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The dynamics of trypanosome infections in natural populations of tsetse (Diptera: Glossinidae) studied using wing-fray and ovarian ageing techniques

Published online by Cambridge University Press:  10 July 2009

S. G. A. Leak
Affiliation:
International Livestock Research Institute (ILRI), PO Box 30709, Nairobi, Kenya
G. J. Rowlands
Affiliation:
International Livestock Research Institute (ILRI), PO Box 30709, Nairobi, Kenya

Abstract

Trypanosome infections in approximately 110,000 tsetse of 12 species or subspecies, at sites in six African countries, were studied over various periods from 1983 to 1994. Infection rates ranged from 0.2% in Glossina fuscipes quanzensis Pires at a site in Zaire, to 18% in Glossina tabaniformis Westwood at a site in Gabon. Statistical models were fitted to data for nine species or sub-species of tsetse (G. pallidipes Austen, G. morsitans morsitans Westwood, G. morsitans submorsitans Newstead, G. fuscipes fuscipes Newstead, G. fuscipes quanzensis Pires, G. palpalis palpalis Robineau-Desvoidy, G. palpalis gambiensis Vanderplank, G. tachinoides Westwood and G. tabaniformis Westwood), recorded across eight sites. The prevalence of mature trypanosome infections increased with age, as determined by wing-fray category, for both Trypanosoma vivax- and T. congolense-type infections, although for G. palpalis, G. tabaniformis and G. tachinoides the rate of T. vivax-type infections decreased in older age categories. Infection rates for T. brucei were very low and statistical analysis was not possible for this species. Overall prevalences of Trypanosoma vivax-type infections were significantly higher in female than male flies in four tsetse species; G. pallidipes, G. palpalis, G. tabaniformis and G. tachinoides. At sites where ovarian ages were also determined, close correlations between wing-fray category and ovarian age were found.

