Artacho Paulina, Jouanneau Isabelle, Le Galliard Jean-François
Instituto de Ciencias Ambientales y Evolutivas, Campus Isla Teja, Universidad Austral de Chile, Valdivia, Chile.
Physiol Biochem Zool. 2013 Jul-Aug;86(4):458-69. doi: 10.1086/671376. Epub 2013 Jun 13.
Studies of the relationship of performance and behavioral traits with environmental factors have tended to neglect interindividual variation even though quantification of this variation is fundamental to understanding how phenotypic traits can evolve. In ectotherms, functional integration of locomotor performance, thermal behavior, and energy metabolism is of special interest because of the potential for coadaptation among these traits. For this reason, we analyzed interindividual variation, covariation, and repeatability of the thermal sensitivity of maximal sprint speed, preferred body temperature, thermal precision, and resting metabolic rate measured in ca. 200 common lizards (Zootoca vivipara) that varied by sex, age, and body size. We found significant interindividual variation in selected body temperatures and in the thermal performance curve of maximal sprint speed for both the intercept (expected trait value at the average temperature) and the slope (measure of thermal sensitivity). Interindividual differences in maximal sprint speed across temperatures, preferred body temperature, and thermal precision were significantly repeatable. A positive relationship existed between preferred body temperature and thermal precision, implying that individuals selecting higher temperatures were more precise. The resting metabolic rate was highly variable but was not related to thermal sensitivity of maximal sprint speed or thermal behavior. Thus, locomotor performance, thermal behavior, and energy metabolism were not directly functionally linked in the common lizard.
对表现与行为特征和环境因素之间关系的研究往往忽视个体间的差异,尽管量化这种差异对于理解表型特征如何进化至关重要。在变温动物中,由于运动表现、热行为和能量代谢之间可能存在共同适应,它们的功能整合特别受关注。因此,我们分析了约200只普通蜥蜴(胎生蜥蜴)的个体间差异、协变以及最大冲刺速度、偏好体温、热精度和静息代谢率热敏感性的重复性,这些蜥蜴在性别、年龄和体型上存在差异。我们发现,在所选择的体温以及最大冲刺速度的热表现曲线的截距(平均温度下的预期特征值)和斜率(热敏感性度量)方面,存在显著的个体间差异。不同温度下最大冲刺速度、偏好体温和热精度的个体间差异具有显著的重复性。偏好体温与热精度之间存在正相关关系,这意味着选择较高温度的个体更为精确。静息代谢率变化很大,但与最大冲刺速度的热敏感性或热行为无关。因此,在普通蜥蜴中,运动表现、热行为和能量代谢在功能上没有直接联系。