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Correlated evolution of beak morphology and song in the neotropical woodcreeper radiation

机译:新热带木爬行者辐射中喙的形态和鸣叫的相关演变

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Mating signals may diversify as a byproduct of morphological adaptation to different foraging niches, potentially driving speciation. Although many studies have focused on the direct influence of ecological and sexual selection on signal divergence, the role of indirect mechanisms remains poorly understood. Using phenotypic and molecular datasets, we explored the interplay between morphological and vocal evolution in an avian radiation characterized by dramatic beak variation, the Neotropical woodcreepers (Dendrocolaptinae). We found evidence of a trade-off between the rate of repetition of song syllables and frequency bandwidth: slow paced songs had either narrow or wide frequency bandwidths, and bandwidth decreased as song pace increased. This bounded phenotypic space for song structure supports the hypothesis that passerine birds face a motor constraint during song production. Diversification of acoustic characters within this bounded space was correlated with diversification of beak morphology. In particular, species with larger beaks produced slower songs with narrower frequency bandwidths, suggesting that ecological selection on beak morphology influences the diversification of woodcreeper songs. Because songs in turn mediate mate choice and species recognition in birds, these results indicate a broader role for ecology in avian diversification.
机译:交配信号可能多样化,成为形态适应不同觅食生态位的副产品,从而潜在地驱动物种形成。尽管许多研究集中在生态和性别选择对信号发散的直接影响上,但对间接机制的作用仍然知之甚少。使用表型和分子数据集,我们探索了以放射状喙特征为特征的鸟类辐射新热带木爬行者(Dendrocolaptinae)在形态学和声乐进化之间的相互作用。我们发现在歌曲音节的重复率和频率带宽之间存在折衷的证据:节奏缓慢的歌曲具有较窄或较宽的频率带宽,带宽随着歌曲节奏的增加而减小。歌曲结构的有限表型空间支持了以下假设:雀形鸟在歌曲制作过程中会面临运动约束。该有限空间内声学特征的多样化与喙形态的多样化相关。特别是,喙较大的物种产生的歌曲较慢,频率带宽较窄,这表明对喙形态的生态选择会影响cre草者歌曲的多样化。由于歌曲反过来会介导鸟类的择偶和物种识别,因此这些结果表明生态在禽类多样化中具有更广泛的作用。

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