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A theoretical study of the invasion of cleared areas by tsetse flies (Diptera: Glossinidae)

Published online by Cambridge University Press:  09 March 2007

J.W. Hargrove*
Affiliation:
c/o Tsetse Control Branch, Box CY52, Causeway, Harare, Zimbabwe
*
*Fax: 263 4 722684 E-mail: jhargrove@rttcp.org.zw

Abstract

Large-scale eradication campaigns against tsetse flies Glossina spp. are giving way to smaller operations aimed at disease and vector containment. There has been little discussion of the effects of these changes in policy. This study estimates the rate at which tsetse re-infect treated areas after the termination of control efforts. Movement is modelled as a diffusion process with a daily root mean square displacement (λ) of 0.2–1 km−1/2 and population growth as logistic with a growth rate (r) ≤1.5% day−1. Invasion fronts move as the product of λ and √r. For r = 0.75% day−1 a front advances at 2.5 km year−1for each 100 m increment in λ. If there are 0.001% survivors in 10% of the treated area, the population recovers to within 1% of the carrying capacity (K) within three years. If the control area is subject to invasion from all sides, a treated block of 10,000 km2 is effectively lost within two years – except at the lowest values of λ and r. Cleared areas of 100 km2 are lost in a year, as observed in a community-based suppression programme in Kenya. If the treated area is closed to re-invasion, but if there is a block where tsetse survive at 0.0001–0.1% of K, the population recovers within 3–4 years for up to 20 km outside the surviving block. If the surviving flies are more widely spread, re-infection is even more rapid. The deterministic approach used here over-estimates re-invasion rates at low density, but comparisons between control scenarios are still valid. Stochastic modelling would estimate more exactly rates of re-infection at near-zero population densities.

Type
Research Article
Copyright
Copyright © Cambridge University Press 2000

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References

Brightwell, R., Dransfield, R.D., Stevenson, P. & Williams, B. (1997) Changes over twelve years in the populations of Glossina pallidipes and Glossina longipennis (Diptera: Glossinidae) subject to varying trapping pressure at Nguruman, south west Kenya. Bulletin of Entomological Research 87, 349370.Google Scholar
Bursell, E. (1970) Dispersal and concentration of Glossina. pp.382394in Mulligan, H.W. (Ed.) The African trypanosomiases. London, George Allen and Unwin.Google Scholar
Davies, H. & Blasdale, P. (1960) The eradication of Glossina morsitans submorsitans Newst. and Glossina tachinoides Westw. in part of a river flood plain in northern Nigeria by chemical means. III. Bulletin of Entomological Research 51, 265270.Google Scholar
Dransfield, R.D., Brightwell, R., Kyorku, & Williams, B. (1990) Control of tsetse fly (Diptera: Glossinidae) populations using traps at Nguruman, south-west Kenya. Bulletin of Entomological Research 80, 265276.Google Scholar
Ford, J. (1960) The advances of Glossina morsitans and G. pallidipes into the Sabi and Lundi River Basins, Southern Rhodesia. pp.219229 in Proceedings of the 8th Meeting of the ISCTRC (Jos), CCTA Publication No. 62.Google Scholar
Ford, J. (1971) The role of the trypanosomiases in African ecology. A study of the tsetse fly problem. 568 pp. Oxford, Clarendon Press.Google Scholar
Glasgow, P.A. (1963) The distribution and abundance of tsetse. 241 pp. Oxford, Pergamon.Google Scholar
Hargrove, J.W. (1981) Tsetse dispersal reconsidered. Journal of Animal Ecology 50, 351373.Google Scholar
Hargrove, J.W. and Lange, K. (1989) Tsetse dispersal viewed as a diffusion process. Transactions of the Zimbabwe Scientific Association 64, 18.Google Scholar
Hursey, B.S. & Allsopp, R. (1983) Sequential applications of low dosage aerosols from fixed-wing aircraft as a means of eradicating tsetse flies (Glossina spp) from rugged terrain in Zimbabwe. 31 pp. Harare, Tsetse and Trypanosomiasis Control Branch.Google Scholar
Hursey, B.S. & Allsopp, R. (1984) The eradication of tsetse flies (Glossina spp) from western Zimbabwe by integrated aerial and ground spraying. 29 pp. Harare, Tsetse and Trypanosomiasis Control Branch.Google Scholar
Jack, R.W. (1914) Tsetse fly and big game in Southern Rhodesia. Bulletin of Entomological Research 5, 97110.Google Scholar
Jackson, C.H.N. (1933) On an advance of tsetse fly in central Tanganyika. Transactions of the Royal Entomological Society, London 81, 205221.Google Scholar
Jackson, C.H.N. (1946) An artificially isolated generation of tsetse flies (Diptera). Bulletin of Entomological Research 37, 291299.Google Scholar
Jackson, C.H.N. (1948) The analysis of a tsetse fly population. III. Annals of Eugenics 14, 91108.Google Scholar
Jackson, C.H.N. (1948) Some further isolated generations of tsetse flies. Bulletin of Entomological Research 39, 441451.Google Scholar
Jackson, C.H.N. (1950) On two advances of tsetse fly in Central Tanganyika. Proceedings of the Royal Entomological Society, London 25, 2932.Google Scholar
Murray, J.D. (1989) Mathematical biology, pp. 277280. Springer-Verlag, Berlin.Google Scholar
Power, R.J.B. (1964) The activity pattern of Glossina longipennis Corti (Diptera: Muscidae). Proceedings of the Royal Entomological Society, London 39, 514.Google Scholar
Rogers, D. (1977) Study of a natural population of Glossina fuscipes fuscipes Newstead and a model of fly movement. Journal of Animal Ecology 46, 309330.Google Scholar
Rogers, D.J. (1979) Tsetse population dynamics and distribution: a new analytical approach. Journal of Animal Ecology 48, 825849.Google Scholar
Rogers, D.J. (1990) A general model for tsetse populations. Insect Science and its Application 11, 331346.Google Scholar
Turner, D.A. & Brightwell, R. (1986) An evaluation of a sequential aerial spraying operation against Glossina pallidipes Austen (Diptera: Glossinidae) in the Lambwe Valley of Kenya: aspects of the post-spray recovery and evidence of natural population regulation. Bulletin of Entomological Research 76, 331349.Google Scholar
Vale, G.A., Hursey, B.S., Hargrove, J.W., Torr, S.J. & Allsopp, R. (1984) The use of small plots to study populations of tsetse (Diptera: Glossinidae). Insect Science and its Application 5, 403410.Google Scholar
Vale, G.A., Hargrove, J.W., Cockbill, G.F. & Phelps, R.J. (1986) Field trials of baits to control populations of Glossina morsitans morsitans Westwood and G. pallidipes Austen (Diptera: Glossinidae). Bulletin of Entomological Research 76, 179193.Google Scholar
Williams, B., Dransfield, R. & Brightwell, R. (1992) The control of tsetse flies in relation to fly movement and trapping efficiency. Journal of Applied Ecology 29, 163179.Google Scholar