Departamento de Biología, Universidad del Valle, A.A. 25360, Cali, Colombia.
Department of Biology, Washington University, St. Louis, MO 63130, USA.
Proc Biol Sci. 2023 Mar 29;290(1995):20222099. doi: 10.1098/rspb.2022.2099. Epub 2023 Mar 15.
Daily torpor allows endotherms to save energy during energetically stressful (e.g. cold) conditions. Although studies on avian torpor have mostly been conducted under laboratory conditions, information on the usage of torpor in the wild is limited to few, predominantly temperate-zone species. We studied torpor under seminatural conditions from 249 individuals from 29 hummingbird species across a 1920 m elevational gradient in the western Andes of Colombia using cloacal thermistors. Small birds were more likely to use torpor than large birds, but only at low ambient temperatures, where torpor was prolonged. We also found effects of proxy variables for body condition and energy expenditure on the use of torpor, its characteristics, and impacts. Our results suggest that context-dependency and phylogenetic variation in the probability of deploying torpor can help understand clade-wide patterns of elevational distribution in Andean hummingbirds.
日常蛰伏使恒温动物能够在能量紧张的情况下(例如寒冷)节省能量。尽管关于鸟类蛰伏的研究大多是在实验室条件下进行的,但关于野生蛰伏的信息仅限于少数主要分布在温带地区的物种。我们使用直肠温度传感器,在哥伦比亚西部安第斯山脉的 1920 米海拔梯度上,对 29 种蜂鸟的 249 只个体进行了半自然条件下的蛰伏研究。小型鸟类比大型鸟类更有可能使用蛰伏,但只在环境温度较低的情况下,此时蛰伏时间延长。我们还发现了身体状况和能量消耗的代理变量对蛰伏的使用、其特征和影响的影响。我们的研究结果表明,蛰伏的概率在环境中的依赖性和系统发育上的变异有助于理解安第斯蜂鸟在海拔分布上的种系范围模式。