Levesque Danielle L, Tuen Andrew Alek, Lovegrove Barry G
Institute of Biodiversity and Environmental Conservation, Universiti Malaysia Sarawak, 94300, Kota Samarahan, Sarawak, Malaysia.
School of Biology and Ecology, University of Maine, Orono, ME, 04469, USA.
J Comp Physiol B. 2018 Jul;188(4):707-716. doi: 10.1007/s00360-018-1160-7. Epub 2018 Apr 5.
Much of our knowledge of the thermoregulation of endotherms has been obtained from species inhabiting cold and temperate climates, our knowledge of the thermoregulatory physiology of tropical endotherms is scarce. We studied the thermoregulatory physiology of a small, tropical mammal, the large treeshrew (Tupaia tana, Order Scandentia) by recording the body temperatures of free-ranging individuals, and by measuring the resting metabolic rates of wild individuals held temporarily in captivity. The amplitude of daily body temperature (~ 4 °C) was higher in treeshrews than in many homeothermic eutherian mammals; a consequence of high active-phase body temperatures (~ 40 °C), and relatively low rest-phase body temperatures (~ 36 °C). We hypothesized that high body temperatures enable T. tana to maintain a suitable gradient between ambient and body temperature to allow for passive heat dissipation, important in high-humidity environments where opportunities for evaporative cooling are rare. Whether this thermoregulatory phenotype is unique to Scandentians, or whether other warm-climate diurnal small mammals share similar thermoregulatory characteristics, is currently unknown.
我们关于恒温动物体温调节的许多知识都来自于栖息在寒冷和温带气候中的物种,而我们对热带恒温动物体温调节生理学的了解却很少。我们通过记录自由活动个体的体温,并测量暂时圈养的野生个体的静息代谢率,研究了一种小型热带哺乳动物——大笔尾树鼩(笔尾树鼩属,树鼩目)的体温调节生理学。笔尾树鼩的每日体温波动幅度(约4°C)比许多恒温真兽类哺乳动物更大;这是其活跃期体温较高(约40°C)和相对较低的休息期体温(约36°C)的结果。我们推测,高体温使大笔尾树鼩能够在环境温度和体温之间维持一个合适的梯度,以实现被动散热。在蒸发散热机会很少的高湿度环境中,这一点很重要。目前尚不清楚这种体温调节表型是否为树鼩目所特有,或者其他生活在温暖气候中的昼行性小型哺乳动物是否具有类似的体温调节特征。