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Daily rhythms of nonshivering thermogenesis and responses to photoperiod manipulations in Apodemus mystacinus from two different ecosystems
Authors:M Spiegel  A Haim  
Institution:

aDepartment of Biology, Lifshiz College, P.O. Hilel 17, Jerusalem 94581, Israel

bDepartment of Biology, Faculty of Science and Science Education, University of Haifa-Oranim, P.O. Kiryat Tivon 36006, Israel

Abstract:Comparative physiology is an important tool for understanding adaptation to environment. Regulatory nonshivering thermogenesis (NST) is an essential mechanism in small mammals for coping with low ambient temperatures. Because of its geographical location and its sharp climatic changes across short distances, Israel offers conducting comparative studies between different populations of the same species. The aims of this study were: (1) to compare NST-capacity daily rhythms, between the two populations of the broad-toothed field mouse Apodemus Mystacinus—that of Mount Carmel (Mediterranean) and that of Mount Hermon (Subalpinic), (2) to compare the thermoregulatory daily rhythms response to photoperiod manipulations of mice from the two populations.

Mice were acclimated for at least 3 weeks to long scotophase (16D:8L-LS) and then to long photophase (16L:8D-LP) at a constant ambient temperature (Ta) of 24±1 °C. The following variables were compared at four different times of the day (06, 12, 18, 24 h): minimal body temperature (TbMin), minimal oxygen consumption (VO2Min) measured at the lower critical point and their response to noradrenaline (NA), 1.5 mg/1 kg.Wb injected s.c., (VO2NA and TbNA). NST-capacity was calculated as the ratio between VO2NA and VO2Min. The measurements were carried out at Ta of 28 °C and in light conditions matching those of acclimation. NA was injected after establishing VO2Min and TbMin. The values mean±SD are given for each measurement for n=6.

A three-way ANOVA revealed a significant difference between the two populations. Significant differences were revealed at different hours within populations under the different photoperiod regimes for different measured variables.

Keywords:Comparative-physiology  Adaptation  Thermoregulation  Ecosystem  Brown adipose tissue
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