Author:
O. E. Chinonye,I. O. Mercy
Abstract
The Giant African land snail, Achatina achatina, is an invasive species recognized for being a serious agricultural pest and vector for diverse parasites that cause diseases in humans. This study assessed the prevalence of parasites harboured by the snails collected from bushes in the Otuoke community of Bayelsa State, Nigeria. The snail samples were collected and transported to the laboratory for examination using wet mouth preparation and teasing methods. Subsequently, they were classified by size into small, medium and large. The body organs were individually teased and examined under the microscope. 122 snail samples (32 small, 54 medium, 36 large) were randomly collected for this study and examined for the presence of eggs or larvae of parasites, out of which 108 (88.5%) were infected. The larvae of only two species of parasites, Angiostrongylus cantonensis (90.1%) and Strongyloides stercoralis (9.9%)) were recovered from the infected snails, with A. cantonensis being most prevalent, 737 (90.1%). The parasites were most prevalent in the medium snails (42.6%), followed by the small size (23.8%) and then, the large size snails with the least prevalence of infection. The slime, intestine and stomach were infected, with the parasites being more in the slime (88.5%) than any other body parts. Since the Giant African land snail serves as an intermediate host for several parasites, a thorough understanding of the snail parasites' lifecycles and modes of transmission to humans is important, for human health and welfare, sustainable snail farming, and for maintenance of snail biodiversity.
Publisher
African - British Journals
Reference22 articles.
1. Agbogidi, O., & Okonta, B. (2011). Reducing poverty through snail farming in Nigeria. Agriculture & Biology Journal of North America, 2(1), 169-172.
2. Ashton, F.T., Zhu, X., Boston, R., Lok, J.B., & Schad, G.A. (2007). Strongyloides stercoralis: amphidial neuron pair ASJ triggers significant resumption of development by infective larvae under host-mimicking in vitro conditions. Experimental Parasitology, 115, 92-97. doi: 10.1016/j.exppara.2006.08.010
3. Caron, Y., Martens, K., Lempereur, L., Saegerman, C., & Losson, B. (2014). New insight in lymnaeid snails (Mollusca, Gastropoda) as intermediate hosts of Fasciola hepatica (Trematoda, Digenea) in Belgium and Luxembourg. Parasite Vectors, 7, 66.
4. Cowie, R.H., & Robinson, A. (2003). The decline of native Pacific island faunas: Changes in status of the land snails of Samoa through the 20th Century. Biological Conservation, 110(1), 55–65
5. Ekundayo, E.O., & Fagade, S.O. (2005). Microbial flora associated with soils of edible snail farms in Southern Nigeria. Nigerian Journal of Soil Science, 15, 75-80.