximately one-third of the newly described viruses comprised single-stranded positive-sense RNA viruses from the order associated with fungi, plants, and protists, while another third were related to the order , including members of the protist and fungi-associated . Other viral species showed sequence similarity to positive-sense RNA viruses from the algae-associated , the double-stranded RNA (ds-RNA) , as well as tentative evidence for one negative-sense RNA virus related to the . Importantly, we were able to identify divergent RNA viruses from distant host taxa, revealing the ancestry of these viral families and greatly extending our knowledge of the RNA viromes of microalgal cultures. Both the limited number of viruses detected per sample and the low sequence identity to known RNA viruses imply that additional microalgal viruses exist that could not be detected at the current sequencing depth or were too divergent to be identified using sequence similarity. Together, these results highlight the need for further investigation of algal-associated RNA viruses as well as the development of new tools to identify RNA viruses that exhibit very high levels of sequence divergence.

摘要

令人惊讶的是,我们对单细胞真核生物中RNA病毒的多样性和进化了解甚少。我们从海洋微生物真核生物转录组测序项目中筛选了总共570个转录组,该项目涵盖了广泛多样的微生物真核生物,包括大多数主要的光合谱系(即微藻)。从中,我们鉴定出30种新的、不同的RNA病毒物种,它们在RNA病毒的整体多样性中占据一系列系统发育位置。新描述的病毒中约三分之一是来自与真菌、植物和原生生物相关的目 的单链正义RNA病毒,而另外三分之一与目 相关,包括与原生生物和真菌相关的成员。其他病毒物种与来自与藻类相关的 、双链RNA(ds-RNA) 的正义RNA病毒以及一种与 相关的负义RNA病毒的初步证据显示出序列相似性。重要的是,我们能够从远缘宿主类群中鉴定出不同的RNA病毒,揭示了这些病毒家族的起源,并极大地扩展了我们对微藻培养物RNA病毒组的认识。每个样本中检测到的病毒数量有限以及与已知RNA病毒的低序列同一性都表明,存在其他微藻病毒,它们在当前测序深度下无法检测到,或者差异太大以至于无法通过序列相似性进行鉴定。总之,这些结果凸显了进一步研究与藻类相关的RNA病毒以及开发新工具来鉴定具有非常高水平序列差异的RNA病毒的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb14/9927876/d9772d75d214/veab070f1.jpg

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