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Behaviour of tsetse (Diptera: Glossinidae) during the hot season in Zimbabwe: the interaction of micro-climate and reproductive status

Published online by Cambridge University Press:  09 March 2007

S.J. Torr*
Affiliation:
Tsetse and Trypanosomiasis Control Branch, Harare, Zimbabwe
J.W. Hargrove
Affiliation:
Tsetse and Trypanosomiasis Control Branch, Harare, Zimbabwe
*
*Natural Resources Institute, Central Avenue, Chatham Maritime, Kent, ME4 4TB, UK. Fax: 01634 880066 E-mail: stephen.torr@nri.org

Abstract

Studies were made of the behaviour of Glossina pallidipes Austen and G. morsitans morsitans Westwood during the hot season (September–November) in Zimbabwe, and attributes of samples of tsetse from refuges, odour-baited traps, targets and mobile baits were compared. Various arrangements of electric nets were used to study tsetse as they entered or left artificial refuges. The peak time of entry into a refuge varied between 0800 h and 1400 h and coincided with the time when the air temperature reached 32°C; the response was stronger if 32°C occurred earlier in the day. The peak time of exit varied between 1500 h and 1700 h, being significantly later on hotter days, but did not show a clear temperature threshold. Micro-meteorological measurements showed that refuges were significantly cooler than the surrounding riverine woodland during the day but warmer at night. There was no significant difference between the air temperatures in leafless mopane woodland and semi-evergreen riverine woodland during the day but at night the riverine woodland was significantly cooler. Combining the micro-meteorological data with the estimated local movements of tsetse suggested that during the hot season, tsetse experienced temperatures 2°C cooler than the daily mean in a Stevenson screen located in mopane woodland. Compared with the catches of tsetse from traps, refuges had higher proportions of G. m. morsitans, males, young flies and females in the later stages of reproduction, and it is suggested that during the hot season, samples from refuges were less biased than traps with respect to species and sex composition, age and reproductive status. During the hot season, tsetse populations declined by c. 90% and although air temperatures exceeded lethal levels (c. 40°C), the refuge-entering responses meant that adult flies probably experienced a maximum of only c. 35°C. It is suggested that the decline in numbers is not due to direct mortality effects of temperature on adults but may be due, in part, to a doubling in the rates of reproductive abnormality during the hot season and an increase in adult mortality related to a temperature-dependent decrease in pupal period.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1999

