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Metabolic thermogenesis and evaporative water loss in the Hwamei Garrulax canorus

机译:Hwamei Garrulax canorus的代谢生热和蒸发失水

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Basal metabolic rate (BMR) is thought to be a major hub in the network of physiological mechanisms connecting life history traits. Evaporative water loss (EWL) is a physiological indicator that is widely used to measure water relations in inter- or intraspecific studies of birds in different environments. In this study, we examined the physiological responses of summer-acclimatized Hwamei Garrulax canorus to temperature by measuring their body temperature (T-b), metabolic rate (MR) and EWL at ambient temperatures (T-a) between 5 and 40 degrees C. Overall, we found that mean body temperature was 42.4 degrees C and average minimum thermal conductance (C) was 0.15 ml O-2 g(-1) h(-1) degrees C-1 measured between 5 and 20 degrees C. The thermal neutral zone (TNZ) was 31.8-35.3 degrees C and BMR was 181.83 ml O-2 h(-1). Below the lower critical temperature, MR increased linearly with decreasing Ta according to the relationship: MR (ml O-2 h(-1)) = 266.59-2.66 T-a. At T(a)s above the upper critical temperature, MR increased with Ta according to the relationship: MR (ml O-2 h(-1))= 271.26+12.85 T-a. EWL increased with T-a according to the relationship: EWL (mg H2O h(-1))= 19.16+12.64 T-a and exceeded metabolic water production at T-a > 14.0 degrees C. The high T-b and thermal conductance, low BMR, narrow TNZ, and high evaporative water production/metabolic water production (EWP/MWP) ratio in the Hwamei are consistent with the idea that this species is adapted to warm, mesic climates, where metabolic thermogenesis and water conservation are not strong selective pressures. (C) 2013 Published by Elsevier Ltd.
机译:基础代谢率(BMR)被认为是连接生活史特征的生理机制网络中的主要枢纽。蒸发失水(EWL)是一种生理指标,被广泛用于测量鸟类在不同环境中进行种间或种内研究中的水分关系。在这项研究中,我们通过在5至40摄氏度之间的环境温度(Ta)下测量它们的体温(Tb),代谢率(MR)和EWL,研究了夏季适应的Hwamei Garrulax canorus对温度的生理反应。总体而言,我们发现平均体温为42.4摄氏度,平均最低热导(C)为0.15毫升O-2 g(-1)h(-1)摄氏度C-1,在5至20摄氏度之间测得。 TNZ)为31.8-35.3摄氏度,BMR为181.83 ml O-2 h(-1)。在较低的临界温度以下,MR随以下关系线性地随着Ta的减小而线性增加:MR(ml O-2 h(-1))= 266.59-2.66 T-a。在高于上限临界温度的T(a)s时,MR随Ta的关系而增加:MR(ml O-2 h(-1))= 271.26 + 12.85 T-a。根据以下关系,EW随Ta的增加而增加:EWL(mg H2O h(-1))= 19.16 + 12.64 Ta,并且在Ta> 14.0 C时超过代谢水的产生。高Tb和热导率,低BMR,窄TNZ和Hwamei的高蒸发水产量/代谢水产量(EWP / MWP)比符合这样的想法,即该物种适合于温暖,中温的气候,那里的代谢生热和节水不是很强的选择压力。 (C)2013由Elsevier Ltd.出版

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