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INTRA- AND INTERPOPULATION VARIATION IN THE THERMAL CHARACTERISTICS OF PREADULT DEVELOPMENT OF TWO LATITUDINALLY DIVERSE POPULATIONS OF TOXORHYNCHITES RUTILUS SEPTENTRIONALIS (DIPTERA: CULICIDAE)

Published online by Cambridge University Press:  31 May 2012

R. M. Trimble
Affiliation:
Research Station, Agriculture Canada, Vineland Station, Ontario L0R 2E0
C. T. Lund
Affiliation:
Research Station, Agriculture Canada, Vineland Station, Ontario L0R 2E0

Abstract

Linear regression analysis was used to estimate the developmental threshold, t0, and thermal constant, K, for all preadult stages of two laboratory colonies of the mosquito Toxorhynchites rutilus septentrionalis (Dyar and Knab). The colonies originated from Newark, Delaware and Lake Charles, Louisiana. The physiological and ecological significance of the within- and the between-population differences in the slopes of the regressions,t0's and K's, are discussed.

Résumé

L'auteur utilise une analyse de régression linéaire pour estimer le-seuil de développement (t0) et la constante thermique (K) de tous les stades juvéniles de deux colonies de moustiques Toxorhynchites rutilus septentrionalis (Dyar et Knab) élevés en laboratoire. Les colonies proviennent de Newark, dans le Delaware, et de Lake Charles, en Louisiane. Il explique aussi la portée physiologique et écologique des différences de pente dans les courbes des analyses de régression calculées avec les deux variables au sein d'une même population et entre deux populations différentes.

Type
Articles
Copyright
Copyright © Entomological Society of Canada 1983

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References

Agrell, I. P. S. and Lundquist, A. M.. 1973. Physiological and biochemical changes during insect development. pp. 159247in Rockstein, M. (Ed.), The Physiology of Insecta. 2nd ed., Vol. I. Academic Press, N.Y.CrossRefGoogle Scholar
Campbell, A., Frazer, B. D., Gilbert, N., Gutierrez, A. P., and Mackauer, M.. 1974. Temperature requirements of some aphids and their parasites. J. appl. Ecol. 11: 431438.CrossRefGoogle Scholar
Huffacker, C. B. 1944. The temperature relations of the immature stages of the malarial mosquito, Anopheles quadrimaculatus, Say, with a comparison of the developmental power of constant and variable temperatures in insect metabolism. Ann. ent. Soc. Am. 37: 127.CrossRefGoogle Scholar
Lamb, R. J. and Loschiavo, S. R.. 1981. Diet, temperature, and the logistic model of developmental rate for Tribolium confusum (Coleoptera: Tenebrionidae). Can. Ent. 113: 813818.CrossRefGoogle Scholar
Morris, R. F. and Fulton, W. G.. 1970. Models for the development and survival of Hyphantria cunea in relation to temperature and humidity. Mem. ent. Soc. Can. 70. 60 pp.Google Scholar
Steel, R. G. D. and Torrie, J. H.. 1960. Principles and Procedures of Statistics. McGraw-Hill, N.Y.Google Scholar
Stinner, R. E., Gutierrez, A. P., and Butler, G. D. Jr., 1974. An algorithm for temperature-dependent growth rate simulation. Can. Ent. 106: 519524.CrossRefGoogle Scholar
Tauber, M. J. and Tauber, C. A.. 1978. Evolution of phenological strategies in insects: a comparative approach with ecophysiological and genetic considerations. pp. 5371in Dingle, H. (Ed.), Evolution of Insect Migration and Diapause. Springer-Verlag, N.Y.CrossRefGoogle Scholar
Trimble, R. M. and Corbet, P. S.. 1975. Laboratory colonization of Toxorhynchites rutilus septentrionalis (Diptera: Culicidae). Ann. ent. Soc. Am. 68: 217219.CrossRefGoogle Scholar
Trimble, R. M. and Smith, S. M.. 1978. Geographic variation in development time and predation in the tree-hole mosquito, Toxorhynchites rutilus septentrionalis (Diptera: Culicidae). Can. J. Zool. 56: 21562165.CrossRefGoogle Scholar
Trimble, R. M. and Smith, S. M.. 1979. Geographic variation in the effects of temperature and photoperiod on dormancy induction, development time, and predation in the tree-hole mosquito, Toxorhynchites rutilus septentrionalis (Diptera: Culicidae). Can. J. Zool. 57: 16121618.CrossRefGoogle Scholar
Trottier, R. 1971. Effect of temperature on the life-cycle of Anax junius (Odonata: Aeshnidae) in Canada. Can. Ent. 103: 16711683.CrossRefGoogle Scholar
United States Department of Commerce. 1973 a. Climatography of the United States No. 81 (by state). Monthly normals of temperature, precipitation, and heating and cooling degree days 1941-70. Delaware-Maryland. U.S. Department of Commerce, National Oceanic and Atmospheric Administration, Environmental Data Service.Google Scholar
United States Department of Commerce. 1973 b. Climatography of the United States No. 81 (by state). Monthly normals of temperature, precipitation, and heating and cooling degree days 1941-70. Louisiana. U.S. Department of Commerce, National Oceanic and Atmospheric Administration, Environmental Data Service.Google Scholar
Wellington, W. G. and Trimble, R. M.. Weather in Huffaker, C. F. and Rabb, R. L. (Eds.), Environmental Entomology. Wiley, N.Y. In press.Google Scholar