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Solar Radiation during Rewarming from Torpor in Elephant Shrews: Supplementation or Substitution of Endogenous Heat Production?

机译:从象Sh的Torpor进行热变暖期间的太阳辐射:补充还是替代内生热?

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摘要

Many small mammals bask in the sun during rewarming from heterothermy, but the implications of this behaviour for their energy balance remain little understood. Specifically, it remains unclear whether solar radiation supplements endogenous metabolic thermogenesis (i.e., rewarming occurs through the additive effects of internally-produced and external heat), or whether solar radiation reduces the energy required to rewarm by substituting (i.e, replacing) metabolic heat production. To address this question, we examined patterns of torpor and rewarming rates in eastern rock elephant shrews (Elephantulus myurus) housed in outdoor cages with access to either natural levels of solar radiation or levels that were experimentally reduced by means of shade cloth. We also tested whether acclimation to solar radiation availability was manifested via phenotypic flexibility in basal metabolic rate (BMR), non-shivering thermogenesis (NST) capacity and/or summit metabolism (Msum). Rewarming rates varied significantly among treatments, with elephant shrews experiencing natural solar radiation levels rewarming faster than conspecifics experiencing solar radiation levels equivalent to approximately 20% or 40% of natural levels. BMR differed significantly between individuals experiencing natural levels of solar radiation and conspecifics experiencing approximately 20% of natural levels, but no between-treatment difference was evident for NST capacity or Msum. The positive relationship between solar radiation availability and rewarming rate, together with the absence of acclimation in maximum non-shivering and total heat production capacities, suggests that under the conditions of this study solar radiation supplemented rather than substituted metabolic thermogenesis as a source of heat during rewarming from heterothermy.
机译:许多小哺乳动物在从异温热复温过程中沐浴在阳光下,但是这种行为对其能量平衡的影响仍然鲜为人知。具体而言,目前尚不清楚太阳辐射是否补充了内源性代谢产热(即通过内部产生的热量和外部热量的叠加效应而发生变暖),或者太阳辐射是否通过替代(即替代)代谢热产生而减少了重新武装所需的能量。 。为了解决这个问题,我们研究了在室外网箱中饲养的东部岩象sh(Elephantulus myurus)的to折和复温率的模式,这些sh可以获取自然水平的太阳辐射或通过遮光布实验性降低的水平。我们还测试了通过基础代谢率(BMR),非颤抖生热(NST)能力和/或顶峰代谢(Msum)的表型灵活性是否证明了对太阳辐射可用性的适应。在不同的处理方法中,变暖率差异很大,经历自然太阳辐射水平的象sh的变暖要快于经历太阳辐射水平的同种同类动物的变暖,后者大约相当于自然水平的20%或40%。在经历自然辐射水平的个体和同种异体物种经历自然辐射水平的大约20%之间,BMR有显着差异,但是NST容量或Msum的治疗间差异没有明显。太阳辐射的可获得性和变暖率之间的正相关关系,以及最大颤抖和总热量生产能力缺乏适应性,表明在这项研究的条件下,太阳辐射是在补充热量的过程中补充而非替代了代谢热生成从异热复温。

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