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Cho, W. K.

Publications and source records attributed to Cho, W. K..

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Identification of viruses belonging to the family Partitiviridae from plant transcriptomes

Viruses in the family Partitiviridae consist of non-enveloped viruses with bisegmented double-stranded RNA genomes. Viruses in this family have been identified from plants and fungi. In this study, we identified several viruses belonging to the family Partitiviridae using plant transcriptomes. From 11 different plant species, we identified a total of 74 RNA segments representing 23 partitiviruses. Of 74 RNA segments, 28 RNA segments encode RNA-dependent RNA polymerases (RdRp) while 46 RNA segments encode coat proteins (CPs). According to ICTV demarcation for the family Partitiviridae, 25 RNAs encoding RdRp and 41 RNAs encoding CP were novel RNA segments. In addition, we identified eight RNA segments (three for RdRp and five for CP) belonging to the known partitivruses. Taken together, this study provides the largest number of partitiviruses from plant transcriptomes in a single study.

microbiology

Identification of viruses from fungal transcriptomes

Viruses infecting fungi are referred to as mycoviruses. Here, we carried out in silico mycovirome studies using public fungal transcriptomes. We identified 468 virus-associated contigs assigned to five orders, 21 families, 26 genera, and 88 species. We assembled 120 viral genomes with diverse RNA and DNA genomes. The phylogenetic tree and genome organization unveiled the possible host origin of mycovirus species and diversity of their genome structures. Most identified mycoviruses were originated from fungi; however, some mycoviruses had strong phylogenetic relationships with those from insects and plants. The viral abundance and mutation frequency of mycoviruses were very low; however, the compositions and populations of mycoviruses were very complex. Although coinfection of diverse mycoviruses in the fungi was common in our study, most mycoviromes had a dominant virus species. The compositions and populations of mycoviruses were more complex than we expected. Monilinia viromes revealed that there were strong deviations in the composition of viruses and viral abundance among samples. Gigaspora viromes showed that the chemical strigolactone might promote virus replication and mutations, while symbiosis with endobacteria might suppress virus replication and mutations. This study revealed the diversity and host distribution of mycoviruses.

microbiology