Survey of Gastro-intestinal and Ectoparasites of Games in Ogun State, Nigeria

Authors

  • F. A. Akande Department of Veterinary Parasitology & Entomology, College of Veterinary Medicine, Federal University of Agriculture, Abeokuta, PMB 2240, Alabata 111101, Abeokuta, Nigeria.
  • K. O. Olaniyan Department of Veterinary Parasitology & Entomology, College of Veterinary Medicine, Federal University of Agriculture, Abeokuta, PMB 2240, Alabata 111101, Abeokuta, Nigeria.
  • O. A. Osifade Department of Veterinary Pathology, College of Veterinary Medicine, Federal University of Agriculture, Abeokuta, PMB 2240, Alabata 111101, Abeokuta, Nigeria.
  • M. I. Takeet Department of Veterinary Parasitology & Entomology, College of Veterinary Medicine, Federal University of Agriculture, Abeokuta, PMB 2240, Alabata 111101, Abeokuta, Nigeria.

DOI:

https://doi.org/10.4314/njpar.v45i2.15

Keywords:

Ectoparasites, gastrointestinal parasites (GIP), Zoonosis, Wildlife, Games

Abstract

Games are wild animals often referred to as “bushmeat” when killed, primarily for personal consumption and/or monetary exchange. Parasites of games, such as protozoa, helminths, and ectoparasites, have not always been reported; however, they are essentially zoonotic, thereby putting animal and human populations at risk whenever present. The lack of information on these parasites, as well as the danger of their presence, necessitated this study to provide baseline data regarding the area, as well as information on possible zoonosis at the human-animalenvironment interface. Physical examination was conducted on animals brought from hunting sprees to the “bushmeat” market during which all visible ectoparasites were harvested and were kept in 70% ethanol, samples were harvested from portions of the gastrointestinal tract of freshly killed games and transferred into well-labelled containers by ligation of each portion to assay for Gastrointestinal Parasites (GIP). The samples were analysed using centrifugal flotation for GIP and morphology for ectoparasite identification. Grasscutter (Thryonomys swinderianus) and Antelope (Maxwell’s duiker, Philantomba maxwellii) were examined during the study period, with 90.9% and 66.7% mixed and 9% and 25% mono infections, respectively. GIP eggs were Strongyle (36.4%, 25%), Trichuris (45.5%, 16.7%), Haemonchus (18.2%, 16.7%), Strongyloides (18.2%, 16.7%), Ascaridia (9%, 16.7%), and Eimeria (63.6%, 75%) in Grasscutter and Antelope, respectively, whereas Moniezia (25%), Taenia (16,7%), and Hookworm (18.2%) occurred only in the antelope, with the highest infection in the ileum and colon (63.6%), and rectum (83%) of Grasscutter and antelope,
respectively. Four genera of ticks were identified: Amblyomma (41%), Rhipicephalus (Boophilus) microplus (20.5%), Rhipicephalus sanguineus (17.9%), Haemaphysalis (12.8%), and Hyalomma (7.7%). The presence of zoonotic GIP and ticks, which are known vectors of various diseases, calls for further studies, education, and awareness among the hunting community.

         Views | Download: 27 / 0

Author Biography

K. O. Olaniyan, Department of Veterinary Parasitology & Entomology, College of Veterinary Medicine, Federal University of Agriculture, Abeokuta, PMB 2240, Alabata 111101, Abeokuta, Nigeria.

Department of Product Development and Quality Assurance, Nigeria Natural Medicine Development Agency, Lagos, Nigeria.

