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Basal metabolic rate maximum thermogenic capacity and aerobic scope in rodents: interaction between environmental temperature and torpor use

机译:啮齿动物的基础代谢率最大产热能力和有氧范围:环境温度与使用玉米的相互作用

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摘要

When torpid animals arouse and warm up to restore normal body temperature (Tb), they produce heat at levels that can reach up to 10 times basal metabolic rate (BMR), close to the cold-induced summit metabolism (VO2-sum). Because torpor is an adaptation aimed at conserving energy over periods of low ambient temperature (Ta) and food availability, selective forces that have led to the evolution of torpor may have simultaneously favoured high thermogenic capacity (i.e. VO2-sum) relative to the maintenance costs (i.e. BMR), hence a higher factorial aerobic scope (FAS; the ratio of VO2-sum to BMR). My objective was to test this adaptive hypothesis using a phylogenetically informed comparative approach with data on BMR and VO2-sum in rodents. I found a strong negative correlation between FAS and the average of the daily minimum Ta (Tmin) in species using torpor, which was due to differential effects of Ta on BMR (but not VO2-sum) in species that use torpor compared with species that do not. In addition, FAS was negatively correlated with the lowest torpid Tb in a subset of nine species. These results suggest that in species using torpor, selective forces may have acted to maximize the efficiency of thermogenic capacity (VO2-sum) relative to maintenance costs (BMR), resulting in an increasing FAS with decreasing Ta.
机译:当有毒的动物唤醒并变暖以恢复正常的体温(Tb)时,它们产生的热量可以达到基础代谢率(BMR)的10倍,接近于冷诱导的顶峰代谢(VO2-sum)。由于Torpor是旨在在低环境温度(Ta)和食物供应期间节省能量的一种适应措施,因此导致Torpor进化的选择性力可能同时有利于相对于维护成本的高产热能力(即VO2-sum) (即BMR),因此有较高的阶乘有氧范围(FAS; VO2-和与BMR的比率)。我的目标是使用系统发育信息比较方法,以啮齿动物的BMR和VO2-sum数据测试这种适应性假设。我发现使用Torpor的物种中FAS与每日最小Ta(Tmin)的平均值之间存在很强的负相关性,这是由于Ta与使用Torpor的物种相比,其对BMR(但不是VO2-sum)的影响不同。不要。此外,FAS与9种亚种中最低的Torb Tb呈负相关。这些结果表明,在使用Torpor的物种中,相对于维持成本(BMR),选择性作用力可能已使热生成能力(VO2-sum)的效率最大化,从而导致FAS随着Ta的减少而增加。

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