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References

Brady, J. & Crump, A.J. (1978) The control of circadian activity rhythms in tsetse flies: environment or physiological clock? Physiological Entomology 3, 177190.CrossRefGoogle Scholar
Brady, J. & Gibson, G. (1983) Activity patterns in pregnant tsetse flies, Glossina morsitans. Physiological Entomology 8, 359369.CrossRefGoogle Scholar
Challier, A. (1965) Amélioration de la méthode de détermination de l'âge physiologique des glossines. Études faites sur Glossina palpalis palpalis Vanderplank, 1949. Bulletin de la Société de Pathologie Exotique 58, 250259.Google Scholar
Francis, B., Green, M., & Payne, C. (1993) The GLIM system, (Release 4 Manual). 821 pp. Oxford, Clarendon Press.CrossRefGoogle Scholar
Gaston, K.A. & Randoph, S.E. (1993) Reproductive under-performance of tsetse flies in the laboratory, related to feeding frequency. Physiological Entomology 18, 130136.CrossRefGoogle Scholar
Gibson, G. & Torr, S.J. (1999) Visual and olfactory responses of haematophagous Diptera to host stimuli. Medical and Veterinary Entomology 13, 223.CrossRefGoogle ScholarPubMed
Green, C.H. (1994) Bait methods for tsetse fly control. Advances in Parasitology 34, 229291.CrossRefGoogle ScholarPubMed
Griffiths, N. & Brady, J. (1994) Analysis of the components of ‘electric nets’ that affect their sampling efficiency for tsetse flies (Diptera: Glossinidae). Bulletin of Entomological Research 84, 325330.CrossRefGoogle Scholar
Hargrove, J.W. (1981) Tsetse dispersal reconsidered. Journal of Animal Ecology 50, 351373.CrossRefGoogle Scholar
Hargrove, J.W. (1981) Discrepancies between estimates of tsetse fly populations using mark-recapture and removal trapping techniques. Journal of Applied Ecology 50, 351373.CrossRefGoogle Scholar
Hargrove, J.W. (1991) Ovarian ages of tsetse flies (Diptera: Glossinidae) caught from mobile and stationary baits in the presence and absence of humans. Bulletin of Entomological Research 81, 4350.CrossRefGoogle Scholar
Hargrove, J.W. (1993) Age-dependent sampling biases in tsetse flies (Glossina). Problems associated with estimating mortality from sample age distributions. pp. 549556 in Management of insect pests: nuclear and related molecular and genetic techniques. Vienna, International Atomic Energy Agency.Google Scholar
Hargrove, J.W. (1995) Towards a general rule for estimating the day of pregnancy of field-caught tsetse flies. Physiological Entomology 20, 213223.CrossRefGoogle Scholar
Hargrove, J.W. (1999a) Nutritional levels of female tsetse Glossina pallidipes (Diptera: Glossinidae) from artificial refuges Medical and Veterinary Entomology 13, 150164.CrossRefGoogle ScholarPubMed
Hargrove, J.W. (1999b) Lifetime changes in the nutritional characteristics of female tsetse flies G. pallidipes (Diptera: Glossinidae) caught in odour-baited traps. Medical and Veterinary Entomology 13, 165176.CrossRefGoogle Scholar
Hargrove, J.W. (1999c) Reproductive abnormalities in field tsetse flies in Zimbabwe. Entomologia Experimentalis et Applicata (submitted for publication).CrossRefGoogle Scholar
Hargrove, J.W. & Brady, J. (1992) Activity rhythms of tsetse flies (Glossina spp.) (Diptera: Glossinidae) at low and high temperatures in nature. Bulletin of Entomological Research 82, 321326.CrossRefGoogle Scholar
Hargrove, J.W. & Coates, T.W. (1990) Metabolic rates of tsetse flies in the field as measured by the excretion of injected caesium. Physiological Entomology 15, 157166.CrossRefGoogle Scholar
Hargrove, J.W. & Packer, M.J. (1993) Fat and haematin contents of male tsetse flies Glossina pallidipes and G. m. morsitans (Diptera: Glossinidae), caught in odour-baited traps and artificial refuges. Bulletin of Entomological Research 83, 2946.CrossRefGoogle Scholar
Hargrove, J.W. & Vale, G.A. (1978) The effect of host odour concentration on catches of tsetse flies (Glossinidae) and other Diptera in the field. Bulletin of Entomological Research 68, 607612.CrossRefGoogle Scholar
Hargrove, J.W. & Vale, G.A. (1979) Aspects of the feasibility of employing odour-baited traps for controlling tsetse flies (Diptera: Glossinidae). Bulletin of Entomological Research 69, 283290.CrossRefGoogle Scholar
Hargrove, J.W. & Vale, GA. (1980) Catches of Glossina morsitans morsitans Westwood and G. pallidipes Austen (Diptera: Glossinidae) in odour-baited traps in riverine and deciduous woodlands in the Zambesi Valley of Zimbabwe. Bulletin of Entomological Research 70, 571578.CrossRefGoogle Scholar
Hargrove, J.W. & Williams, B.G. (1995) A cost-benefit analysis of feeding in female tsetse (Diptera: Glossinidae). Medical and Veterinary Entomology 9, 109119.CrossRefGoogle Scholar
