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Temperature tolerances of Southeast Australian reptiles examined in relation to reptile thermoregulatory behaviour and distribution

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Summary

The Critical temperatures (defined as the upper and lower limits at which the animal can still right itself) were determined for 29 lizard species (13 genera) and four snake species (four genera) of Southeast Australia. In addition to these Critical temperatures, acclimation of the Critical temperatures and also some lethal temperatures were recorded for several of these species. The mean summer Critical Minimum values ranged between 2.2 and 9.8°C. Thigmotherms (Gekkonidae, Lygosominae, Elapidae) and posturing heliotherms (Agamidae, Scincinae, Varanidae) generally had high Critical Minimum values and the shuttling heliotherms (Lygosominae, Elapidae) had the lowest values. The rate of acclimation of the Critical Minimum of ten lizard species was similar and complete acclimation took place within ten days. Following acclimation the final or ultimate Critical Minimum of some species fell below the body freezing point of-0.52°C and locomotion could occur while the lizard was supercooled. Mean summer Critical Maximum values ranged between 37.0 and 44.8°C. Determination of the Lethal Minimum temperatures by continuously cooling the specimens was complicated by the fact that supercooling occurred followed by nucleation or sudden freezing of the body tissues. The Lethal Minimum was best determined by holding specimens at different constant temperature levels then calculating the body temperature at which the species could survive for an indefinite time period. It is concluded, from the data presented in this paper, that if environmental temperatures were to limit the distribution of reptiles then the Critical Minimum level would have more ecological significance than the Critical Maximum.

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References

  • Bartholomew, G. A.: Body temperature and energy metabolism, p. 290–347. In: Gordon, M. S. (ed.), Animal function: Principles and adaptations, 560 p. New York: The MacMillan Co. 1968.

    Google Scholar 

  • Bogert, C. M.: How reptiles regulate their body temperature. Sci. Amer. 200 (4), 105–120 (1959).

    Google Scholar 

  • Bogert, C. M., Martin del Campo, R.: The Gila Monster and its allies. Bull. Mus. nat. Hist. 109, 1–238 (1956).

    Google Scholar 

  • Brattstrom, B. H.: Body temperatures of reptiles. Amer. Midl. Nat. 73 (2), 376–422 (1965).

    Google Scholar 

  • Brattstrom, B. H.: Thermal acclimation in Anuran amphibians as a function of latitude and altitude. Comp. Biochem. Physiol. 24, 93–111 (1968).

    Google Scholar 

  • Brattstrom, B. H., Lawrence, P.: The rate of thermal acclimation in Anuran amphibians. Physiol. Zool. 35, 148–156 (1962).

    Google Scholar 

  • Bustard, H. R.: Activity cycle and thermoregulation in the Australian Gecko Gehyra variegata. Copeia 1967 (4), 753–758 (1967).

    Google Scholar 

  • Bustard, H. R.: The ecology of the Australian Gecko Heteronotia binoei in northern New South Wales. J. Zool. 156 (4), 483–497 (1968).

    Google Scholar 

  • Cowles, R. B., Bogert, C.: A preliminary study of the thermal requirements of desert reptiles. Bull. Amer. Mus. nat. Hist. 83, 265–296 (1944).

    Google Scholar 

  • Cunningham, J. D.: Thermal relations of the Alligator Lizard Gerrhonotus multicarinatus webbi. Herpetologica 22 (1), 1–7 (1966).

    Google Scholar 

  • De Witt, C. B.: Precision of thermoregulation and its relation to environmental factors in the Desert Iguana Dipsosaurus dorsalis. Physiol. Zool. 40 (1), 49–66 (1967).

    Google Scholar 

  • Fitch, H. S.: Life history and ecology of the Five-lined Skink Eumeces fasciatus. Univ. Kans. Publs. Mus. nat. Hist. 8, 1–156 (1954).

    Google Scholar 

  • Fitch, H. S.: Temperature responses in free-living amphibians and reptiles of north-eastern Kansas. Univ. Kans. Publs. Mus. nat. Hist. 8, 417–476 (1956).

    Google Scholar 

  • Geiger, R.: The climate near the ground (Trans. from the 4th German ed.), 611 p. Harvard: Univ. Press 1961.

    Google Scholar 

  • Green, R. G.: Estimation of tolerance over an indefinite time period. Ecology 46, 887 (1965).

    Google Scholar 

  • Herbst, L. C.: A preliminary study of the reactions of snakes and lizards at low temperatures. M. Sc. thesis Univ., Cal. Los Angeles (1949).

  • Jacobson, E. R., Whitford, W. G.: The effect of acclimation on physiological responses to temperature in the snakes Thamnophis proximus and Natrix rhombifera. Comp. Biochem. Physiol. 35 (2), 439–449 (1970).

    Google Scholar 

  • Kour, E. L., Hutchison, V. H.: Critical thermal tolerances and heating and cooling rates of lizards from diverse habitats. Copeia 1970 (2), 219–229 (1970).

    Google Scholar 

  • Litch, P., Dawson, W. R., Shoemaker, V.: Heat resistance of some Australian lizards. Copeia 1966 (2), 162–169 (1966).

    Google Scholar 

  • Littlejohn, M. J.: Amphibians. In: Arnold, V. H. (ed.), Victorian Year Book 85, 1–11 (1971).

  • Rawlinson, P. A.: The reptiles of East Gippsland. Proc. roy. Soc. Vict. 82(1), 113–128 (1969).

    Google Scholar 

  • Rawlinson, P. A.: Reptiles. In: Arnold, V. H. (ed.), Victorian Year Book 85, 11–36 (1971).

  • Regal, P. J.: Thermophilic responses following feeding in certain reptiles. Copeia 1966(3), 588–590 (1966).

    Google Scholar 

  • Serventy, D. L., Whittell, H. M.: Handbook of the birds of Western Australia. Perth: Paterson Brokensha 1951.

    Google Scholar 

  • Somero, G. N., De Vries, A. L.: Temperature tolerances of some Antarctic fishes. Science (N.Y.) 156, 257–258 (1967).

    Google Scholar 

  • Wilhoft, D. C., Anderson, J. D.: Effect of acclimation on the preferred body temperature of the lizard Sceloporus occidentalis. Science (N.Y.) 131, 610–611 (1960).

    Google Scholar 

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Spellerberg, I.F. Temperature tolerances of Southeast Australian reptiles examined in relation to reptile thermoregulatory behaviour and distribution. Oecologia 9, 23–46 (1972). https://doi.org/10.1007/BF00345241

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