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多样的沙漠啮齿动物中伪装的重复进化。

Repeated evolution of camouflage in speciose desert rodents.

机构信息

CIBIO-InBIO Associate Laboratory, Research Center in Biodiversity and Genetic Resources, University of Porto, Vairão, 4485-661, Portugal.

Department of Biology, Faculty of Science, University of Porto, Rua Campo Alegre, 4169-007, Porto, Portugal.

出版信息

Sci Rep. 2017 Jun 14;7(1):3522. doi: 10.1038/s41598-017-03444-y.

Abstract

There are two main factors explaining variation among species and the evolution of characters along phylogeny: adaptive change, including phenotypic and genetic responses to selective pressures, and phylogenetic inertia, or the resemblance between species due to shared phylogenetic history. Phenotype-habitat colour match, a classic Darwinian example of the evolution of camouflage (crypsis), offers the opportunity to test the importance of historical versus ecological mechanisms in shaping phenotypes among phylogenetically closely related taxa. To assess it, we investigated fur (phenotypic data) and habitat (remote sensing data) colourations, along with phylogenetic information, in the species-rich Gerbillus genus. Overall, we found a strong phenotype-habitat match, once the phylogenetic signal is taken into account. We found that camouflage has been acquired and lost repeatedly in the course of the evolutionary history of Gerbillus. Our results suggest that fur colouration and its covariation with habitat is a relatively labile character in mammals, potentially responding quickly to selection. Relatively unconstrained and substantial genetic basis, as well as structural and functional independence from other fitness traits of mammalian colouration might be responsible for that observation.

摘要

有两个主要因素可以解释物种间的变异和特征沿系统发育的进化

适应性变化,包括对选择压力的表型和遗传反应,以及系统发育惯性,即由于共同的系统发育历史而导致的物种之间的相似性。表型-生境颜色匹配是伪装(拟态)进化的一个经典达尔文例子,它为测试历史机制与生态机制在塑造亲缘关系密切的分类群的表型方面的重要性提供了机会。为了评估这一点,我们调查了在物种丰富的沙鼠属中,皮毛(表型数据)和生境(遥感数据)的颜色,以及系统发育信息。总的来说,我们发现,一旦考虑到系统发育信号,就存在强烈的表型-生境匹配。我们发现,在沙鼠属的进化历史中,伪装已经被多次获得和失去。我们的结果表明,皮毛颜色及其与生境的协同变化是哺乳动物中一个相对不稳定的特征,可能对选择反应迅速。哺乳动物颜色的相对不受限制和大量的遗传基础,以及与其他适应度特征的结构和功能独立性,可能是造成这种现象的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f62/5471182/c032dab96448/41598_2017_3444_Fig1_HTML.jpg

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