Coincidental observation of a parvovirus during a targeted bacterial survey of cattle suffering from septic arthritis

DNA capture-based sequencing by hybridization probe enrichment (CapSeq) affords high-throughput and targeted gene-to-organism detection. Despite the specificity designed into CapSeq platforms, untargeted DNA represent additional genes and organisms of interest. To this end, de novo metagenome assemblies of CapSeq datasets present opportunities for discovery. We report an example here. CapSeq of samples that originated from cattle suffering from septic arthritis resulted in detection and assembly of two ungulate tetraparvovirus 1 (UTPV1) genomes. These coincidental detections and assemblies were obtained from a platform designed to characterize bacterial, not viral, pathogens. Access to a sample matched shotgun metagenomic dataset corroborated the result. Importantly, septic arthritis is a significant source of lameness in beef cattle that lacks effective and approved treatments, and the list of aetiological agents is incomplete. This metagenomic observation calls attention to the possible implication of viral contributors to bovine septic arthritis, which is treated as a bacterial disease. The results exemplify the potential application of unbiased CapSeq data mining to support clinical discoveries.

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Publication Details

Journal
Canadian Journal of Microbiology
Published
2026-09-24
DOI
https://doi.org/10.1139/cjm-2026-0033
Primary Topic
Animal Virus Infections Studies
Type
article
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article

Coincidental observation of a parvovirus during a targeted bacterial survey of cattle suffering from septic arthritis

Andrew D. S. Cameron, Ashton N. Sies, Daniël Kos, Antonio Ruzzini et al.
Canadian Journal of Microbiology
Animal Virus Infections Studies
article

Coincidental observation of a parvovirus during a targeted bacterial survey of cattle suffering from septic arthritis

Andrew D. S. Cameron, Ashton N. Sies, Daniël Kos, Antonio Ruzzini, Murray Jelinski
article en

Abstract

DNA capture-based sequencing by hybridization probe enrichment (CapSeq) affords high-throughput and targeted gene-to-organism detection. Despite the specificity designed into CapSeq platforms, untargeted DNA represent additional genes and organisms of interest. To this end, de novo metagenome assemblies of CapSeq datasets present opportunities for discovery. We report an example here. CapSeq of samples that originated from cattle suffering from septic arthritis resulted in detection and assembly of two ungulate tetraparvovirus 1 (UTPV1) genomes. These coincidental detections and assemblies were obtained from a platform designed to characterize bacterial, not viral, pathogens. Access to a sample matched shotgun metagenomic dataset corroborated the result. Importantly, septic arthritis is a significant source of lameness in beef cattle that lacks effective and approved treatments, and the list of aetiological agents is incomplete. This metagenomic observation calls attention to the possible implication of viral contributors to bovine septic arthritis, which is treated as a bacterial disease. The results exemplify the potential application of unbiased CapSeq data mining to support clinical discoveries.

Canadian Journal of Microbiology
University of Regina (CA), University of Saskatchewan (CA)
Openalex Percentile: Top 15%
Animal Virus Infections Studies
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Coincidental observation of a parvovirus during a targeted bacterial survey of cattle suffering from septic arthritis — Andrew D. S. Cameron, Ashton N. Sies, et al. · Canadian Journal of Microbiology (2026) | TGRS Research Map | TGRS