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孵化温度会改变卡罗来纳安乐蜥幼蜥的体温调节。

Incubation temperature modifies neonatal thermoregulation in the lizard Anolis carolinensis.

作者信息

Goodman Rachel M, Walguarnery Justin W

机构信息

Department of Ecology and Evolutionary Biology, University of Tennessee, Knoxville, Tennessee 37996-1610, USA.

出版信息

J Exp Zool A Ecol Genet Physiol. 2007 Aug 1;307(8):439-48. doi: 10.1002/jez.397.

Abstract

The thermal environment experienced during embryonic development can profoundly affect the phenotype, and potentially the fitness, of ectothermic animals. We examined the effect of incubation temperature on the thermal preferences of juveniles in the oviparous lizard, Anolis carolinensis. Temperature preference trials were conducted in a laboratory thermal gradient within 48 hr of hatching and after 22-27 days of maintenance in a common laboratory environment. Incubation temperature had a significant effect on the upper limit of the interquartile range (IQR) of temperatures selected by A. carolinensis within the first 2 days after hatching. Between the first and second trials, the IQR of selected temperatures decreased significantly and both the lower limit of the IQR and the median selected temperature increased significantly. This, along with a significant incubation temperature by time interaction in the upper limit of the IQR, resulted in a pattern of convergence in thermoregulation among treatment groups. The initial differences in selected temperatures, as well as the shift in selected temperatures between first and second trials, demonstrate plasticity in temperature selection. As a previous study failed to find environmentally induced plasticity in temperature selection in adult A. carolinensis, this study suggests that this type of plasticity is exclusive to the period of neonatal development.

摘要

胚胎发育期间所经历的热环境会深刻影响变温动物的表型,甚至可能影响其适应性。我们研究了孵化温度对卵生蜥蜴绿安乐蜥幼体热偏好的影响。温度偏好试验在孵化后48小时内以及在普通实验室环境中饲养22 - 27天后,于实验室热梯度中进行。孵化温度对绿安乐蜥在孵化后前两天内所选温度的四分位距(IQR)上限有显著影响。在第一次和第二次试验之间,所选温度的IQR显著降低,IQR的下限和所选温度的中位数均显著升高。这一点,再加上IQR上限中孵化温度与时间的显著交互作用,导致各处理组之间出现了体温调节趋同的模式。所选温度的初始差异以及第一次和第二次试验之间所选温度的变化,表明温度选择具有可塑性。由于之前的一项研究未能在成年绿安乐蜥中发现环境诱导的温度选择可塑性,本研究表明这种可塑性是新生发育阶段所特有的。

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