Overwintering of recombinant lumpy skin disease virus in northern latitudes, Russia.


Journal

Transboundary and emerging diseases
ISSN: 1865-1682
Titre abrégé: Transbound Emerg Dis
Pays: Germany
ID NLM: 101319538

Informations de publication

Date de publication:
Sep 2022
Historique:
revised: 02 03 2022
received: 07 02 2022
accepted: 15 03 2022
pubmed: 18 3 2022
medline: 30 9 2022
entrez: 17 3 2022
Statut: ppublish

Résumé

Lumpy skin disease is an emerging transboundary infection demonstrating a great range expansion worldwide recently. With many knowledge gaps, there is a lack of understanding how lumpy skin disease virus (LSDV), including naturally occurring vaccine-like LSDV, is capable of surviving under different climatic conditions. In this study, we describe a recombinant vaccine-like LSDV from an outbreak in Saratov region of Russia in 2019, where the first recombinant Saratov/2017 was documented. Although the two isolates were two years apart, Saratov/2019 seems to be clonally derived from Saratov/2017 with accrual of mutations characteristic of circulating under selective conditions. The obtained findings demonstrate the persistence of LSDV during winter and successful overwintering in in cold climate, necessitating an objective need for deeper research into LSDV biology.

Identifiants

pubmed: 35298087
doi: 10.1111/tbed.14521
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

e3239-e3243

Subventions

Organisme : Ministry of Education and Science of Russia
ID : 075-15-2021-1054

Informations de copyright

© 2022 Wiley-VCH GmbH.

