Retrospective Multi-Locus Sequence Analysis of African Swine Fever Viruses by “PACT” Confirms Co-Circulation of Multiple Outbreak Strains in Uganda

Author:

Kabuuka Tonny12,Mulindwa Henry1,Bastos Armanda D. S.34ORCID,van Heerden Juanita5ORCID,Heath Livio5,Fasina Folorunso O.246ORCID

Affiliation:

1. Infectious Animal Diseases Laboratory, National Livestock Resources Research Institute (NaLIRRI), National Agricultural Research Organisation (NARO), Totoro 21403, Uganda

2. Department of Production Animal Studies (DPAS), Faculty of Veterinary Science, University of Pretoria, Onderstepoort 0110, South Africa

3. Department of Zoology and Entomology, Faculty of Natural and Agricultural Sciences, University of Pretoria, Hatfield 0028, South Africa

4. Department of Veterinary Tropical Diseases, Faculty of Veterinary Science, University of Pretoria, Onderstepoort 0110, South Africa

5. Transboundary Animal Diseases Programme, Agricultural Research Centre-Onderstepoort Veterinary Institute, Onderstepoort 0110, South Africa

6. Food and Agriculture Organization of the United Nations (FAO), I-00100 Rome, Italy

Abstract

African swine fever (ASF) is a haemorrhagic fever of swine that severely constrains pig production, globally. In Uganda, at least 388 outbreaks of ASF were documented from 2001 to 2012. We undertook a retrospective serological and molecular survey of ASF virus (ASFV) using banked samples collected from seven districts (Pallisa, Lira, Abim, Nebbi, Kabarole, Kibaale, and Mukono) of Uganda. Six assays (ELISA for antibody detection, diagnostic p72 gene PCR and genomic amplification, and sequencing of four gene regions (p72 [P], p54 [A], CVR of the 9RL-ORF [C], and TK [T]), hereinafter referred to as P-A-C-T (PACT)) were evaluated. Antibodies to ASFV were detected in the Abim district (6/25; 24.0%), and the remainder of the serum samples were negative (187/193; 96.9%). For the tissue samples, ASFV detection by assay was 8.47% for P, 6.78% for A, 8.47% for C, and 16.95% for T. The diagnostic PCR (p72 gene) detected seven positive animals from four districts, whereas the TK assay detected ten positives from all seven districts. In addition to the superior detection capability of TK, two virus variants were discernible, whereas CVR recovered three variants, and p72 and p54 sequencing each identified a single variant belonging to genotype IX. Our results indicate that dependence on serology alone underestimates ASF positivity in any infected region, that multi-locus sequence analysis provides better estimates of outbreak strain diversity, and that the TK assay is superior to the WOAH-prescribed conventional p72 diagnostic PCR, and warrants further investigation.

Funder

National Agricultural Research Organization, Uganda, through Government of Uganda

World Bank-ATAAS scholarship

University of Pretoria Postgraduate scholarship

NRF incentive funding

NRF facility grant

National Research Foundation

University of Pretoria

Publisher

MDPI AG

Subject

General Veterinary,Animal Science and Zoology

Reference35 articles.

1. MacLachlan, J.N., and Dubovi, J.E. (2011). Fenner’s Veterinary Virology, Academic Press. [4th ed.].

2. Liu, D. (2014). Manual of Security Sensitive Microbes and Toxins, CRC Press. Available online: http://www.crcpress.com/product/isbn/9781466553965.

3. On a farm of swine fever occurring in British East Africa (Kenya Colony);Montgomery;J. Comparative Pathol.,1921

4. Fauquet, C.M., Mayo, M.A., Maniloff, J., Desselberger, U., and Ball, L.A. (2005). Virus Taxonomy, VIIIth Report of the ICTV, Academic Press.

5. Genotyping field strains of African swine fever virus by partial p72 gene characterisation;Bastos;Archives Virol.,2003

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