首页> 外文期刊>Journal of Thermal Biology >Metabolism, thermoregulation and evaporative water loss in the Chaotung Vole (Eothenomys olitor) in Yunnan-Kweichow Plateau in summer
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Metabolism, thermoregulation and evaporative water loss in the Chaotung Vole (Eothenomys olitor) in Yunnan-Kweichow Plateau in summer

机译:夏季云贵高原朝桐田鼠的代谢,温度调节和蒸发失水

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摘要

Proper adjustment of thermoregulatory mechanisms ensures the survival of mammals when they are subjected to seasonal changes in their natural environment. To understand the physiological and ecological adaptations of Eothenomys olitor, we measured their metabolic rate, thermal conductance, body temperature (T-b) and evaporative water loss at a temperature range of 5-30 degrees C in summer. The thermal neutral zone (TNZ) of E. olitor was 20-27.5 degrees C. and the mean body temperature was 35.81 +/- 0.15 degrees C. Basal metabolic rate (BMR) was 2.81 +/- 0.11 ml O-2/g h and mean minimum thermal conductance (C-m) was 0.18 +/- 0.01 ml O-2/g h degrees C. Evaporative water loss (EWL) in E. olitor increased when the ambient temperature increased. The maximal evaporative water loss was 6.74 +/- 0.19 mg H2O/g h at 30 degrees C. These results indicated that E. olitor have relatively high BMR, low body temperature, low lower critical temperature, and normal thermal conductance. EWL plays an inportant role in temperature regulation. These characteristics are closely related to the living habitat of the species, and represent its adaptive strategy to the climate of the Yunnan-Kweichow Plateau, a low-latitude, high-altitude region where annual temperature fluctuations are small, but daily temperature fluctuations are greater
机译:适当调节温度调节机制可确保哺乳动物在自然环境中遭受季节性变化时得以生存。为了了解Eothenomys olitor的生理和生态适应性,我们在夏季测量5-30摄氏度的温度下它们的代谢率,热导率,体温(T-b)和蒸发失水。大肠杆菌的热中性区(TNZ)为20-27.5摄氏度,平均体温为35.81 +/- 0.15摄氏度。基础代谢率(BMR)为2.81 +/- 0.11 ml O-2 / gh平均最小热导(Cm)为0.18 +/- 0.01 ml O-2 / gh摄氏度。随着环境温度的升高,大肠杆菌中的蒸发失水(EWL)也会增加。在30摄氏度时,最大蒸发水损失为6.74 +/- 0.19 mg H2O / g h。这些结果表明,大肠杆菌具有相对较高的BMR,较低的体温,较低的下临界温度和正常的热导率。 EWL在温度调节中起着重要作用。这些特征与该物种的生存栖息地密切相关,并代表了其对云贵高原高原气候的适应策略,云南高原高原是一个低纬度,高海拔地区,年温度波动较小,但每日温度波动较大

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