Type
Original Articles
Copyright
Copyright © Cambridge University Press 1997

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References

Allsopp, R. (1985) Wing-fray in Glossina morsitans centralis. Bulletin of Entomological Research 75, 111.CrossRefGoogle Scholar
Ashcroft, M.T. (1959a) The sex ratio of infected flies found in transmission experiments with Glossina morsitans and Trypanosoma rhodesiense and T. brucei. Transactions of the Royal Society of Tropical Medicine and Hygiene 53, 394399.CrossRefGoogle ScholarPubMed
Ashcroft, M.T. (1959b) The importance of African wild animals as reservoirs of trypanosomiasis. East African Medical Journal 36, 289297, 311.Google ScholarPubMed
Bealby, K.A., Connor, R.J. & Rowlands, G.J. (1996) Trypanosomosis in goats in Zambia. 88 pp. ILRI (International Livestock Research Institute), Nairobi, Kenya.Google Scholar
Burtt, E. (1946) Incubation of tsetse pupae: increased transmission rate of Trypanosoma rhodesiense in Glossina morsitans. Annals of Tropical Medicine and Parasitology 40, 1828.CrossRefGoogle ScholarPubMed
Challier, A. (1965) Amélioration de la méthode de détermination de l'age physiologique des Glossines. Etudes faites sur Glossina palpalis gambiensis Vanderplank, 1949. Bulletin de la Société de Pathologie Exotique 58, 250259.Google Scholar
Challier, A. & Laveissière, C. (1973) Un nouveau piège pour la capture des Glossines (Glossina: Diptera, Muscidae): description et essais sur le terrain. Cahiers ORSTOM Série Entomologie Médecine et Parasitologie 11, 251262.Google Scholar
Dale, C., Welburn, S.C., Maudlin, I. & Milligan, P.J.M. (1995) The kinetics of maturation of trypanosome infections in tsetse. Parasitology 111, 187191.CrossRefGoogle ScholarPubMed
Duke, H.L. (1933) Relative susceptibility of the sexes of Glossina to infection with trypanosomes. Annals of Tropical Medicine and Parasitology 27, 355356.CrossRefGoogle Scholar
Flint, S. (1985) A comparison of various traps for Glossina spp. (Diptera: Glossinidae) and other Diptera. Bulletin of Entomological Research 75, 529534.CrossRefGoogle Scholar
Gruvel, J. (1975) Structure des populations de Glossina tachinoides W. à la Réserve de Kalamoué. Revue d'Elevage et de Médecine Vétérinaire des Pays Tropicaux 28, 195215.Google Scholar
Harley, J.M.B. & Wilson, A.J. (1968) Comparison between Glossina morsitans, G. pallidipes and G. fuscipes as vectors of trypanosomes of the Trypanosoma congolense group: the proportions infected experimentally and the numbers of infective organisms extruded during feeding. Annals of Tropical Medicine and Parasitology 62, 178187.CrossRefGoogle Scholar
ILCA (1986) The ILCA/ILRAD Trypanotolerance Network: Situation Report, December 1985. Proceedings of a Network Meeting held at ILCA,Nairobi.Addis Ababa, Ethiopia. 98 pp. ILCA.Google Scholar
Jackson, C.H.N. (1946) An artificially isolated generation of tsetse flies (Diptera). Bulletin of Entomological Research 37, 291299.CrossRefGoogle ScholarPubMed
Jordan, A.M. (1965) The hosts of Glossina as the main factor affecting trypanosome infection rates of tsetse flies in Nigeria. Transactions of the Royal Society of Tropical Medicine and Hygiene 59, 423431.CrossRefGoogle ScholarPubMed
Kazadi, J.M.L., Van Hees, J., Jochems, M. & Kageruka, P. (1991) Etude de la capacité vectorielle de Glossina palpalis gambiensis (Bobo-Dioulasso) vis-à-vis de Trypanosoma brucei brucei EATRO 1125. Revue d'Elevage et de Médecine Vétérinaire des Pays Tropicaux 44, 437442.Google Scholar
Leak, S.G.A., Colardelle, C., D'leteren, G., Dumont, P., Feron, A., Jeannin, P., Minengu, M., Mulungu, M., Ngamuna, S., Ordner, G., Sauveroche, B., Trail, J.C.M. & Yangari, G. (1991) Glossina fusca group tsetse as vectors of cattle trypanosomiasis in Gabon and Zaire. Medical and Veterinary Entomology 5, 111120.CrossRefGoogle ScholarPubMed
Lloyd, L. & Johnson, W.B. (1924) The trypanosome infections of tsetse flies in northern Nigeria and a new method of estimation. Bulletin of Entomological Research 14, 265288.CrossRefGoogle Scholar
Maudlin, I. & Welburn, S.C. (1987) Lectin mediated establishment of midgut infections of Trypanosoma congolense and Trypanosoma brucei in Glossina morsitans. Tropical Medicine and Parasitology 36, 167170.Google Scholar
Maudlin, I., Welburn, S.C. & Milligan, P. (1991) Salivary gland infection: a sex-linked recessive character in tsetse? Acta Tropica 48, 915.CrossRefGoogle Scholar
Mohamed-Ahmed, M.M., Ahmed, A.I. & Ishag, A. (1989) Trypanosome infection rate of Glossina morsitans submorsitans in Bahr el Arab, South Darfur Province, Sudan. Tropical Animal Health and Production 21, 239244.CrossRefGoogle Scholar
Moloo, S.K. & Kamunya, G.W. (1987) Suppressive action of Samorin on the cyclical development of pathogenic trypanosomes in Glossina morsitans centralis. Medical and Veterinary Entomology 1, 285287.CrossRefGoogle ScholarPubMed
Moloo, S.K. & Kutuza, S.B. (1984) Vectorial capacity of gamma-irradiated sterile male Glossina morsitans centralis, G. austeni and G. tachinoides for pathogenic trypanosomes. Insect Science and its Application 5, 411414.Google Scholar
Moloo, S.K. & Kutuza, S.B. (1986) Effect of Samorin administered to a bovine host on the survival and reproductive performance of female Glossina morsitans centralis. Annals of Tropical Medicine and Parasitology 81, 743744.CrossRefGoogle Scholar
Moloo, S.K., Sabwa, C.L. & Kabata, J.M. (1992) Vector competence of Glossina pallidipes and G. morsitans centralis for Trypanosoma vivax, T. congolense and T. b. brucei. Acta Tropica 51, 271280.CrossRefGoogle Scholar
Moloo, S.K., Kabata, J.M. & Sabwa, C.L. (1994) A study on the maturation of procyclic Trypanosoma brucei brucei in Glossina morsitans centralis and G. brevipalpis. Medical and Veterinary Entomology 8, 369374.CrossRefGoogle Scholar
Nitcheman, S. (1988) Comparaison des longévités des glossines (Glossina morsitans morsitans Westwood, 1850) infectées par les trypanosomes (Trypanosoma nannomonas congolense Broden, 1904) et des glossines saines. Annales de Parasitologie Humaine et Comparée 63, 163164.CrossRefGoogle Scholar
Ryan, L., Kupper, W., Goff, S.L., Molyneux, D.H. & Clair, M. (1982) Differences in rates of acquisition of trypanosome infections between Glossina species in the field. Annales de la Société Belge de Médecine Tropicale 62, 291300.Google ScholarPubMed
SAS Institute Inc. (1994) SAS/STAT user's guide release 6.1 edition. SAS Institute Inc., Cary, North Carolina.Google Scholar
Saunders, D.S. (1962) Age determination for female tsetse flies and the age composition of samples of Glossina pallidipes Aust., G. palpalis fuscipes Newst. and G. brevipalpis Newst. Bulletin of Entomological Research 53, 579595.CrossRefGoogle Scholar
Vale, G.A., Hargrove, J.W., Jordan, A.M., Langley, P.A. & Mews, A.R. (1976) Survival and behaviour of tsetse flies (Diptera, Glossinidae) in the field: a comparison between wild flies and animal-fed and in vitro-fed laboratory reared flies. Bulletin of Entomological Research 66, 731744.CrossRefGoogle Scholar
Welburn, S.C. & Maudlin, I. (1992) The nature of the teneral state in Glossina and its role in the acquisition of trypanosome infection in tsetse. Annals of Tropical Medicine and Parasitology 86, 529536.CrossRefGoogle Scholar
Welburn, S.C., Arnold, K., Maudlin, I. & Gooday, G.W. (1993) Rickettsia-like organisms and chitinase production in relation to transmission of trypanosomes by tsetse flies. Parasitology 107, 141145.CrossRefGoogle ScholarPubMed
Woolhouse, M.E.J., Hargrove, J.W. & McNamara, J.J. (1993) Epidemiology of trypanosome infections of the tsetse fly Glossina pallidipes in the Zambezi valley. Parasitology 106, 479485.CrossRefGoogle ScholarPubMed
Woolhouse, M.E.J., Bealby, K.A., McNamara, J.J. & Silutongwe, J. (1994) Trypanosome infections of the tsetse fly Glossina pallidipes in the Luangwa valley, Zambia. International Journal for Parasitology 24, 987993.CrossRefGoogle ScholarPubMed