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Studies on the flight of black-flies (Diptera: Simuliidae). I. Flight performance of Simulium ornatum Meigen

Published online by Cambridge University Press:  10 July 2009

R. J. Cooter
Affiliation:
Centre for Overseas Pest Research, College House, Wrights Lane, London W8 5SJ, UK

Abstract

The flight performance of Simulium ornatum Mg. s.l. was measured under laboratory conditions using a simple flight mill. Males and unmated females were flown and the duration, distance and average speed of flight were recorded for adults fed on water only, sucrose, blood & water, or blood & sucrose. On 91% of all test occasions sucrose-fed insects flew but 25% of those on water only did not fly. Feeding flies on 10% sucrose solution markedly improved both willingness to fly and flight performance, and under these conditions maximum duration, distance and average speed recorded were 4.9 h, 4·2 km and 2·84 km/h, respectively. The ratio of average to maximum speed was 0·631 for females and 0·610 for males, with absolute maximum speeds of 3·19 and 2·99 km/h, respectively. Duration and distance flown were well-correlated, speed being the least variable aspect of flight performance measured. The distributions of flight duration and distance flown were skewed such that few insects made long flights. Mean flight performance at different ages was measured; unmated females appeared to retain a high level of willingness to fly throughout the age-range tested (up to 33 days). The longest recorded flight (5·3 h) was made by a female during an overnight experiment. The implications for long-range flight movements by simuliids are discussed.

