1887

Abstract

A novel clade of RNA viruses was identified in the mammalian gastrointestinal tract by next-generation sequencing. Phylogenetically, these viruses are related to the genera (plant viruses) and , which includes mammalian, avian and insect hosts. Named in line with their characterization as oolssociated mbus-like viruses, it is unclear if statoviruses infect mammals or are dietary in origin. Here, metagenomic sequencing of faecal material collected from a 10-week-old calf with enteric disease found that 20 % of the reads mapped to a -assembled 4 kb contig with homology to statoviruses. Phylogenetic analysis of the statovirus genome found a clear evolutionary relationship with statovirus A, but, with only 47 % similarity, we propose that the statovirus sequence presents a novel species, statovirus F. A TaqMan PCR targeting statovirus F performed on faecal material found a cycle threshold of 11, suggesting a high titre of virus shed from the calf with enteric disease. A collection of 48 samples from bovine enteric disease diagnostic submissions were assayed by PCR to investigate statovirus F prevalence and 6 of 48 (12.5 %) were positive. An ELISA to detect antibodies to the coat protein found that antibodies to statovirus F were almost ubiquitous in bovine serum. Combined, the PCR and ELISA results suggest that statovirus F commonly infects cattle. Further research is needed to elucidate the aetiological significance of statovirus infection.

Funding
This study was supported by the:
  • south dakota state university agricultural experiment station
    • Principle Award Recipient: M. HauseBen
  • u.s. department of agriculture
    • Principle Award Recipient: M. HauseBen
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/content/journal/jgv/10.1099/jgv.0.001655
2021-09-23
2024-04-23
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References

  1. Gomez DE, Weese JS. Viral enteritis in calves. Can Vet J 2017; 58:1267–1274 [PubMed]
    [Google Scholar]
  2. Nagai M, Omatsu T, Aoki H, Otomaru K, Uto T et al. Full genome analysis of bovine astrovirus from fecal samples of cattle in Japan: Identification of possible interspecies transmission of bovine astrovirus. Arch Virol 2015; 160:2491–2501 [View Article] [PubMed]
    [Google Scholar]
  3. Nagai M, Omatsu T, Aoki H, Kaku Y, Belsham GJ et al. Identification and complete genome analysis of a novel bovine picornavirus in Japan. Virus Res 2015; 210:205–212 [View Article] [PubMed]
    [Google Scholar]
  4. Zhu L, Xing Z, Gai X, Li S, San Z et al. Identification of a novel enterovirus e isolates hy12 from cattle with severe respiratory and enteric diseases. PLOS ONE 2014; 9:e97730
    [Google Scholar]
  5. László Z, Pankovics P, Reuter G, Cságola A, Bálint Á et al. Multiple types of novel enteric Bopiviruses (Picornaviridae) with the possibility of interspecies transmission identified from cloven-hoofed domestic livestock (ovine, caprine, bovine) in Hungary. Viruses 2021; 13:66 [View Article] [PubMed]
    [Google Scholar]
  6. Li H, Tang C, Yue H. Molecular detection and genomic characteristics of bovine kobuvirus from dairy calves in China. Infect Genet Evol 2019; 74:103939 [View Article] [PubMed]
    [Google Scholar]
  7. Tsuchiaka S, Rahpaya SS, Otomaru K, Aoki H, Kishimoto M et al. Identification of a novel bovine enterovirus possessing highly divergent amino acid sequences in capsid protein. BMC Microbiol 2017; 17:18 [View Article] [PubMed]
    [Google Scholar]
  8. Park S-I, Jeong C, Park S-J, Kim H-H, Jeong Y-J et al. Molecular detection and characterization of unclassified bovine enteric caliciviruses in South Korea. Vet Microbiol 2008; 130:371–379 [View Article] [PubMed]
    [Google Scholar]
  9. Vlasova AN, Saif LJ. Bovine coronavirus and associated diseases. Front Vet Sci 2021; 8:643220 [View Article] [PubMed]
    [Google Scholar]
  10. Guo Z, He Q, Tang C, Zhang B, Yue H. Identification and genomic characterization of a novel CRESS DNA virus from a calf with severe hemorrhagic enteritis in China. Virus Res 2018; 255:141–146 [View Article] [PubMed]
    [Google Scholar]
  11. Wen L, Mao A, Fan Z, Li W, Xiao Q. Porcine circovirus-like virus P1 in cattle, goats and rabbits in China. Transbound Emerg Dis 2018; 65:e217–e218 [View Article] [PubMed]
    [Google Scholar]
  12. Janowski AB, Krishnamurthy SR, Lim ES, Zhao G, Brenchley JM. Statoviruses, a novel taxon of RNA viruses present in the gastrointestinal tracts of diverse mammals. Virology 2017; 504:36–44 [View Article] [PubMed]
    [Google Scholar]
  13. Dai X, Tian Y, Li J, Luo Y, Liu D. Metatranscriptomic analyses of plant cell wall polysaccharide degradation by microorganisms in the cow rumen. Appl Environ Microbiol 2015; 81:1375–1386 [View Article] [PubMed]
    [Google Scholar]
  14. Hause BM, Collin EA, Anderson J, Hesse RA, Anderson G. Bovine rhinitis viruses are common in U.S. cattle with bovine respiratory disease. PLoS One 2015; 10:e0121998 [View Article] [PubMed]
    [Google Scholar]
  15. Tu NTK, Hong NTT, Ny NTH, Phuc TM, Tam PTT et al. The virome of acute respiratory diseases in individual at risk of zoonotic infections. Viruses 2020; 12:960
    [Google Scholar]
  16. Walter CT, Pringle FM, Nakayinga R, de Felipe P, Ryan MD. Genome organization and translation products of Providence virus: insight into a unique tetravirus. J Gen Virol 2010; 91:2826–2835 [View Article] [PubMed]
    [Google Scholar]
  17. Jiwaji M, Matcher GF, de Bruyn MM, Awando JA, Moodley H. Providence virus: an animal virus that replicates in plants or a plant virus that infects and replicates in animals?. PLoS One 2019; 14:e0217494 [View Article] [PubMed]
    [Google Scholar]
  18. Kim JS, Yoon SJ, Park YJ, Kim SY, Ryu CM. Crossing the kingdom border: human diseases caused by plant pathogens. Environ Microbiol 2020; 22:2485–2495 [View Article] [PubMed]
    [Google Scholar]
  19. Liu R, Vaishnav RA, Roberts AM, Friedland RP. Humans have antibodies against a plant virus: evidence from tobacco mosaic virus. PLOS ONE 2013; 8:e60621
    [Google Scholar]
  20. Colson P, Richet H, Desnues C, Balique F, Moal V. Pepper mild mottle virus, a plant virus associated with specific immune responses, fever, abdominal pains and pruritus in humans. PLoS One 2010; 5:e10041 [View Article] [PubMed]
    [Google Scholar]
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