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Parasitic helminths of the wild rabbit, Oryctolagus cuniculus, in different bioclimatic zones in Tenerife, Canary Islands

Published online by Cambridge University Press:  12 April 2024

P. Foronda*
Affiliation:
Department of Parasitology, Ecology and Genetics, Faculty of Pharmacy, University of La Laguna, Avda. Astrofísico Fco. Sánchez s/n, 38203, Tenerife, Canary Islands, Spain
A. Del Castillo
Affiliation:
Department of Parasitology, Ecology and Genetics, Faculty of Pharmacy, University of La Laguna, Avda. Astrofísico Fco. Sánchez s/n, 38203, Tenerife, Canary Islands, Spain
N. Abreu
Affiliation:
Department of Parasitology, Ecology and Genetics, Faculty of Pharmacy, University of La Laguna, Avda. Astrofísico Fco. Sánchez s/n, 38203, Tenerife, Canary Islands, Spain
E. Figueruelo
Affiliation:
Department of Parasitology, Ecology and Genetics, Faculty of Pharmacy, University of La Laguna, Avda. Astrofísico Fco. Sánchez s/n, 38203, Tenerife, Canary Islands, Spain
J. Piñero
Affiliation:
Department of Parasitology, Ecology and Genetics, Faculty of Pharmacy, University of La Laguna, Avda. Astrofísico Fco. Sánchez s/n, 38203, Tenerife, Canary Islands, Spain
J.C. Casanova
Affiliation:
Department of Parasitology, Faculty of Pharmacy, University of Barcelona, Avda. Diagonal s/n, 08028 Barcelona, Spain
*
*Fax: 0034 922 31 85 14 E-mail: pforonda@ull.es

Abstract

Faunistic and ecological analyses of the wild rabbit helminth fauna were undertaken in Tenerife island (Canary Islands). Rabbits were collected between 1998 and 2000 in seven bioclimatic zones in Tenerife selected by orientation and altitude. Five parasite species were identified, three cestodes (Taenia pisiformis (larvae), Andrya cuniculi and Mosgovoyia ctenoides) and two nematodes (Trichostrongylus retortaeformis and Passalurus ambiguus). Taenia pisiformis presented an irregular distribution with significant differences in prevalences between the zones. Andrya cuniculi was only found in two zones and there were no significant differences in prevalence values. Mosgovoyia ctenoides presented a wide distribution with significant prevalences, which were higher in northern compared to southern zones. Trichostrongylus retortaeformis was absent in the low southern zones of the island. Passalurus ambiguus was found in all zones with no significant difference in the prevalence of infection. The differences in prevalences are likely to be explained by abiotic factors in the case of T. retortaeformis, and by the absence of definitive and intermediate hosts in the case of T. pisiformis and A. cuniculi, respectively. All parasite species in Tenerife are common helminths in the Iberian Peninsula, from which their rabbit hosts originated. No significant differences were recorded in the mean intensities of infection of any of the parasite species identified.