Type
Original Articles
Copyright
Copyright © Cambridge University Press 1982

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References

Baker, P. S., Cooter, R. J., Chang, P. M. & Hashim, H. B. (1980). The flight capabilities of laboratory and tropical field populations of the brown planthopper, Nilaparvata lugens (Stål) (Hemiptera: Delphacidae).—Bull. ent. Res. 70, 589600.CrossRefGoogle Scholar
Clegg, J. S. & Evans, D. R. (1961). The physiology of blood trehalose and its function during flight in the blowfly.—J. exp. Biol. 38, 771792.CrossRefGoogle Scholar
Clements, A. N. (1955). The sources of energy for flight in mosquitoes.—J. exp. Biol. 32, 547554.CrossRefGoogle Scholar
Davies, D. M. (1952). The population and activity of adult female black flies in the vicinity of a stream in Algonquin Park, Ontario.—Can. J. Zool. 30, 287321.CrossRefGoogle Scholar
Davies, L. (1957). A study of the age of females of Simulium ornatum Mg. (Diptera) attracted to cattle.—Bull. ent. Res. 48, 535552.CrossRefGoogle Scholar
Davies, L. & Roberts, D. M. (1980). Flight activity of female black-flies (Diptera: Simuliidae) studies with a vehicle-mounted net in northern England.—Jnl Nat. Hist. 14, 116.CrossRefGoogle Scholar
Davis, M. A. (1980). Variation in flight duration among individual Tetraopes beetles: implications for studies of insect flight.—J. Insect Physiol. 26, 403406.CrossRefGoogle Scholar
Disney, R. H. L. (1970). The timing of the first blood meal in Simulium damnosum Theobald. —Ann. trop. Med. Parasit. 64, 123128.CrossRefGoogle ScholarPubMed
Disney, R. H. L. (1972). Observations on chicken-biting blackflies in Cameroon with a discussion of parous rates of Simulium damnosum.—Ann. trop. Med. Parasit. 66, 149158.CrossRefGoogle ScholarPubMed
Edwards, E. E. (1956). Human onchocerciasis in West Africa with special reference to the Gold Coast.—Jl W. Afr. Sci. Ass. 2, 135.Google Scholar
Eichler, D. A. (1971). Studies on Onchocerca gutturosa (Neumann, 1910) and its development in Simulium ornatum (Meigen, 1818). II. Behaviour of S. ornatum in relation to the transmission of O. gutturosa.—J. Helminth. 45, 259270.CrossRefGoogle Scholar
Eichler, D. A. & Nelson, G. S. (1971). Studies on Onchocerca gutturosa (Neumann, 1910) and its development in Simulium ornatum (Meigen, 1818). I. Observations on O. gutturosa in cattle in south-east England.—J. Helminth. 45, 245258.CrossRefGoogle Scholar
Fallis, A. M. (1964). Feeding and related behaviour of female Simuliidae (Diptera).—Expl Parasit. 15, 439470.CrossRefGoogle ScholarPubMed
Garms, r., Walsh, J. F. & Davies, J. B. (1979). Studies on the reinvasion of the Onchocerciasis Control Programme in the Volta River Basin by Simulium damnosum s.l. with emphasis on the south-western areas.—Tropenmed. & Parasitol. 30, 345362.Google Scholar
Hocking, B. (1953). The intrinsic range and speed of flight of insects.—Trans. R. ent. Sac. Lond. 104, 222345.Google Scholar
Hunter, D. M. (1977). Sugar-feeding in some Queensland black flies (Diptera: Simuliidae).— J. med. Entomol. 14, 229232.CrossRefGoogle ScholarPubMed
Johnson, C. G. (1969). Migration and dispersal of insects by flight.—763 pp. London, Methuen.Google Scholar
Johnson, C. G. (1976). Lability of the flight system: a context for functional adaptation.— pp. 217234in Rainey, R. C. (Ed.). Insect flight.—287 pp. Oxford, Blackwell Sci. Publ. (Symp. R. ent. Soc. no. 7).Google Scholar
Le Berre, R. (1966). Contribution à l'étude biologique et ecologique de Simulium damnosum Theobald, 1903 (Diptera, Simuliidae).—Mém. O.R.S.T.O.M. no. 17, 204 pp.Google Scholar
Lewis, D. J. (1953). Simulium damnosum and its relation to onchocerciasis in the Anglo-Egyptian Sudan.—Bull. ent. Res. 43, 597644.CrossRefGoogle Scholar
Magor, J. I. & Rosenberg, L. J. (1980). Studies of winds and weather during migrations of Simulium damnosum Theobald (Diptera: Simuliidae), the vector of onchocerciasis in West Africa.—Bull. ent. Res. 70, 693716.CrossRefGoogle Scholar
Nayar, J. K. & Van Handel, E. (1971). The fuel for sustained mosquito flight.—J. Insect Physiol. 17, 471481.CrossRefGoogle Scholar
Provost, M. W. (1952). The dispersal of Aedes taeniorhynchus. I. Preliminary studies.— Mosguito News 12, 174190.Google Scholar
Rose, D. J. W. (1972). Dispersal and quality in populations of Cicadulina species (Cicadellidae).—J. Anim. Ecol. 41, 589609.CrossRefGoogle Scholar
Srivastava, P. N. & Rockstein, M. (1969). The utilization of trehalose during flight by the housefly, Musca domestica L..—J. Insect Physiol. 15, 11811186.Google Scholar
Tribe, M. A. (1966). Some physiological studies in relation to age in the blowfly, Calliphora erythrocephala Meig.—J. Insect Physiol. 12, 15771593.CrossRefGoogle Scholar
Walsh, J. F. (1978). Light trap studies on Simulium damnosum s.l. in northern Ghana.— Tropenmed. & Parasit. 29, 492496.Google ScholarPubMed
Walsh, J. F. & Garms, R. (1980). The detection of plant sugars in Simulium damnosum s.l. by means of the cold Anthrone test.—Trans. R. Soc. trop. Med. Hyg. 74, 811813.CrossRefGoogle ScholarPubMed
Wigglesworth, V. B. (1949). The utilization of reserve substances in Drosophila during flight.—J. exp. Biol. 26, 150163.CrossRefGoogle ScholarPubMed
Wolfe, L. S. & Peterson, D. G. (1960). Diurnal behavior and biting habits of black flies (Diptera: Simuliidae) in the forests of Quebec.—Can. J. Zool. 38, 489497.CrossRefGoogle Scholar
Yurkiewicz, W. J. & Mathur, C. F. (1969). Incorporation of palmitate-1-C14 into lipids of the blowfly during flight.—J. Insect Physiol. 15, 439444.CrossRefGoogle ScholarPubMed