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Nakasato, K.

Publications and source records attributed to Nakasato, K..

2 recordsLinked to original sources

Epidemiology and phylodynamic analysis of canine distemper virus circulating in Michigan, USA

Canine distemper virus (CDV) is a highly contagious generalist pathogen that can cause significant mortality in domestic dogs and wild mammals. Due to the fast-evolving nature of CDV and its global spread, epizootic events and the emergence of new strains have been frequently reported. In Michigan, CDV surveillance from 2008 to 2018 was previously reported. Here, we combine and extend these data through 2023 to bring together 16 years of CDV surveillance in wild mammals in Michigan. We also sequenced CDV strains originating from both wildlife and domestic dogs to examine viral evolution across host populations. To facilitate interpretation of these data in both local and global contexts, we developed a Nextstrain workflow for CDV, enabling interactive visualization of viral evolution over time and geographic space. Our data show persistence of CDV in Michigan mammals during the study period and point to temporal, geographic, and host factors associated with CDV occurrence. Phylogenetic analysis using the newly built Nextstrain workflow showed that three CDV lineages--America-3, America-5, and Canada-1--are currently circulating in both wild and domestic animals in Michigan. The Nextstrain workflow enables reproducible, scalable integration of genomic sequencing into local surveillance and provides an updateable platform for ongoing and future surveillance efforts. This study demonstrates the value of coupling wildlife surveillance and diagnostic testing with genomic sequencing to identify lineage turnover and anticipate changes in viral behavior.

microbiology↗

Viromics in flat mites from Hawaii shows abundant arrays of viruses, expands the evolutionary origin of plant viruses, and provides a surveillance tool for Brevipalpus-transmitted viruses

Flat mites (Tenuipalpidae) are diverse phytophagous arthropods, among which Brevipalpus species are economically important pests capable of transmitting plant viruses. Brevipalpus-transmitted viruses (BTVs) cause localized infections in plants and are classified into two major groups based on cytopathology and genome organization: BTV-C (genera Cilevirus and Higrevirus, family Kitaviridae) and BTV-N (genus Dichorhavirus, family Rhabdoviridae). Despite their significance, the virome of tenuipalpid mite vectors remains poorly characterized. Using high-throughput sequencing (HTS), we analyzed virus populations associated with Brevipalpus and Dolichotetranychus mites collected from multiple plant hosts across two Hawaiian Islands. We identified a diverse assemblage of viral sequences affiliated with Kitaviridae, negeviruses, Picornavirales, Narnaviridae, Tombusviridae, Solemoviridae, Ourmiaviridae, Reoviridae, and Potyviridae. Near-complete genomes of citrus leprosis virus C2H and hibiscus green spot virus 2 (both BTV-C) were recovered, highlighting the utility of HTS-based viromics for surveillance of BTVs in mite vectors. In addition, multiple divergent virus-like contigs were identified based on viral hallmark genes and sequence divergence, including Brevipalpus-associated negevirus, Brevipalpus-associated bluner-like virus, and Dolichotetranychus-associated cile-like virus, all showing evolutionary affinities to BTV-C-related viruses. Phylogenetic analyses support evolutionary links between negeviruses and kitavirids, consistent with the hypothesis that Kitaviridae evolved from arthropod-associated ancestors. While some detected plant viruses may reflect ingestion rather than active replication in mites, this study establishes a robust framework for virome-based surveillance of tenuipalpid mites, advancing our understanding of plant virus evolution and supporting agricultural biosecurity and pest management efforts.

microbiology↗