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Assessing mating performance of male Glossina pallidipes (Diptera: Glossinidae) using a walk-in field cage

Published online by Cambridge University Press:  09 March 2007

G.N. Mutika*
Affiliation:
Entomology Unit FAO/IAEA Agriculture and Biotechnology Laboratory, Agency's Laboratories, A-2444 Seibersdorf, Austria
E. Opiyo
Affiliation:
Entomology Unit FAO/IAEA Agriculture and Biotechnology Laboratory, Agency's Laboratories, A-2444 Seibersdorf, Austria
A.S. Robinson
Affiliation:
Entomology Unit FAO/IAEA Agriculture and Biotechnology Laboratory, Agency's Laboratories, A-2444 Seibersdorf, Austria
*
*Fax: +43 1 2600 28447 E-mail: G.Mutika@iaea.org

Abstract

To monitor the quality of male tsetse for use in the sterile insect technique (SIT), a field cage test was developed and evaluated. Mating competitiveness was tested with male Glossina pallidipes Austen that emerged from pupae stored for different periods at 15°C. Control males emerged from pupae stored at 23–24°C and emerged at 26.5°C. Each sample of test males was divided into two groups with one group being irradiated at 120 Gy; the other group was not irradiated. More than 70% of the maximum possible number of mating pairs occurred in all tests. Males emerged from pupae kept at low temperature and then irradiated formed a greater proportion of mating pairs than the controls. Males emerged from pupae kept at 15°C generally started mating more quickly than the standard colony males although there was no significant difference. Insemination rates were above 99%. Pooled data indicated that mean spermathecal values for females mated with irradiated males were significantly lower than for control males. The duration of copulation varied significantly between treatment groups and was significantly longer for irradiated male flies; there was no correlation between duration of copulation and mean spermathecal value.