References

Van Vliet, N., Moreno, J., Gómez, J., Zhou, W., Fa, J. E., Golden, C., Alves, R. R. N., & Nasi, R. (2017). Bushmeat and human health: Assessing the evidence in tropical and sub-tropical forests. Ethnobiology and Conservation. Vol. 6: 3. https://doi.org/10.15451/ec2017-04-6.3-1-45

Oboye, O. (2017). The good and ugly side of eating bush meat. Punch newspaper published 27 October 2017. https://punchng.com/the-good-and-ugly-side-of-eating-bush-meat-1/ [Accessed 21/09/2022]

Araujo, A., Reinhard, K., Ferreira, L. F., Pucu, E., & Chieffi, P. P. (2013). Paleoparasitology: the origin of human parasites. Arquivos de neuro-psiquiatria. September;71(9B):722–6. doi: 10.1590/0004- 282X20130159

Atkinson, C. T., Thomas, N. J., & Hunter, D. B. (2008). Parasitic diseases of wild birds. Oxford: WileyBlackwell. ISBN: 9780813820811. DOI: 10.1002/9780813804620

Rahman, M. T., Sobur, M.A., Islam, M. S., Ievy, S., Hossain, M. J., El Zowalaty, M. E., Rahman,A. T., & Ashour, H. M. (2020). Zoonotic Diseases: Etiology, impact, and control. Microorganisms, 8: 1405. https://doi.org/10.3390/microorganisms8091405

Odeniran, P. O., & Ademola, I. O. (2016). Zoonotic Parasites of wildlife in Africa: A Review. African Journal of Wildlife Research, 46(1):1-13. https://doi.org/10.3957/056.046.0001

Akani, G. C., Amadi, N., Eniang, E. A., Luiselli, L., & Petrozzi, F. (2015). Are mammals communities occurring at a regional scale reliably represented in ‘‘Hub’’bushmeat markets?Acase study with Bayelsa State (Niger Delta, Nigeria). Folia Zoological, 64(1): 79-86. https://doi.org/10.25225/fozo.v64.i1.a9.2015

Taiwo, O. T., Sam-Wobo, S. O., Idowu, O. A., Talabi, A. O., & Taiwo, A. M. (2017). Comparative assessment of intestinal helminths prevalence in water, sanitation and hygiene (WASH) intervention and nonintervention communities in Abeokuta, Nigeria. Asian Pacific Journal of Tropical Biomedicine, 7(6): 524-32. https://doi.org/10.1016/j.apjtb.2017.05.006

Lawal, M. S. (2014). Bushmeat production and wildlife domestication programme in Ogun State. Research Gate.

https://www.researchgate.net/publication/282133395_Bushmeat_Production_and_Wildlife_Domestication _Programme_in_Ogun_State. [Accessed 21 December 2021]

Edgar, T. W., & Manz, D. O. (2017). Exploratory Study, In- Research Methods for Cyber Security. Eds: Thomas W. Edgar, Davis O. Manz. Syngress. Pages 95-130. DOI: 10.1016/B978-0-12-805349-2.00004-2

Mathison, B. A., & Pritt, B. S. (2014) Laboratory identification of arthropod ectoparasites. Clinical Microbiology Reviews, 27(1):48-67. doi: 10.1128/CMR.00008-13.

Akande, F. A., & Alohutade, M. P. (2021). Diagnosis of bovine gastrointestinal parasites: comparison of different techniques and different solutions. Annals of parasitology, 67(3), 407–416. https://doi.org/10.17420/ap6703.354

Akande, F. A., Obisesan, O. M., Adeniji, S. D. & Adelakun, D. O. (2022). Detection and identification of gastrointestinal parasites in dogs presented to veterinary clinics in Abeokuta, Southwestern Nigeria. Sokoto Journal of Veterinary Sciences, 20(1): 19 - 25. DOI: 10.4314/sokjvs.v20i1.3

Okeke, J. J., Ikegbunam, N. M., Umeaniebe, A. C., Ezeonyejiaku, D. C., & Ezeadila J. O. (2013). A survey on the ectoparasites and haemoparasites of Grasscutter (Thryonomys swinderianus) reared under captive conditions. Journal of Natural Science Research, 3:201.

https://www.iiste.org/Journals/index.php/JNSR/article/view/4365/4428 [Accessed 10th November 2021].

Adeyemi, A. A., Edet, D. I., & Okoronkwo, A. E. (2018). Status and Distribution of Duiker Species in Okomu National Park, Nigeria. Journal of Forestry Research and Management, 15(2).136-148. www.jfrm.org.ng.

