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鸟类歌声进化的生态驱动因素:解析栖息地和形态的影响

Ecological drivers of song evolution in birds: Disentangling the effects of habitat and morphology.

作者信息

Derryberry Elizabeth Perrault, Seddon Nathalie, Derryberry Graham Earnest, Claramunt Santiago, Seeholzer Glenn Fairbanks, Brumfield Robb Thomas, Tobias Joseph Andrew

机构信息

Museum of Natural Science and Department of Biological Sciences Louisiana State University Baton Rouge LA USA.

Department of Ecology and Evolutionary Biology Tulane University New Orleans LA USA.

出版信息

Ecol Evol. 2018 Jan 13;8(3):1890-1905. doi: 10.1002/ece3.3760. eCollection 2018 Feb.

Abstract

Environmental differences influence the evolutionary divergence of mating signals through selection acting either directly on signal transmission ("sensory drive") or because morphological adaptation to different foraging niches causes divergence in "magic traits" associated with signal production, thus indirectly driving signal evolution. Sensory drive and magic traits both contribute to variation in signal structure, yet we have limited understanding of the relative role of these direct and indirect processes during signal evolution. Using phylogenetic analyses across 276 species of ovenbirds (Aves: Furnariidae), we compared the extent to which song evolution was related to the direct influence of habitat characteristics and the indirect effect of body size and beak size, two potential magic traits in birds. We find that indirect ecological selection, via diversification in putative magic traits, explains variation in temporal, spectral, and performance features of song. Body size influences song frequency, whereas beak size limits temporal and performance components of song. In comparison, direct ecological selection has weaker and more limited effects on song structure. Our results illustrate the importance of considering multiple deterministic processes in the evolution of mating signals.

摘要

环境差异通过直接作用于信号传递(“感官驱动”)的选择,或者由于对不同觅食生态位的形态适应导致与信号产生相关的“神奇性状”出现差异,从而间接推动信号进化,进而影响交配信号的进化分歧。感官驱动和神奇性状都对信号结构的变化有贡献,但我们对这些直接和间接过程在信号进化过程中的相对作用了解有限。通过对276种灶鸟(鸟纲:灶鸟科)进行系统发育分析,我们比较了鸣声进化与栖息地特征的直接影响以及体型和喙大小这两个鸟类潜在神奇性状的间接影响之间的关联程度。我们发现,通过假定神奇性状的多样化产生的间接生态选择,解释了鸣声在时间、频谱和表现特征方面的变化。体型影响鸣声频率,而喙大小限制了鸣声的时间和表现成分。相比之下,直接生态选择对鸣声结构的影响较弱且更有限。我们的结果说明了在交配信号进化过程中考虑多个决定性过程的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7ba/5792612/d39dca5741b4/ECE3-8-1890-g001.jpg

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