Evolution & Ecology Research Centre, School of Biological, Earth and Environmental Sciences, UNSW Sydney, Sydney, NSW 2052, Australia.
Division of Ecology and Evolution, Research School of Biology, The Australian National University, Canberra, ACT 2600, Australia.
J Exp Biol. 2022 Mar 8;225(Suppl_1). doi: 10.1242/jeb.243369.
During the vulnerable stages of early life, most ectothermic animals experience hourly and diel fluctuations in temperature as air temperatures change. While we know a great deal about how different constant temperatures impact the phenotypes of developing ectotherms, we know remarkably little about the impacts of temperature fluctuations on the development of ectotherms. In this study, we used a meta-analytic approach to compare the mean and variance of phenotypic outcomes from constant and fluctuating incubation temperatures across reptile species. We found that fluctuating temperatures provided a small benefit (higher hatching success and shorter incubation durations) at cool mean temperatures compared with constant temperatures, but had a negative effect at warm mean temperatures. In addition, more extreme temperature fluctuations led to greater reductions in embryonic survival compared with moderate temperature fluctuations. Within the limited data available from species with temperature-dependent sex determination, embryos had a higher chance of developing as female when developing in fluctuating temperatures compared with those developing in constant temperatures. With our meta-analytic approach, we identified average mean nest temperatures across all taxa where reptiles switch from receiving benefits to incurring costs when incubation temperatures fluctuate. More broadly, our study indicates that the impact of fluctuating developmental temperature on some phenotypes in ectothermic taxa are likely to be predictable via integration of developmental temperature profiles with thermal performance curves.
在生命早期的脆弱阶段,大多数变温动物会随着空气温度的变化而经历每小时和每日的温度波动。虽然我们对不同恒定温度如何影响变温动物发育的表型有了很多了解,但我们对温度波动对变温动物发育的影响知之甚少。在这项研究中,我们使用荟萃分析方法比较了爬行动物物种中恒定和波动孵化温度下表型结果的平均值和方差。我们发现,与恒定温度相比,在凉爽的平均温度下,波动温度提供了一个小的好处(更高的孵化成功率和更短的孵化时间),但在温暖的平均温度下则有负面影响。此外,与适度的温度波动相比,更极端的温度波动导致胚胎存活率的更大降低。在具有温度依赖性性别决定的物种中,可用数据有限的情况下,与在恒定温度下发育的胚胎相比,在波动温度下发育的胚胎有更高的机会发育为雌性。通过我们的荟萃分析方法,我们确定了所有爬行动物类群的平均巢温,当孵化温度波动时,爬行动物从受益转变为成本。更广泛地说,我们的研究表明,通过将发育温度曲线与热性能曲线整合,波动的发育温度对某些变温动物类群的某些表型的影响可能是可预测的。