University of Arkansas, Department of Biological Sciences, 650 W. Dickson Street, Fayetteville, AR 72701, USA.
J Exp Biol. 2024 Feb 15;227(4). doi: 10.1242/jeb.247006. Epub 2024 Feb 21.
In nature, many organisms experience a daily range of body temperatures. Thermal performance at stable temperatures is often extrapolated to predict function in cyclical environments. However, temperature order and cyclicity may influence physiological processes. The current study compared energy intake, digestive passage time and energy budgets at a stable temperature (33°C) and two temperature cycles in lizards (Sceloporus consobrinus), to determine (1) whether stable treatments adequately project performance in a cycling environment and (2) whether temperature order influences performance. Cycles had a mean temperature of 33°C, and rotated through 30°C, 33°C and 36°C daily, with equal durations of time at each temperature but differing temperature order, with warm days and cool nights in cycle 1 and cool days and warm nights in cycle 2. For analyses, performance in the stable treatment was compared with that during cycles. If temperature is the primary factor regulating performance, then performance from the stable treatment and cycles should compare favorably. However, physiological performance varied based on temperature treatment. Energy intake and budgets were similar between the stable trial and cycle 1 but not cycle 2. However, passage time did not differ. Notably, the two cycling regimes consistently varied in performance, indicating that temperature order plays a primary role in regulating performance. Physiological data collection requires careful consideration of effects of cycling versus stable temperature treatments. Stable temperatures do not consistently represent performance in cycling regimes and consideration should be paid not only to which temperatures animals experience but also to how temperature is experienced in nature.
在自然界中,许多生物的体温会经历一个日常波动范围。在稳定温度下的热性能通常被外推以预测在周期性环境中的功能。然而,温度顺序和周期性可能会影响生理过程。本研究比较了蜥蜴(Sceloporus consobrinus)在稳定温度(33°C)和两种温度循环下的能量摄入、消化道时间和能量预算,以确定(1)稳定处理是否能充分预测周期性环境中的性能,以及(2)温度顺序是否会影响性能。循环的平均温度为 33°C,每天循环通过 30°C、33°C 和 36°C,每个温度的持续时间相等,但温度顺序不同,循环 1 中白天温暖、夜晚凉爽,而循环 2 中白天凉爽、夜晚温暖。在分析中,将稳定处理的性能与循环中的性能进行比较。如果温度是调节性能的主要因素,那么稳定处理和循环中的性能应该相当。然而,生理性能因温度处理而异。稳定试验与循环 1 的能量摄入和预算相似,但与循环 2 不同。然而,通过时间没有差异。值得注意的是,两种循环模式的性能始终存在差异,这表明温度顺序在调节性能方面起着主要作用。生理数据收集需要仔细考虑循环与稳定温度处理的影响。稳定温度并不总是能代表循环环境中的性能,不仅要考虑动物经历的温度,还要考虑自然环境中温度的体验方式。