Halidu, K. S. (2019). Assessment of bushmeat sale and its implication on wildlife conservation in Old Oyo National Park, Nigeria. World News of Natural Sciences, 23:266-275. EISSN 2543-5426. www.worldnewsnaturalsciences.com

Layade, K. T., & Layade, A. A. (2020). Assessment of bushmeat marketing in Oluyole Local Government, Oyo State, Nigeria. Journal of Research in Forestry, Wildlife and Environment, 12(3). http://www.ajol.info/index.php/jrfwe.

Atuman, Y. J., Kudi, C. A., Abdu, P., Okubanjo, O. O., & Abubakar, A. (2019). Prevalence of parasites of wildlife in Yankari game reserve and Sumu wildlife park in Bauchi State, Nigeria. Sokoto Journal of Veterinary Sciences, 17(4): 70 - 79. DOI: 10.4314/sokjvs.v17i4.8

Ugbomoiko, U. S., Ariza L. & Heukelbach, J. (2008). Parasites of importance for human health in Nigerian dogs: high prevalence and limited knowledge of pet owners. BMC Veterinary Research, 2008, 4:49. DOI: https://doi.org/10.1186/1746-6148-4-49

Yang, J., Okyere, S. K., Zheng, J., Cao, B., & Hu, Y. (2022). Seasonal prevalence of gastrointestinal parasites in Macaques (Macaca tibetan) at Mount Emei Scenic Area in China. Animals, 12(14), 1816. https://doi.org/10.3390/ani1214181

Adeniyi, I. C., Morenikeji, O. A. & Emikpe, B. O. (2015). The prevalence of gastro-intestinal parasites of carnivores in university zoological gardens in Southwest Nigeria. Journal of Veterinary Medicine and Animal Health, 7(4): 135-139. DOI: 10.5897/JVMAH2014.0336.

Anthony, A. (2022). Overview of Coccidiosis in Animals. MSD Manual, Veterinary Manual. October 2022 edition. www.smdvetmanual.com/digestive-system/coccidiosis/overview-of-coccidiosis-in-animals.

Erkenswick, A. G., Watsa, M., Gozalo, A. S., Dmytryk, N. & Parker, P. G. (2017). Temporal and demographic blood parasite dynamics in two free-ranging neotropical primates. International Journal forParasitology: Parasites and Wildlife, 6(2): 59-68. https://doi.org/10.1016/j.ijppaw.2017.03.004

Opara, M. N. & Fagbemi, B. O. (2008). Occurrence and prevalence of gastrointestinal helminthes in the wild grasscutter (Thryonomys swinderianus Temminck) from Southeast Nigeria. Life Science Journal, 5(3). Akande et al: Survey of Gastro-intestinal and Ectoparasites of Games in Ogun State 398 https://www.researchgate.net/publication/267255979

Muhammad, F. (2020). Zoonotic Infections Overview: A Nigerian Perspective. International Journal of Infection, 7(3):e106028. doi: 10.5812/iji.106028.

Adejinmi, J. O., & Ayinmode, A. B. (2008). Preliminary investigation of zooanthroponosis in a Nigerian zoological garden. Veterinary Research, 2(3-4): 38–41. https://journals.co.za/doi/pdf/10.10520/EJC117373

Bengis, R. G., Leighton, F. A., Fischer, J. R., Artois, M., Morner, T., & Tate, C. M. (2004). The role of wildlife in emerging and re-emerging zoonoses. Revision Science and Technology, 23: 497–512. PMID: 15702716. https://pubmed.ncbi.nlm.nih.gov/15702716/

Maxfield, L., & Crane, J. S. (2022). Cutaneous larva migrans. In: StatPearls (internet). StatPearls Publishing LLC, Treasure Land, (FL). https://www.ncbi.nlm.nih.gov/books/NBK507706/ [Accessed 2ndAugust 2023]

Santos, C. P., Braga-Pereira, F., Borges,A. K. M, Van Vliet, N. &Alves, R. R. N. (2022). Consumption and preferences for wild and domestic meat in indigenous communities in the BrazilianAtlantic forest. Frontier in Ecology and Evolution, 1-13. 10:900398. doi: 10.3389/fevo.2022.900398

Iposu, S. O., Okwelum, N., Sanni Ridwan, O., Sanwo, K., & Oduguwa, B. O. (2013). Prevalence of mites and fleas as primary turkey ectoparasites in Odeda Local Government Area of Ogun State, Nigeria. Global Journal of Biology, Agriculture and Health Science, 2(3):154-157.

https://www.walshmedicalmedia.com/abstract/prevalence-of-mites-and-fleasas-primary-turkeyectoparasites-in-odeda-local-government-area-of-ogun-state-nigeria-3050.html.

