Briga Michael, Verhulst Simon
Groningen Institute for Evolutionary Life Sciences, University of Groningen, Nijenborgh 7, 9747 AG Groningen, The Netherlands
Groningen Institute for Evolutionary Life Sciences, University of Groningen, Nijenborgh 7, 9747 AG Groningen, The Netherlands.
J Exp Biol. 2017 Sep 15;220(Pt 18):3280-3289. doi: 10.1242/jeb.160069. Epub 2017 Jul 6.
Basal metabolic rate (BMR) is often assumed to be indicative of the energy turnover at ambient temperatures () below the thermoneutral zone (SMR), but this assumption has remained largely untested. Using a new statistical approach, we quantified the consistency in nocturnal metabolic rate across a temperature range in zebra finches (=3213 measurements on 407 individuals) living permanently in eight outdoor aviaries. Foraging conditions were either benign or harsh, and body mass and mass-adjusted BMR (BMR) and SMR (SMR) were lower in individuals living in a harsh foraging environment. The correlation between SMR at different was high (=0.91), independent of foraging environment, showing that individuals are consistently ranked according to their SMR However, the correlations between BMR and SMR were always lower (average: =0.29; range: 0<<0.50), in particular in the benign foraging environment. Variation in metabolic response to lower at least in part reflected differential body temperature () regulation: early morning was lower at low , and more so in individuals with a weaker metabolic response to lower Our findings have implications for the use of BMR in the estimation of time-energy budgets and comparative analyses: we suggest that the use of metabolic rates at ecologically relevant , such as the easily tractable SMR, will be more informative than the use of BMR as a proxy for energy turnover.
基础代谢率(BMR)通常被认为可指示在低于热中性区(SMR)的环境温度()下的能量转换,但这一假设在很大程度上仍未得到验证。我们采用一种新的统计方法,对永久生活在八个室外鸟舍中的斑胸草雀(对407只个体进行了3213次测量)在一个温度范围内的夜间代谢率的一致性进行了量化。觅食条件分为良好或恶劣,生活在恶劣觅食环境中的个体的体重、体重校正后的BMR(BMR)和SMR(SMR)较低。不同温度下的SMR之间的相关性很高(=0.91),与觅食环境无关,这表明个体根据其SMR始终保持一致的排名。然而,BMR与SMR之间的相关性总是较低(平均值:=0.29;范围:0<<0.50),尤其是在良好的觅食环境中。对较低温度的代谢反应变化至少部分反映了体温()调节的差异:在低温下,清晨体温较低,对低温代谢反应较弱的个体更是如此。我们的研究结果对在估计时间-能量预算和比较分析中使用BMR具有启示意义:我们建议,使用生态相关温度下的代谢率,如易于测定的SMR,将比使用BMR作为能量转换的替代指标更具信息性。