Khaliq Imran, Hof Christian
Department of Zoology, Ghazi University, Pakistan, Dera Ghazi Khan, Punjab, Pakistan.
Senckenberg Biodiversity and Climate Research Centre (BiK-F), Frankfurt, Germany.
PeerJ. 2018 Oct 31;6:e5725. doi: 10.7717/peerj.5725. eCollection 2018.
Metabolic critical temperatures define the range of ambient temperatures where endotherms are able to minimize energy allocation to thermogenesis. Examining the relationship between metabolic critical temperatures and basal metabolic rates (BMR) provides a unique opportunity to gain a better understanding of how animals respond to varying ambient climatic conditions, especially in times of ongoing and projected future climate change. We make use of this opportunity by testing the heat dissipation limit (HDL) theory, which hypothesizes that the maximum amount of heat a species can dissipate constrains its energetics. Specifically, we test the theory's implicit prediction that BMR should be lower under higher metabolic critical temperatures. We analysed the relationship of BMR with upper and lower critical temperatures for a large dataset of 146 endotherm species using regression analyses, carefully accounting for phylogenetic relationships and body mass. We show that metabolic critical temperatures are negatively related with BMR in both birds and mammals. Our results confirm the predictions of the HDL theory, suggesting that metabolic critical temperatures and basal metabolic rates respond in concert to ambient climatic conditions. This implies that heat dissipation capacities of endotherms may be an important factor to take into account in assessments of species' vulnerability to climate change.
代谢临界温度定义了恒温动物能够将用于产热的能量分配降至最低的环境温度范围。研究代谢临界温度与基础代谢率(BMR)之间的关系,为更好地理解动物如何应对变化的环境气候条件提供了一个独特的机会,尤其是在当前和预计的未来气候变化时期。我们利用这一机会来检验散热极限(HDL)理论,该理论假设一个物种能够散发的最大热量限制了其能量学。具体而言,我们检验该理论的隐含预测,即较高的代谢临界温度下基础代谢率应该更低。我们使用回归分析,仔细考虑系统发育关系和体重,分析了一个包含146个恒温动物物种的大型数据集的基础代谢率与上下临界温度之间的关系。我们发现,鸟类和哺乳动物的代谢临界温度均与基础代谢率呈负相关。我们的结果证实了HDL理论的预测,表明代谢临界温度和基础代谢率会协同应对环境气候条件。这意味着,在评估物种对气候变化的脆弱性时,恒温动物的散热能力可能是一个需要考虑的重要因素。