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A distinct reed bunting dawn song and its relation to extrapair paternity

机译:一首独特的芦苇彩旗黎明歌曲及其与双亲亲子关系

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摘要

Elaborate birdsong is thought to have evolved under sexual selection. Extrapair mating can enforce sexual selection and thus the selection of song traits. We investigated song rate and song diversity, two song traits previously shown to be under sexual selection, in relation to paternity success in the reed bunting, Emberiza schoeniclus, a species with high levels of extrapair paternity. We focused our investigations on songs sung during the dawn chorus because singing at dawn is likely to be an honest signal and there is increasing evidence that females engage in extrapair copulations early in the morning. We classified a previously denoted continuous song, which is mainly sung during the dawn chorus, as a new song type in this species. Males with high song rate and high song diversity were more likely to gain extrapair paternity. These two song traits were also positively related to the number of extrapair offspring sired. However, most of the variance in extrapair paternity success was explained by age. Old males sired significantly more extrapair young than young males. Possibly, the new song type plays an important role in the female choice of extrapair mates. Reed bunting females may prefer males that sing at high rates and with high diversity because this indicates high phenotypic and genetic quality. Alternatively, these song parameters may be linked to other sexually selected traits or be important in the intersexual competition for extrapair fertilizations.
机译:精心制作的鸟鸣被认为是根据性选择进化而来的。 Extrapair交配可以强制选择性别,从而选择歌曲特征。我们调查了歌曲速率和歌曲多样性,这是先前显示为处于性别选择之下的两个歌曲特征,与芦苇彩旗Emberiza schoeniclus(一种伴有较高配对亲子关系的物种)的亲子关系成功有关。我们将调查的重点放在黎明合唱期间演唱的歌曲上,因为黎明时唱歌可能是一个诚实的信号,并且越来越多的证据表明,雌性在清晨参与超配对交配。我们将之前提到的连续歌曲(该歌曲主要在黎明合唱期间演唱)分类为该物种中的一种新歌曲。高歌曲率和高歌曲多样性的男性更有可能获得额外的父权。这两个歌曲特征也与所配对的超配对后代的数量呈正相关。然而,绝对陪伴成功的大多数差异是由年龄来解释的。年长的男性比年轻的男性生出更多的配对。可能,新歌曲类型在女性选择极好的伴侣中起重要作用。里德旗ting的雌性可能更喜欢以高速率和高多样性唱歌的雄性,因为这表明表型和遗传素质很高。或者,这些歌曲参数可能与其他性选择的性状相关,或在异性竞争中对成对配对受精很重要。

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