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Morphological adaptation influences the evolution of a mating signal

机译:形态适应影响交配信号的演变

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Theory predicts that forces of natural selection can reduce the intensity of sexually selected traits. In this study, I investigate how morphological adaptation to feeding ecology influences a mating signal. In birds, changes in feeding ecology can cause rapid divergence in bill morphology. Because bills are also important for song production, feeding ecology may influence song divergence. During song, birds can rapidly change vocal tract resonance using bill movement, yet are constrained in rate and magnitude of bill movements resulting in a trade-off between trill rate and frequency bandwidth. Male swamp sparrows vary in their ability to produce rapid, broad-band trills and females prefer more physically demanding songs. Populations of swamp sparrows adapted to the feeding ecology of tidal marshes have larger bills than inland populations. Larger bills should increase the constraints of producing rapid, broad-band trills allowing for a test of how changes in feeding ecology affect a feature of song used in mate choice. I found significant differences in acoustic features of song consistent with the hypothesis that coastal males are less able to meet the physical demands of song production because of the constraints of having larger bills. As possible compensation for decreases in song performance, coastal populations exhibit an increase in song complexity. These changes support the current model of how motor constraints influence song production and suggest a mechanism by which feeding ecology can influence signal evolution.
机译:理论预测,自然选择的力量可以降低性选择特征的强度。在这项研究中,我研究了形态对采食生态的适应如何影响交配信号。在鸟类中,饲喂生态学的变化会导致票据形态迅速分化。由于账单对于歌曲的制作也很重要,因此喂养生态可能会影响歌曲的发散度。在歌唱过程中,鸟类可以利用钞票运动迅速改变声道共鸣,但会限制钞票运动的速度和幅度,从而在颤音速率和频率带宽之间进行权衡。雄性麻雀产生快速宽带颤音的能力各不相同,而雌性则更喜欢体力要求较高的歌曲。适应潮汐沼泽摄食生态的沼泽麻雀种群比内陆种群具有更大的账单。较大的费用应增加生产快速宽带颤音的限制,以便测试喂养生态的变化如何影响伴侣选择中所用歌曲的功能。我发现歌曲的声学特征存在显着差异,这与以下假设相吻合:沿海地区的男性由于费用较高的限制而无法满足歌曲制作的实际需求。为了弥补歌曲性能的下降,沿海人口表现出歌曲复杂性的增加。这些变化支持了当前的模型,即电机约束如何影响歌曲的产生,并提出了一种通过馈送生态学可以影响信号进化的机制。

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