CSIRO Environment, GPO Box 1700, Canberra, Australian Capital Territory 2601, Australia.
Research School of Biology, Australian National University, Canberra, Australian Capital Territory 0200, Australia.
Proc Biol Sci. 2024 Jan 31;291(2015):20232480. doi: 10.1098/rspb.2023.2480. Epub 2024 Jan 24.
Morphology is integral to body temperature regulation. Recent advances in understanding of thermal physiology suggest a role of the avian bill in thermoregulation. To explore the adaptive significance of bill size for thermoregulation we characterized relationships between bill size and climate extremes. Most previous studies focused on climate means, ignoring frequencies of extremes, and do not reflect thermoregulatory costs experienced over shorter time scales. Using 79 species (9847 museum specimens), we explore how bill size variation is associated with temperature extremes in a large and diverse radiation of Australasian birds, Meliphagides, testing a series of predictions. Overall, across the continent, bill size variation was associated with both climate extremes and means and was most strongly associated with winter temperatures; associations at the level of climate zones differed from continent-wide associations and were complex, yet consistent with physiology and a thermoregulatory role for avian bills. Responses to high summer temperatures were nonlinear suggesting they may be difficult to detect in large-scale continental analyses using previous methodologies. We provide strong evidence that climate extremes have contributed to the evolution of bill morphology in relation to thermoregulation and show the importance of including extremes to understand fine-scale trait variation across space.
形态学是体温调节的重要组成部分。对热生理学的理解的最新进展表明,鸟类喙在体温调节中起作用。为了探索喙大小对体温调节的适应意义,我们研究了喙大小与气候极端事件之间的关系。大多数先前的研究都集中在气候平均值上,忽略了极端值的频率,并且不能反映较短时间尺度上经历的体温调节成本。使用 79 个物种(9847 个博物馆标本),我们探讨了喙大小变化如何与澳大利亚鸟类 Meliphagides 的大范围、多样化辐射中的温度极端事件相关,测试了一系列预测。总体而言,在整个大陆上,喙大小的变化与气候极端值和平均值有关,与冬季温度的关系最密切;气候带的水平上的关系与大陆范围的关系不同,而且复杂,但与生理学和鸟类喙的体温调节作用一致。对夏季高温的反应是非线性的,这表明在使用先前方法的大规模大陆分析中,可能很难检测到这些反应。我们提供了强有力的证据表明,气候极端事件在与体温调节有关的喙形态进化中发挥了作用,并表明包括极端事件对于理解跨空间的细微特征变化非常重要。