首页> 外文期刊>The Journal of Experimental Biology >An intra-population heterothermy continuum: notable repeatability of body temperature variation in food-deprived yellow-necked mice
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An intra-population heterothermy continuum: notable repeatability of body temperature variation in food-deprived yellow-necked mice

机译:群体内异质连续管:食物剥夺的黄颈小鼠体温变化的显着重复性

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Theoretical modelling predicts that the thermoregulatory strategies of endothermic animals range from those represented by thermal generalists to those characteristic for thermal specialists. While the generalists tolerate wide variations in body temperature (T-b), the specialists maintain T-b at a more constant level. The model has gained support from inter-specific comparisons relating to species and population levels. However, little is known about consistent among-individual variation within populations that could be shaped by natural selection. We studied the consistency of individual heterothermic responses to environmental challenges in a single population of yellow-necked mice (Apodemus flavicollis), by verifying the hypothesis that T-b variation is a repeatable trait. To induce the heterothermic response, the same individuals were repeatedly food deprived for 24 h. We measured T-b with implanted miniaturised data loggers. Before each fasting experiment, we measured basal metabolic rate (BMR). Thus, we also tested whether individual variation of heterothermy correlates with individual self-maintenance costs, and the potential benefits arising from heterothermic responses that should correlate with body size/mass. We found that some individuals clearly entered torpor while others kept T-b stable, and that there were also individuals that showed intermediate thermoregulatory patterns. Heterothermy was found to correlate negatively with body mass and slightly positively with the BMR achieved 1-2 days before fasting. Nonetheless, heterothermy was shown to be highly repeatable, irrespective of whether we controlled for self-maintenance costs and body size. Our results indicate that specialist and generalist thermoregulatory phenotypes can co-exist in a single population, creating a heterothermy continuum.
机译:理论模型预测,吸热动物的热调节策略范围从热通用代表的那些对热专家的那些特征表示。虽然总体持有体温(T-B)的宽变化,但专家以更恒定的水平维持T-B。该模型获得了与物种和人口水平有关的特异性比较的支持。然而,很少有人知道可以通过自然选择形状的群体中的个体变异一致。我们通过验证T-B变异是可重复的特征的假设,研究了在单一的黄颈小鼠(Apodemus Flavicollis)中对单个黄颈小鼠(Apodemus Flavicollis)对环境挑战对环境挑战的一致性。为了诱导异质反应,相同的人被剥夺了24小时的食物。使用植入的小型数据记录器测量T-B。在每次禁食实验之前,我们测量了基础代谢率(BMR)。因此,我们还测试了异质的个体变异与个体自我维持成本以及来自异质反应产生的潜在益处,应与体尺寸/质量相关。我们发现,一些人清楚地进入Torpor,而其他人保持T-B稳定,并且还有众分子显示中间热调节模式。发现异质热量与体重呈负相关,并且在禁食前1-2天逐渐呈略微呈正极。尽管如此,出现异质是高度可重复的,无论我们是否控制自我维护成本和体型。我们的结果表明,专业和通用热调节表型可以共存在单一的人群中,产生异质连续体。

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