Detection of African swine fever virus in pigs in Southwest Nigeria
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Published:2021-07-19
Issue:
Volume:
Page:1840-1845
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ISSN:2231-0916
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Container-title:Veterinary World
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language:en
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Short-container-title:Vet World
Author:
Awosanya Emmanuel Jolaoluwa1ORCID, Olugasa Babasola Oluseyi1ORCID, Gimba Fufa Ido2ORCID, Sabri Mohd Yusoff2, Ogundipe Gabriel Adetunji1ORCID
Affiliation:
1. Department of Veterinary Public Health and Preventive Medicine, Faculty of Veterinary Medicine, University of Ibadan, Ibadan, Nigeria. 2. Department of Veterinary Pathology and Microbiology, Faculty of Veterinary Medicine, Universiti Putra Malaysia, 43400 UPM, Serdang, Selangor, Malaysia.
Abstract
Background and Aim: Nigeria experienced repeated outbreaks of African swine fever (ASF) in pig herds between 1997 and 2005 in the southwest region of the country. ASF is believed to currently be enzootic in this region. The status of enzootic transmission of ASF virus strain to pigs is; however, unknown. Twenty-three genotypes of the ASF virus based on the p72 gene are found across Africa. This study aimed to identify the current circulating field strain(s) of the ASF virus in Southwest Nigeria and characterized evolutionary trends.
Materials and Methods: DNA samples were extracted from 144 pooled blood samples obtained from 2012 to 2013 following the manufacturer's instructions. DNA was used for conventional polymerase chain reaction using primers targeting the p72 gene and amplified products sequenced with Sanger's sequencing. Sequences were analyzed for homology and phylogenetic relationships.
Results: Eleven of 144 samples (7.6%) showed bands at 950 bp. A new field strain of ASF virus of genotype I that shared ancestry with ASF virus strains or isolates from Spain and Brazil was identified among pig herds. The new strain differs phylogenetically in amino acid composition compared with previously identified ASF virus field strains.
Conclusion: The currently circulating field strain of ASF virus suggests a mutation responsible for decreased morbidity and mortality recorded in sporadic cases.
Funder
Tertiary Education Trust Fund
Publisher
Veterinary World
Subject
General Veterinary
Reference29 articles.
1. Babalobi, O.O., Olugasa, B.O., Oluwayelu, D.O., Ijagbone, I.F., Ayoade, G.O. and Agbede, S.A. (2007) Analysis and evaluation of mortality losses of the 2001 African swine fever outbreak, Ibadan, Nigeria. Trop. Anim. Health Prod., 39(7): 533-542. 2. Dixon, L.K., Sun, H. and Roberts, H. (2019) African swine fever. Antiviral Res., 165(1 ): 34-41. 3. Bastos, A.D., Penrith, M.L., Cruciere, C., Edrich, J.L., Hutchings, G., Roger, F., Couacy-Hymann, E. and Thomson, G. (2003) Genotyping field strains of African swine fever virus by partial p72 gene characterization. Arch. Virol., 148(4): 693-706. 4. Boshoff, C.I., Bastos, A.D., Gerber, L.J. and Vosloo, W. (2007) Genetic characterization of African swine fever viruses from outbreaks in southern Africa (1973-1999). Vet. Microbiol., 121(1-2): 45-55. 5. Achenbach, J.E., Gallardo, C., Nieto‐Pelegrín, E., Rivera‐Arroyo, B., Degefa‐Negi, T., Arias, M., Jenberie, S., Mulisa, D.D., Gizaw, D., Gelaye, E. and Chibssa, T.R. (2017) Identification of a new genotype of African swine fever virus in domestic pigs from Ethiopia. Transbound. Emerg. Dis., 64(5): 1393-1404.
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