Références

Alcami, A., & Smith, G. L. (2002). The vaccinia virus soluble interferon-y receptor is a homodimer. Journal of General Virology, 83, 545-549.
European Food Safety Authority (EFSA), Calistri, P., De Clercq, K., Gubbins, S., Klement, E., Stegeman, A., Cortinas Abrahantes, J., Marojevic, D., Antoniou, S. E., & Broglia, A. (2020). Scientific report on the lumpy skin disease epidemiological report IV: Data collection and analysis. EFSA Journal, 18, e06010.
Haegeman, A., De Leeuw, I., Saduakassova, M., Van Campe, W., Aerts, L., Philips, W., Sultanov, A., Mostin, L., & De Clercq, K. (2021). The importance of quality control of LSDV live attenuated vaccines for its safe application in the field. Vaccines, 9, 1019. https://doi.org/10.3390/vaccines9091019
Haig, D. A. (1957). Lumpy skin disease. Bulletin of Epizootic Diseases of Africa, 5, 421-430.
Kara, P. D., Afonso, C. L., Wallace, D. B., Kutish, G. F., Abolnik, C., Lu, Z., Vreede, F. T., Taljaard, L. C. F., Zack, A., Viljoen, G. J., & Rock, D. L. (2003). Comparative sequence analysis of the South African vaccine strain and two virulent field isolates of lumpy skin disease virus. Archives of Virology, 148, 1335-1356. https://doi.org/10.1007/s00705-003-0102-0.
Kononov, A., Byadovskaya, O., Wallace, D. B., Prutnikov, P., Pestova, Y., Kononova, S., Nesterov, A., Rusaleev, V., Lozovoy, D., & Sprygin, A. (2020). Non-vector-borne transmission of lumpy skin disease virus. Scientific Reports. Nature Research, 10, 7436. Doi.org/10.1038/s41598-020-64029-w
Kumar, S., Stecher, G., Li, M., Knyaz, C., Tamura, K. & MEGA, X. (2018). Molecular Evolutionary Genetics Analysis across Computing Platforms. Mol Biol Evol., 35(6), 1547-1549. https://doi.org/10.1093/molbev/msy096
Lole, K. S., Bollinger, R. C., Paranjape, R. S., Gadkari, D., Kulkarni, S. S., Novak, N. G., et al. (1999). Analysis of vaccine-like lumpy skin disease virus from flies near the western border of China. J. Virol., 73, 152-160.
Martin, D. P., Murrell, B., Golden, M., Khoosal, A., & Muhire, B. (2015). RDP4: Detection and analysis of recombination patterns in virus genomes. Virus Evolution, 1, vev003. https://doi.org/10.1093/ve/vev003
Prozesky, L., & Barnard, B. J. H. (1982). A study of the pathology of lumpy skin-disease in cattle. Onderstepoort Journal of Veterinary Research, 49, 167-175
Sohier, C., Haegeman, A., Mostin, L., De Leeuw, I., Van Campe, W., De Vleeschauwer, A., Tuppurainen, E., van den Berg, T., De Regge, N., & De Clercq, K. (2019). Experimental evidence of mechanical lumpy skin disease virus transmission by Stomoxys calcitrans biting flies and Haematopota spp. horseflies. Scientific Reports, 9, 1-10.
Sprygin, A., Babin, Y., Pestova, Y., Kononova, S., Wallace, D. B., van Schalkwyk, A., Byadovskaya, O., Diev, V., Lozovoy, D., & Kononov, A. (2018). Analysis and insights into recombination signals in lumpy skin disease virus recovered in the field. PLoS One, 13(12), e0207480. https://doi.org/10.1371/journal.pone.0207480
Sprygin, A., Pestova, Y., Bjadovskaya, O., Prutnikov, P., Zinyakov, N., Kononova, S., Ruchnova, O., Lozovoy, D., Chvala, I., & Kononov, A. (2020). Evidence of recombination of vaccine strains of lumpy skin disease virus with field strains, causing disease. PLoS One, 15(5), e0232584.
Sprygin, A., van Schalkwyk, A., Shumilova, I., Nesterov, A., Kononova, S., Prutnikov, P., Byadovskaya, O., & Kononov, A. (2020). Full-length genome characterization of a novel recombinant vaccine-like lumpy skin disease virus strain detected during the climatic winter in Russia, 2019. Archives of Virology. Advance online publication. https://doi.org/10.1007/s00705-020-04756-7.
Tran, H. T. T., Truong, A. D. Dang, A. K. D., Ly, D. V., Nguyen, C. T., Chu, N. T., Hoang, T. V., Nguyen, H. T., & Dang, H. V. (2021). Lumpy skin disease outbreak in Vietnam, 2020. Transboundary and Emerging Diseases, 68(3), 977-980. https://doi.org/10.1111/TBED.14022
Tulman, E. R., Afonso, C. L., Lu, Z., Zsak, L., Kutish, G. F., & Rock, D. L. (2001). Genome of lumpy skin disease virus. Journal of Virology, 75(15), 7122-7130.
Van Rooyen, P. J., Kümm, N. A. L. Weiss, K. E., & Alexander, R. A. (1959). A preliminary note on the adaptation of a strain of lumpy skin disease virus to propagation in embryonated eggs. Bulletin of Epizootic Diseases of Africa, 7, 79-85.
Van Schalkwyk, A., Byadovskaya, O., Shumilova, I., Wallace, D. B., & Sprygin, A. (2022). Estimating evolutionary changes between highly passaged and original parental lumpy skin disease virus strains. Transboundary and Emerging Diseases, 69(4), e486-e496. https://doi.org/10.1111/tbed.14326
Van Schalkwyk, A., Kara, P., Ebersohn, K., Mather, A. S., Annandale, H., Venter, E. H., & Wallace, D. B. (2020). Potential link of single nucleotide polymorphisms (SNPs) to virulence of vaccine-associated field strains of lumpy skin disease virus in South Africa. Transboundary and Emerging Diseases, 67(6), 2946-2960. https://doi.org/10.1111/tbed.13670.
Wang, Y., Zhao, L., Yang, J., Shi, M., Nie, F., Liu, S., Wang, Z., Huang, D., Wu, H., Li, D., Lin, H., & Li, Y. (2022). Analysis of vaccine-like lumpy skin disease virus from flies near the western border of China. Transboundary and Emerging Diseases., 69(4), 1813-1823. https://doi.org/10.1111/tbed.14159
Weiss, KE (1968). Lumpy Skin Disease Virus. In: Cytomegaloviruses. Rinderpest Virus. Lumpy Skin Disease Virus. Virology Monographs (Die Virusforschung in Einzeldarstellungen). Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-662-39771-8_3

Auteurs

Irina Shumilova (I)

Federal Center for Animal Health, Vladimir, Russia.

Alena Krotova (A)

Federal Center for Animal Health, Vladimir, Russia.

Alexander Nesterov (A)

Federal Center for Animal Health, Vladimir, Russia.

Olga Byadovskaya (O)

Federal Center for Animal Health, Vladimir, Russia.

Antoinette van Schalkwyk (A)

Agricultural Research Council, Onderstepoort Veterinary Institute, Pretoria, South Africa.

Alexander Sprygin (A)

Federal Center for Animal Health, Vladimir, Russia.

Articles similaires

Robotic Surgical Procedures Animals Humans Telemedicine Models, Animal

Odour generalisation and detection dog training.

Lyn Caldicott, Thomas W Pike, Helen E Zulch et al.
1.00
Animals Odorants Dogs Generalization, Psychological Smell
Animals TOR Serine-Threonine Kinases Colorectal Neoplasms Colitis Mice
Animals Tail Swine Behavior, Animal Animal Husbandry

Classifications MeSH