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高盐湖泊的病毒群落组成

Viral community composition of hypersaline lakes.

作者信息

Le Lay Callum, Hamm Joshua N, Williams Timothy J, Shi Mang, Cavicchioli Ricardo, Holmes Edward C

机构信息

Sydney Institute for Infectious Diseases, School of Medical Sciences, The University of Sydney, Sydney, NSW 2006, Australia.

School of Biotechnology and Biomolecular Sciences, University of New South Wales, Sydney, NSW 2052, Australia.

出版信息

Virus Evol. 2023 Aug 30;9(2):vead057. doi: 10.1093/ve/vead057. eCollection 2023.

Abstract

Despite their widespread distribution and remarkable antiquity no RNA viruses definitively associated with the domain have been identified. In contrast, 17 families of DNA viruses are known to infect archaea. In an attempt to uncover more of the elusive archaeal virosphere, we investigated the metatranscriptomes of hypersaline lakes that are a rich source of archaea. We sequenced RNA extracted from water filter samples of Lake Tyrrell (Victoria, Australia) and cultures seeded from four lakes in Antarctica. To identify highly divergent viruses in these data, we employed a variety of search tools, including Hidden Markov models (HMMs) and position-specific scoring matrices (PSSMs). From this, we identified 12 highly divergent, RNA virus-like candidate sequences from the virus phyla , , , and , including those with similarity to the RNA-dependent RNA polymerase (RdRp). An additional analysis with an artificial intelligence (AI)-based approach that utilises both sequence and structural information identified seven putative and highly divergent RdRp sequences of uncertain phylogenetic position. A sequence matching the from Deep Lake in Antarctica had the strongest RNA virus signal. Analyses of the dinucleotide representation of the virus-like candidates in comparison to that of potential host species were in some cases compatible with an association to archaeal or bacterial hosts. Notably, however, the use of archaeal CRISPR spacers as a BLAST database failed to detect any RNA viruses. We also described DNA viruses from the families , , , and the class . Although we were unable to provide definitive evidence the existence of an RNA virus of archaea in these hypersaline lakes, this study lays the foundations for further investigations of highly divergent RNA viruses in natural environments.

摘要

尽管RNA病毒分布广泛且历史悠久,但尚未发现与古菌域明确相关的RNA病毒。相比之下,已知有17个DNA病毒科感染古菌。为了揭示更多难以捉摸的古菌病毒圈,我们研究了富含古菌的高盐湖泊的宏转录组。我们对从澳大利亚维多利亚州泰瑞尔湖的水过滤样本以及从南极洲四个湖泊接种的培养物中提取的RNA进行了测序。为了在这些数据中识别高度分化的病毒,我们使用了多种搜索工具,包括隐马尔可夫模型(HMM)和位置特异性评分矩阵(PSSM)。由此,我们从古菌病毒门、、、中鉴定出12个高度分化的、类似RNA病毒的候选序列,包括那些与RNA依赖的RNA聚合酶(RdRp)相似的序列。使用基于人工智能(AI)的方法进行的额外分析,该方法同时利用序列和结构信息,鉴定出7个系统发育位置不确定的假定且高度分化的RdRp序列。与南极洲深湖的序列匹配具有最强的RNA病毒信号。与潜在宿主物种相比,对类似病毒候选序列的二核苷酸表示的分析在某些情况下与古菌或细菌宿主的关联相符。然而,值得注意的是,使用古菌CRISPR间隔区作为BLAST数据库未能检测到任何RNA病毒。我们还描述了来自、、科和纲的DNA病毒。尽管我们无法提供确凿证据证明这些高盐湖泊中存在古菌RNA病毒,但这项研究为进一步研究自然环境中高度分化的RNA病毒奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27bb/10492444/c256eacf3fd6/vead057f1.jpg

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