Hargrove, J.W., Holloway, M.T.P., Vale, G.A., Gough, A.J.E. & Hall, D.J. (1995) Catches of tsetse flies (Glossina spp.) (Diptera: Glossinidae) from traps baited with large doses of natural and synthetic host odour. Bulletin of Entomological Research 85, 215227.CrossRefGoogle Scholar
Huyton, P.M. & Brady, J. (1975) Some effects of light and heat on the feeding and resting behaviour of tsetse flies, Glossina morsitans Westwood. Journal of Entomology (A) 50, 2330.Google Scholar
Langley, P.A. & Stafford, K. (1990) Feeding frequency in relation to reproduction in Glossina morsitans morsitans Westwood and G. pallidipes. Physiological Entomology 15, 415421.CrossRefGoogle Scholar
Muzari, M.O. & Hargrove, J.W. (1996) The design of target barriers for tsetse flies, Glossina spp. (Diptera: Glossinidae). Bulletin of Entomological Research 86, 579583.CrossRefGoogle Scholar
Nash, T.A.M. (1935) The effect of high maximum temperature upon the longevity of Glossina submorsitans Newst. and G. tachinoides Westw. Bulletin of Entomological Research 26, 103113.CrossRefGoogle Scholar
Phelps, R.J. & Clarke, G.P.Y. (1974) Seasonal elimination of some size classes in males of Glossina morsitans morsitans Westw. (Diptera, Glossinidae). Bulletin of Entomological Research 64, 313324.CrossRefGoogle Scholar
Phelps, R.J. & Vale, G.A. (1978) Studies on populations of Glossina morsitans morsitans and G. pallidipes (Diptera: Glossinidae) in Rhodesia. Journal of Applied Entomology 15, 743760.Google Scholar
Pilson, R.D. & Leggate, B.M. (1962a) A diurnal and seasonal study of the feeding activity of G. pallidipes Aust. Bulletin of Entomological Research 53, 541550.CrossRefGoogle Scholar
Pilson, R.D. & Leggate, B.M. (1962b) A diurnal and seasonal study of the resting behaviour of G. pallidipes Aust. Bulletin of Entomological Research 53, 541550.CrossRefGoogle Scholar
Pilson, R.D. & Pilson, B.M. (1967) Behaviour studies of Glossina morsitans in the field. Bulletin of Entomological Research 57, 227257.CrossRefGoogle ScholarPubMed
Potts, W.H. (1933) Observations on Glossina morsitans Westw. in East Africa. Bulletin of Entomological Research 24, 293.CrossRefGoogle Scholar
Randolph, S.E. & Rogers, D.J. (1981) Physiological correlates of the availability of Glossina morsitans centralis Machado to different sampling methods. Ecological Entomology 6, 6377.CrossRefGoogle Scholar
Randolph, S.E. & Rogers, D.J. (1986) The use of discriminant analysis for the estimation of sampling biases for female tsetse. Ecological Entomology 11, 205220.CrossRefGoogle Scholar
Randolph, S.E., Rogers, D.J. & Kiilu, J. (1991) The feeding behaviour, activity and trappability of wild female G. pallidipes in relation to their pregnancy cycle. Medical and Veterinary Entomology 5, 335350.CrossRefGoogle Scholar
Randolph, S.E., Williams, B.G., Rogers, D.J. & Connor, H. (1992) Modelling the effect of feeding-related mortality on the feeding strategy of tsetse (Diptera: Glossinidae). Medical and Veterinary Entomology 6, 231240.CrossRefGoogle ScholarPubMed
Torr, S.J. (1988) The activation of resting tsetse flies (Glossina) in response to visual and olfactory stimuli in the field. Physiological Entomology 13, 315325.CrossRefGoogle Scholar
Torr, S.J. & Hargrove, J.W. (1998) Factors affecting the landing and feeding responses of the tsetse fly Glossina pallidipes to a stationary ox. Medical and Veterinary Entomology 12, 196207.CrossRefGoogle ScholarPubMed
Torr, S.J., Hall, D.R., Phelps, R.J. & Vale, G.A. (1997) Methods for dispensing odour attractants for tsetse flies (Diptera: Glossinidae). Bulletin of Entomological Research 87, 299311.CrossRefGoogle Scholar
Vale, G.A. (1971) Artificial refuges for tsetse flies (Glossina spp.). Bulletin of Entomological Research 61, 331350.CrossRefGoogle Scholar
Vale, G.A. (1974a) New field methods for studying the responses of tsetse flies (Diptera: Glossinidae) to hosts. Bulletin of Entomological Research 64, 199208.CrossRefGoogle Scholar
Vale, G.A. (1974b) The responses of tsetse flies (Diptera: Glossinidae) to mobile and stationary baits. Bulletin of Entomological Research 64, 545588.CrossRefGoogle Scholar
Vale, G.A. & Hargrove, J.W. (1975) Field attraction of tsetse flies (Diptera, Glossinidae) to ox odour; the effects of dose. Transactions of the Rhodesian Scientific Association 56, 4650.Google Scholar
Vale, G.A. & Phelps, R.J. (1978) Sampling problems with tsetse flies (Diptera: Glossinidae). Journal of Applied Ecology 15, 715726.CrossRefGoogle Scholar
Vale, G.A., Lovemore, D.F., Flint, S. & Cockbill, G.F. (1988) Odour-baited targets to control tsetse flies, Glossina spp. (Diptera: Glossinidae), in Zimbabwe. Bulletin of Entomological Research 78, 3149.CrossRefGoogle Scholar