Urayama Syun-Ichi, Fukudome Akihito, Hirai Miho, Okumura Tomoyo, Nishimura Yosuke, Takaki Yoshihiro, Kurosawa Norio, Koonin Eugene V, Krupovic Mart, Nunoura Takuro
Department of Life and Environmental Sciences, Laboratory of Fungal Interaction and Molecular Biology, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8577, Japan.
Microbiology Research Center for Sustainability (MiCS), University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8577, Japan.
bioRxiv. 2023 Jul 3:2023.07.02.547447. doi: 10.1101/2023.07.02.547447.
Recent massive metatranscriptome mining substantially expanded the diversity of the bacterial RNA virome, suggesting that additional groups of riboviruses infecting bacterial hosts remain to be discovered. We employed full length double-stranded (ds) RNA sequencing for identification of riboviruses associated with microbial consortia dominated by bacteria and archaea in acidic hot springs in Japan. Whole sequences of two groups of multisegmented riboviruses genomes were obtained. One group, which we denoted hot spring riboviruses (HsRV), consists of unusual viruses with distinct RNA-dependent RNA polymerases (RdRPs) that seem to be intermediates between typical ribovirus RdRPs and viral reverse transcriptases. We also identified viruses encoding HsRV-like RdRPs in moderate aquatic environments, including marine water, river sediments and salt marsh, indicating that this previously overlooked ribovirus group is not restricted to the extreme ecosystem. The HsRV-like viruses are candidates for a distinct phylum or even kingdom within the viral realm . The second group, denoted hot spring partiti-like viruses (HsPV), is a distinct branch within the family . All genome segments in both these groups of viruses display the organization typical of bacterial riboviruses, where multiple open reading frames encoding individual proteins are preceded by ribosome-binding sites. Together with the identification in bacteria-dominated habitats, this genome architecture indicates that riboviruses of these distinct groups infect thermoacidophilic bacterial hosts.
近期大规模的宏转录组挖掘极大地扩展了细菌RNA病毒组的多样性,这表明仍有待发现更多感染细菌宿主的核糖病毒群。我们采用全长双链(ds)RNA测序来鉴定与日本酸性温泉中以细菌和古菌为主的微生物群落相关的核糖病毒。获得了两组多片段核糖病毒基因组的完整序列。其中一组,我们命名为温泉核糖病毒(HsRV),由具有独特RNA依赖性RNA聚合酶(RdRP)的不寻常病毒组成,这些酶似乎是典型核糖病毒RdRP和病毒逆转录酶之间的中间体。我们还在包括海水、河流沉积物和盐沼在内的中等水生环境中鉴定出编码类似HsRV的RdRP的病毒,这表明这个先前被忽视的核糖病毒群并不局限于极端生态系统。类似HsRV的病毒可能属于病毒界中一个独特的门甚至界。第二组,命名为温泉类分体病毒(HsPV),是该科内的一个独特分支。这两组病毒的所有基因组片段都呈现出细菌核糖病毒的典型结构,即多个编码单个蛋白质的开放阅读框之前都有核糖体结合位点。连同在以细菌为主的栖息地中的鉴定结果,这种基因组结构表明这些不同组的核糖病毒感染嗜热嗜酸细菌宿主。