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热带歌唱鼠歌声的地理变异:检验漂变和局部适应的相对重要性。

Geographic variation in the songs of neotropical singing mice: testing the relative importance of drift and local adaptation.

机构信息

Department of Biology, University of Florida, Gainesville, Florida 32611, USA.

出版信息

Evolution. 2010 Jul;64(7):1955-72. doi: 10.1111/j.1558-5646.2010.00962.x. Epub 2010 Feb 9.

Abstract

Patterns of geographic variation in communication systems can provide insight into the processes that drive phenotypic evolution. Although work in birds, anurans, and insects demonstrates that acoustic signals are sensitive to diverse selective and stochastic forces, processes that shape variation in mammalian vocalizations are poorly understood. We quantified geographic variation in the advertisement songs of sister species of singing mice, montane rodents with a unique mode of vocal communication. We tested three hypotheses to explain spatial variation in the song of the lower altitude species, Scotinomys teguina: selection for species recognition in sympatry with congener, S. xerampelinus, acoustic adaptation to different environments, and stochastic divergence. Mice were sampled at seven sites in Costa Rica and Panamá; genetic distances were estimated from mitochondrial control region sequences, between-site differences in acoustic environment were estimated from climatic data. Acoustic, genetic and geographic distances were all highly correlated in S. teguina, suggesting that population differentiation in song is largely shaped by genetic drift. Contrasts between interspecific genetic-acoustic distances were significantly greater than expectations derived from intraspecific contrasts, indicating accelerated evolution of species-specific song. We propose that, although much intraspecific acoustic variation is effectively neutral, selection has been important in shaping species differences in song.

摘要

地理上通讯系统的变化模式可以帮助我们了解推动表型进化的过程。尽管鸟类、两栖动物和昆虫的研究表明,声音信号对各种选择和随机因素很敏感,但哺乳动物发声变化的形成过程还知之甚少。我们量化了歌唱鼠姐妹种的求偶歌曲的地理变化,这些老鼠是具有独特发声交流方式的高山啮齿动物。我们提出了三个假说来解释海拔较低的物种——斯科特氏鸣鼠(Scotinomys teguina)的歌声的空间变化:与同种的 X 鸣鼠(S. xerampelinus)在同域时进行物种识别的选择、对不同环境的声音适应,以及随机分歧。我们在哥斯达黎加和巴拿马的七个地点对老鼠进行了采样;从线粒体控制区序列估计遗传距离,从气候数据估计声环境的站点间差异。在 S. teguina 中,声学、遗传和地理距离都高度相关,这表明歌曲中的种群分化在很大程度上是由遗传漂变塑造的。种间遗传-声学距离的对比明显大于从种内对比中得出的预期,这表明物种特异性歌曲的进化速度加快。我们提出,尽管许多种内声学变化实际上是中性的,但选择在塑造物种间的歌曲差异方面一直很重要。

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