Type
Research Article
Copyright
Copyright © Cambridge University Press 2001

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References

Brady, J. (1972) Spontaneous, circadian components of tsetse fly activity. Journal of Insect Physiology 18, 471484..CrossRefGoogle ScholarPubMed
Bursell, E. (1970) Dispersal and concentration of Glossina. pp. 382394 in Mulligan, H.W. (Ed.) The African trypanosomiases. London, Allen & Unwin.Google Scholar
Buxton, P.A. (1955) The natural history of tsetse flies: an account of the biology of the genus Glossina (Diptera). London School of Hygiene and Tropical Medicine Memoir No. 10, London, H.K. Lewis & Co. Ltd, 816 pp.Google Scholar
Cayol, J.P., Vilardi, J., Rial, E. & Vera, M.T. (1999) New indices and methods to measure the sexual compatibility and mating performance of Ceratitis capitata (Diptera: Tephritidae) laboratory-reared strains under field cage conditions. Journal of Economic Entomology 92, 140145.CrossRefGoogle Scholar
Colvin, J. & Gibson, G. (1992) Host-seeking behaviour and management of tsetse. Annual Review of Entomology 37, 2140..CrossRefGoogle ScholarPubMed
Dame, D.A. (1970) Control by sterilization of Glossina. pp. 533542 in Mulligan, H.W. (Ed.) The African trypanosomiases. London, Allen & Unwin.Google Scholar
Dame, D.A. & Schmidt, C.H. (1970) The sterile-male technique against tsetse flies, Glossina spp. Bulletin of the Entomological Society of America 16, 2430.Google Scholar
Dame, D.A., Birkenmeyer, D.R. & Bursell, E. (1969) Development of the thoracic muscle and flight behaviour of Glossina morsitans orientalis Vanderplank. Bulletin of Entomological Research 59, 345350.CrossRefGoogle Scholar
Dame, D.A., Birkenmeyer, D.R., Nash, T.A.M. & Jordan, A.M. (1975) The dispersal and survival of laboratory-bred and native Glossina morsitans morsitans Westw. (Diptera: Glossinidae) in the field. Bulletin of Entomological Research 65, 453457.Google Scholar
Dame, D.A., Williamson, D.L., Cobb, P.E., Gates, D.B., Warner, P.V., Mtuya, A.G. & Baumgartner, H. (1980) Integration of sterile insects and pesticides for the control of the tsetse fly Glossina morsitans morsitans. Isotope and radiation research on animal diseases and their vectors. IAEA-SM-240/4, 267280.Google Scholar
Dean, G.J.W., Dame, D.A. & Birkenmeyer, D.R. (1969) Field cage evaluation of the competitiveness of male Glossina morsitans orientalis Vanderplank sterilised with tepa or gamma irradiation. Bulletin of Entomological Research 59, 339344..Google Scholar
Green, C.H. (1994) Bait methods for tsetse fly control. Advances in Parasitology 34, 229291..CrossRefGoogle ScholarPubMed
Huyton, P.M. & Langley, P.A. (1982) Copulatory behaviour of the tsetse flies Glossina morsitans and G. austeni. Physiological Entomology 7, 167174.CrossRefGoogle Scholar
Langley, P.A. (1970) Post-teneral development of thoracic flight musculature in the tsetse-flies Glossina austeni and G. morsitans. Entomologia Experimentalis et Applicata 13, 133140.Google Scholar
Leak, S.G.A. (1998) Tsetse biology and ecology: their role in the epidemiology and control of trypanosomosis. 568 pp. Wallingford, CAB International.Google Scholar
Leegwater-van, der, Linden, M.E. and Tiggelman, E.P.M. (1984) Multiple mating and inseminating potential of Glossina pallidipes. Entomologia Experimentalis et Applicata 35, 283294.Google Scholar
Msangi, A.R., Saleh, K.M., Kiwia, N., Malele, I.I., Mussa, W.A., Mramba, F., Juma, K.G., Dyck, A.V., Vreysen, M.J.B., Parker, A.G., Feldmann, U., Zhu, Z.-R. & Pan, H. (2000) Success in Zanzibar: eradication of tsetse, pp. 5766 in Tan, K.H. (Ed.) Area-wide management of fruit flies and other major insect pests. Penang, Penerbit Universiti Sains Malaysia.Google Scholar
Oladunmade, M.A., Feldmann, U., Takken, W., Tenabe, S.O., Hamann, H.J., Onah, J., Dengwat, L., van der Vloedt, A.M.V. & Gingrich, R.E. (1990) Eradication of Glossina palpalis palpalis Robineau-Desvoidy (Diptera: Glossinidae) from agro-pastoral land in central Nigeria by means of the sterile insect technique, pp. 523 in Sterile insect technique for tsetse control and eradication. Proceedings of the final research co-ordination meeting, Vom, Nigeria, 6–10 June, 1988. IAEA/RC/319.3/1.Google Scholar
Opiyo, E., Luger, D. & Robinson, A.S. (2000) New systems for large-scale production of male tsetse flies (Diptera: Glossinidae), pp. 337344 in Tan, K.H. (Ed.) Area-wide management of fruit flies and other major insect pests. Penang, Penerbit Universiti Sains Malaysia.Google Scholar
Politzer, H. & Cuisance, D. (1984) An integrated campaign against riverine tsetse, Glossina palpalis gambiensis and Glossina tachinoides, by trapping and the release of sterile males. Insect Science and its Application 5, 439442.Google Scholar
Rudrauf, J.M. (1977) Comportement acoustico-sexuel d'une glossine, Glosssina fuscipes fuscipes Newstead, 1910. Annales de Zoologie et d'Ecologie Animale 9, 389406.Google Scholar
Saini, R.K. (1981) The pattern of sound production by the tsetse fly Glossina morsitans morsitans Westwood, 1850 (Diptera, Glossinidae). Insect Science and its Application 1, 167169.Google Scholar
Saini, R.K. (1981) Effects of age and hunger on the pattern of sound production in tsetse, Glossina morsitans morsitans Westwood, 1850 (Diptera, Glossinidae). Insect Science and its Application 1, 393397.Google Scholar
Saini, R.K. (1983) Sound production associated with feeding behaviour of the tsetse, Glossina m. morsitans. Entomologia Experimentalis et Applicata 34, 18.CrossRefGoogle Scholar
Saunders, D.S. & Phelps, R.J. (1970) Reproduction of Glossina: breeding sites. pp. 327347 in Mulligan, H.W. (Ed.) The African trypanosomiases. London, Allen and Unwin.Google Scholar
Sokal, R.R. & Rohlf, F.J. (1995) Biometry: the principles and practice of statistics in biological research. New York, W.H. Freeman and Company.Google Scholar
USDA/IAEA/FAO (1998) A quality manual for fruit flies. IAEA.Google Scholar
Vale, G.A. (1998) Responses of tsetse flies (Diptera: Glossinidae) to vegetation in Zimbabwe: implications for population distribution and bait siting. Bulletin of Entomological Research 88, Supplement 1, S1S59.Google Scholar
Vreysen, M.J.B., Saleh, K.M., Ali, M.Y., Abdulla, A.M., Zhu, Z.-R., Juma, K.G., Dyck, A.V., Msangi, A.R., Mkonyi, P.A. & Feldmann, H.U. (2000) Glossina austeni (Diptera: Glossinidae) eradicated on the island of Unguja, Zanzibar, using the sterile insect technique. Journal of Economic Entomology 93, 123135.CrossRefGoogle ScholarPubMed
Wall, R. & Langley, P.A. (1993) The mating behaviour of tsetse flies (Glossina): a review. Physiological Entomology 18, 211218.Google Scholar