Agu, N. G., Okoye, I. C., Nwosu, C. G., Onyema, I., Iheagwam, C. N. &Anunobi, T. J. (2020). Prevalence of ectoparasites infestation among companion animals in Nsukka cultural zone. Annals of Medical and Health Science Research,10:1050-1057. https://www.amhsr.org/articles/prevalence-of-ectoparasites-infestationamongcompanion-animals-in-nsukka-cultural-zone-6923.html

Ernieenor, F. C. L., Ernna, G., & Mariana,A. (2017). Phenotypic and genotypic identification of hard ticks of the genus Haemaphysalis (Acari: Ixodidae) in Peninsular Malaysia. Experimental and Applied Acarology, 71(4):387–400. DOI: 10.1007/s10493-017-0120-3

Milbank, C., & Vira, B. (2022) Wildmeat consumption and zoonotic spillover: contextualising disease emergence and policy responses. Lancet Planet Health, 6. e439–48. DOI: https://doi.org/10.1016/S2542- 5196(22)00064-X

Duda, R., Gallois, S., & Reyes-García, V. (2018). Ethnozoology of bushmeat. Revue d’ethnoécologie, DOI: 10.4000/ethnoecologie.3976.

Alvarado-Rybak, M., Solano-Gallego, L., & Millán, J. (2016). A review of piroplasmid infections in wild carnivores worldwide: Importance for domestic animal health and wildlife conservation. Parasites and Vectors, 9(1): 538. https://doi.org/10.1186/s13071-016-1808-7

Mofokeng, L. S., Smit, N. J., & Cook, C. A. (2021) Molecular screening of ticks of the genus Amblyomma (Acari: Ixodidae) infesting South African reptiles with comments on their potential to act as vectors for Hepatozoon fitzsimonsi (Dias, 1953) (Adeleorina: Hepatozoidae). International Journey for Parasitology: Parasites and Wildlife, 16 (221): 163-167. doi: 10.1016/j.ijppaw.2021.09.005

Kwon, S. J., Kim, Y. H., Oh, H. H., & Choi, U. S. (2017). First case of canine infection with Hepatozoon canis (Apicomplexa: Haemogregarinidae) in the Republic of Korea. The Korean Journal of Parasitology, 55(5):561–564. https://doi.org/10.3347/kjp.2017.55.5.561

Thompson, R. A., & Polley, L. (2014). Parasitology and one health. International ournal for Parasitology: Parasites and Wildlife, 3,A1–A2. DOI: https://doi.org/10.1016/j.ijppaw.2014.09.002

World Health Organization (2010).Asia Pacific Strategy for Emerging Diseases. WHO Regional Office for the Western Pacific, Manilla.

https://iris.wpro.who.int/bitstream/handle/10665.1/7819/9789290615040_eng.pdf [Accessed on 2nd September 2022].

Aboagye, I. F., Nkansa-Gyamfi, N. A., Obimpeh, M. A., Ansa-Tuah, A. K., Owusu, E. H. (2019). Wildlife species as potential sources of human exposure to parasitic pathogens in Accra, Ghana. West African Journal of Applied Ecology, 27(1):150–159. https://www.ajol.info/index.php/wajae/article/view/189233.

Published

2024-09-23

How to Cite

Akande, F. A., Olaniyan, K. O., Osifade, O. A., & Takeet, M. I. (2024). Survey of Gastro-intestinal and Ectoparasites of Games in Ogun State, Nigeria. Nigerian Journal of Parasitology, 45(2), 390–400. https://doi.org/10.4314/njpar.v45i2.15

Issue

Section

Main Issues

Similar Articles

<< < 2 3 4 5 6 7 8 9 10 > >> 

You may also start an advanced similarity search for this article.