Ortega Zaida, Mencía Abraham, Pérez-Mellado Valentín
Department of Animal Biology, University of Salamanca, Campus Miguel de Unamuno, 37007, Salamanca, Spain.
Int J Biometeorol. 2017 Mar;61(3):565-573. doi: 10.1007/s00484-016-1233-9. Epub 2016 Aug 16.
Thermal biology of lizards affects their overall physiological performance. Thus, it is crucial to study how abiotic constraints influence thermoregulation. We studied the effect of wind speed on thermoregulation in an endangered mountain lizard (Iberolacerta aurelioi). We compared two populations of lizards: one living in a sheltered rocky area and the other living in a mountain ridge, exposed to strong winds. The preferred temperature range of I. aurelioi, which reflects thermal physiology, was similar in both areas, and it was typical of a cold specialist. Although the thermal physiology of lizards and the structure of the habitat were similar, the higher wind speed in the exposed population was correlated with a significant decrease in the effectiveness thermoregulation, dropping from 0.83 to 0.74. Our results suggest that wind reduces body temperatures in two ways: via direct convective cooling of the animal and via convective cooling of the substrate, which causes conductive cooling of the animal. The detrimental effect of wind on thermoregulatory effectiveness is surprising, since lizards are expected to thermoregulate more effectively in more challenging habitats. However, wind speed would affect the costs and benefits of thermoregulation in more complex ways than just the cooling of animals and their habitats. For example, it may reduce the daily activity, increase desiccation, or complicate the hunting of prey. Finally, our results imply that wind should also be considered when developing conservation strategies for threatened ectotherms.
蜥蜴的热生物学影响其整体生理表现。因此,研究非生物限制因素如何影响体温调节至关重要。我们研究了风速对一种濒危山地蜥蜴(伊比利亚岩蜥)体温调节的影响。我们比较了两个蜥蜴种群:一个生活在有遮蔽的岩石区域,另一个生活在暴露于强风的山脊上。反映热生理的伊比利亚岩蜥的偏好温度范围在两个区域相似,且是典型的喜冷物种。尽管蜥蜴的热生理和栖息地结构相似,但暴露种群中较高的风速与体温调节效率的显著降低相关,从0.83降至0.74。我们的结果表明,风通过两种方式降低体温:通过对动物的直接对流冷却以及通过对基质的对流冷却,进而导致对动物的传导冷却。风对体温调节效率的不利影响令人惊讶,因为预计蜥蜴在更具挑战性的栖息地中能更有效地进行体温调节。然而,风速对体温调节成本和收益的影响方式可能比仅仅冷却动物及其栖息地更为复杂。例如,它可能会减少日常活动、增加脱水或使猎物捕猎变得复杂。最后,我们的结果意味着在制定濒危变温动物保护策略时也应考虑风的因素。