Type
Review Article
Copyright
Copyright © Cambridge University Press 2003

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References

Allan, J.C., Craig, P.S., Sherington, M.T., Rogan, M.T., Storey, D.M., Heath, S. & Iball, K. (1999) Helminth parasites of the wild rabbit Oryctolagus cuniculus near Malham Tarn, Yorkshire, UK. Journal of Helminthology 73, 289294.CrossRefGoogle ScholarPubMed
Bernard, J. (1965) Contribution à la connaissance de la faune parasitaire de lìle de Zembra. I. Parasites du lapin, Oryctolagus cuniculus L. Archives de l'Institut Pasteur de Tunis 42, 205223.Google Scholar
Beveridge, I. (1978) A taxonomic revision of the genera Cittotaenia Riehm, 1881, Ctenotaenia Railliet, 1893, Mosgovoyia Spassky, 1951 and Pseudocittotaenia Tenora, 1976 (Cestoda: Anoplocephalidae). Mémoires du Muséum d'Histoire Naturelle, série A, Zoologie 107, 64.Google Scholar
Biju-Duval, C., Ennafaa, H., Dennebouy, N., Monnerot, M., Mingotte, F., Soriguer, R., El Gaied, A., El Hili, A. & Mounolou, J.C. (1991) Mitochondrial DNA evolution in lagomorphs: origin of systematic heteroplasmy, organization of diversity in European rabbits. Journal of Molecular Evolution 33, 92102.CrossRefGoogle Scholar
Blasco, S., Torres, J., Feliu, C., Casanova, J.C., Miquel, J. & Moreno, S. (1996) The helminth fauna of Oryctolagus cuniculus (Linnaeus, 1758) in the Iberian Peninsula. Faunistic and ecological considerations. Parasite 4, 327333.CrossRefGoogle Scholar
Boag, B. (1987) The helminths parasites of the wild rabbit Oryctolagus cuniculus and the brown hare Lepus capensis from the Isle of Coll, Scotland. Journal of Zoology 2126, 352355.CrossRefGoogle Scholar
Boag, B. (1988) Observations of the seasonal incidence of myxomatosis and its interactions with helminth parasites in the European rabbit (Oryctolagus cuniculus) . Journal of Wildlife Diseases 24, 450455.CrossRefGoogle ScholarPubMed
Boag, B. & Fowler, P.A. (1988) The prevalence of helminth parasites from the hedgehog Erinaceus europaeus in Great Britain. Journal of Zoology 215, 379382.CrossRefGoogle Scholar
Boag, B. & Iason, G. (1986) The occurrence and abundance of helminth parasites of the mountain hare Lepus timidus (L.) and the wild rabbit Oryctolagus cuniculus (L.) in Aberdeenshire, Scotland. Journal of Helminthology 60, 9298.CrossRefGoogle ScholarPubMed
Branco, M., Ferrand, N. & Monnerot, M. (2000) Phylogeography of the European rabbit (Oryctolagus cuniculus) in the Iberian Peninsula inferred from RFLP analysis of the cytochrome b gene. Heredity 85, 307317.CrossRefGoogle ScholarPubMed
Bush, A.O., Lafferty, K.D., Lotz, J.M. & Shostak, A.W. (1997) Parasitology meets ecology on its own terms: Margolis et al. revisited. Journal of Parasitology 83, 575583.CrossRefGoogle Scholar
Butler, F.T. (1994) Arthropod and helminth parasites from rabbits Oryctolagus cuniculus in south-west Ireland. Irish Naturalists Journal 24, 292295.Google Scholar
Casanova, J.C., Miquel, J., Fons, R., Molina, X., Feliu, C., Mathias, M.L., Torres, J., Libois, R., Santos-Reis, M., Collares-Pereira, M. & Marchand, B. (1996) On the helminth fauna of wild mammals (Rodentia, Insectivora and Lagomorpha) in Azores Archipelago (Portugal). Vie et Milieu 46, 253259.Google Scholar
Cordero del Campillo, M., Castañón, L. & Reguera, A. (1994) Índice-catálogo de Zooparásitos Ibéricos. 650 pp. 2nd edn. Secretariado de Publicaciones, Universidad de León, Spain.Google Scholar
Denegri, G.M. (1991) Definition of Scientific Research Programme in Parasitology: about the biology of tapeworms in the Anoplocephalidae family. Thesis in Philosophy of Science, Department of Philosophy, La Plata University, 164.Google Scholar
Denegri, G.M. (1993) Review of oribatid mites as intermediate hosts of tapeworms of the Anoplocephalidae. Experimental and Applied Acarology 17, 567580.CrossRefGoogle Scholar
Foronda, P., Del Castillo, A., Piñero, J. & Casanova, J.C. (2000) Helminths and virus infections of wild rabbit in Tenerife (Canary archipel). Acta Parasitologica 45, 176.Google Scholar
Hardy, C., Callou, C., Vigne, J.D., Casane, D., Dennebouy, N., Mounolou, J.C. & Monnerot, M. (1995) Rabbit mitochondrial DNA diversity from prehistoric to modern times. Journal of Molecular Evolution 40, 227237.CrossRefGoogle ScholarPubMed
Hugot, J.P., Bain, O. & Cassone, J. (1983) Sur le genere Passalurus (Oxyuridae: Nematoda) parasite de Leporidés. Systematic Parasitology 25, 10651075.Google Scholar
Juan, C., Emerson, B.C., Oromí, P. & Hewitt, G.M. (2000) Colonization and diversification: towards a phylogeographic synthesis for the Canary Islands. Tree 15, 104109.Google ScholarPubMed
Kharichkova, M.V. (1946) A study of the biology of Passalurus ambiguus (Rud., 1819). Collected Papers in Helminthology dedicated to K.I. Skrjabin in his 40th year of scientific education administration. Archiev, 274279.Google Scholar
Michel, J.F. (1952) Self cure infections of Trichostrongylus retortaeformis and its causation. Nature 169, 881.CrossRefGoogle ScholarPubMed
Michel, J.F. (1953) Phenomenon of protection in infections of Trichostrongylus retortaeformis . Nature 173, 312.CrossRefGoogle Scholar
Molina, X., Casanova, J.C., Feliu, C & Castién, E. (1998) Studies of wild rabbit (Oryctolagus cuniculus) populations in Navarra (Spain). III. Qualitative and quantitative composition of the rabbit parasitic helminthofauna. Gibier Faune Sauvage Game Wildlife 15, 123133.Google Scholar
Molina, X., Casanova, J.C. & Feliu, C. (1999) Influence of host weight, sex and reproductive status on helminth parasites of the wild rabbit, Oryctolagus cuniculus, in Navarra, Spain. Journal of Helminthology 73, 221225.CrossRefGoogle ScholarPubMed
Monnerot, M., Casane, D., Hardy, C. & Vigne, J.D. (1994) Evolution of Oryctolagus: relationships within the Lagomorpha system and access to population history by ancient DNA. Polish Ecological Studies 20, 543551.Google Scholar
Prasad, D. (1959) The effect of temperature and humidity on the free-living stages of Trichostrongylus retortaeformis . Canadian Journal of Zoology 37, 305316.CrossRefGoogle Scholar
Skrjabin, K.I., Shikhobalova, N.P. & Schluz, R.S. (1954) Trichostrongylids of animals and man. In Skrjabin, K.I. (Ed.) Essentials of nematodology, Vol. III, 704 pp. Israel Program for Scientific Translations, Jerusalem.Google Scholar
Tenora, F. & Murai, E. (1978) Anoplocephalidae (Cestoda) parasites of Leporidae and Sciuridae in Europe. Acta Zoologica Academiae Scientiarum Hungaricae 24, 415429.Google Scholar
Tenora, F., Murai, E., Valero, A. & Cutillas, C. (1981/1982) Anoplocephaloides pseudowimerosa sp. n. and other Anoplocephalidae (Cestoda) parasites of Oryctolagus cuniculus (Leporidae) in Spain. Parasitologia Hungarica 14, 7377.Google Scholar
Valladares, B., Gijón, H. & López-Román, R. (1985) Estudio epidemiológico del parasitismo intestinal del perro (Canis familiaris), en la isla de Tenerife. Revista Ibérica de Parasitología 45, 4148.Google Scholar
Verster, A. (1969) A taxonomic revision of the genus Taenia Linneaus, 1758 s. str. Onderstepoort Journal of Veterinary Research 36, 358.Google Scholar