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首页> 外文期刊>Journal of evolutionary biology >Does vocal learning accelerate acoustic diversification? Evolution of contact calls in Neotropical parrots
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Does vocal learning accelerate acoustic diversification? Evolution of contact calls in Neotropical parrots

机译:声乐学习会促进声音多样化吗?新热带鹦鹉接触电话的演变

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摘要

Learning has been traditionally thought to accelerate the evolutionary change of behavioural traits. We evaluated the evolutionary rate of learned vocalizations and the interplay of morphology and ecology in the evolution of these signals. We examined contact calls of 51 species of Neotropical parrots from the tribe Arini. Parrots are ideal subjects due to their wide range of body sizes and habitats, and their open-ended vocal learning that allows them to modify their calls throughout life. We estimated the evolutionary rate of acoustic parameters of parrot contact calls and compared them to those of morphological traits and habitat. We also evaluated the effect of body mass, bill length, vegetation density and species interactions on acoustic parameters of contact calls while controlling for phylogeny. Evolutionary rates of acoustic parameters did not differ from those of our predictor variables except for spectral entropy, which had a significantly slower rate of evolution. We found support for correlated evolution of call duration, and fundamental and peak frequencies with body mass, and of fundamental frequency with bill length. The degree of sympatry between species did not have a significant effect on acoustic parameters. Our results suggest that parrot contact calls, which are learned acoustic signals, show evolutionary rates similar to those of morphological traits. This is the first study to our knowledge to provide evidence that change through cultural evolution does not necessarily accelerate the evolutionary rate of traits acquired through life-long vocal learning.
机译:传统上认为学习可以加速行为特征的进化变化。我们评估了在这些信号的进化过程中所学发声的进化速率以及形态学和生态学之间的相互作用。我们检查了来自Arini部落的51种新热带鹦鹉的联系电话。鹦鹉是理想的对象,因为它们的身材和栖息地范围广泛,并且具有开放式的声乐学习能力,因此可以在一生中改变自己的声音。我们估计了鹦鹉接触电话的声学参数的演化速度,并将其与形态特征和栖息地的声学参数进行了比较。我们还评估了体重,账单长度,植被密度和物种相互作用对控制系统发育的联系电话声学参数的影响。声学参数的演化速率与我们的预测变量没有什么不同,除了频谱熵,频谱熵的演化速率明显较慢。我们发现支持通话时间,体重的基本频率和峰值频率以及账单长度的基本频率的相关演变。物种之间的共鸣度对声学参数没有显着影响。我们的结果表明,鹦鹉接触电话是一种听觉的声音信号,其进化速率与形态特征相似。这是我们所知的第一项研究,旨在提供证据表明,通过文化进化而发生的变化并不一定会加速通过终身语音学习获得的特质的进化速度。

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