首页> 外文期刊>Evolution: International Journal of Organic Evolution >Smaller beaks for colder winters: Thermoregulation drives beak size evolution in Australasian songbirds
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Smaller beaks for colder winters: Thermoregulation drives beak size evolution in Australasian songbirds

机译:较小的冬天的喙:温度调节驱动澳大利亚歌手的喙大小演变

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Birds’ beaks play a key role in foraging, and most research on their size and shape has focused on this function. Recent findings suggest that beaks may also be important for thermoregulation, and this may drive morphological evolution as predicted by Allen’s rule. However, the role of thermoregulation in the evolution of beak size across species remains largely unexplored. In particular, it remains unclear whether the need for retaining heat in the winter or dissipating heat in the summer plays the greater role in selection for beak size. Comparative studies are needed to evaluate the relative importance of these functions in beak size evolution. We addressed this question in a clade of birds exhibiting wide variation in their climatic niche: the Australasian honeyeaters and allies (Meliphagoidea). Across 158 species, we compared species’ climatic conditions extracted from their ranges to beak size measurements in a combined spatial-phylogenetic framework. We found that winter minimum temperature was positively correlated with beak size, while summer maximum temperature was not. This suggests that while diet and foraging behavior may drive evolutionary changes in beak shape, changes in beak size can also be explained by the beak’s role in thermoregulation, and winter heat retention in particular.
机译:鸟类喙在觅食中发挥着关键作用,大多数对其大小和形状的研究都集中在这个功能上。最近的研究结果表明,喙也可能对热来调节很重要,这可能会推动由艾伦规则预测的形态演变。然而,热调节在喙尺寸的演变中的作用仍然很大程度上是未开发的。特别是,仍然尚不清楚在夏季冬季或散热中散热的需要是否在喙尺寸的选择中发挥着更大的作用。需要比较研究来评估这些功能在喙大小的演变中的相对重要性。我们在鸟类的鸟类中解决了这个问题,这在他们的气候利基呈现了广泛的变化:澳大利亚蜜鳄和盟友(Meliph Hagoidea)。在158种中,我们将物种的气候条件与它们的范围提取到组合的空间 - 系统发育框架中的喙尺寸测量。我们发现冬季最小温度与喙尺寸呈正相关,夏季最大温度不是。这表明,虽然饮食和觅食行为可能在喙形状推动进化变化,但喙大小的变化也可以通过喙在热调节中的作用和特别是冬季热保留来解释。

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