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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Evolution of morphological integration in the skull of Carnivora (Mammalia): Changes in Canidae lead to increased evolutionary potential of facial traits
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Evolution of morphological integration in the skull of Carnivora (Mammalia): Changes in Canidae lead to increased evolutionary potential of facial traits

机译:肉瘤(哺乳动物)颅骨形态整合的演变(Mammalia):CANIDAE的变化导致面部特征的进化潜力增加

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摘要

Morphological integration refers to the fact that different phenotypic traits of organisms are not fully independent from each other, and tend to covary to different degrees. The covariation among traits is thought to reflect properties of the species' genetic architecture and thus can have an impact on evolutionary responses. Furthermore, if morphological integration changes along the history of a group, inferences of past selection regimes might be problematic. Here, we evaluated the stability and evolution of the morphological integration of skull traits in Carnivora by using evolutionary simulations and phylogenetic comparative methods. Our results show that carnivoran species are able to respond to natural selection in a very similar way. Our comparative analyses show that the phylogenetic signal for pattern of integration is lower than that observed for morphology (trait averages), and that integration was stable throughout the evolution of the group. That notwithstanding, Canidae differed from other families by having higher integration, evolvability, flexibility, and allometric coefficients on the facial region. These changes might have allowed canids to rapidly adapt to different food sources, helping to explain not only the phenotypic diversification of the family, but also why humans were able to generate such a great diversity of dog breeds through artificial selection.
机译:形态学的一体化是指有机体的不同表型性状并不完全独立于彼此,并且倾向于对不同程度的科学。特征之间的协调被认为反映了物种遗传架构的特性,因此可能对进化反应产生影响。此外,如果沿着群体历史的形态集成变化,过去的选择制度的推论可能是有问题的。在这里,我们通过使用进化模拟和系统发育比较方法评估了肉毒藻颅脑形态整合的稳定性和演变。我们的研究结果表明,肉食植物物种能够以非常相似的方式响应自然选择。我们的比较分析表明,整合模式的系统发育信号低于形态学(特质平均值)的系统发育信号,并且整合在整个组的进化过程中稳定。尽管如此,CanIdae通过在面部区域上具有更高的集成,进度,柔韧性和各种系数来与其他家庭不同。这些变化可能使CANID迅速适应不同的食物来源,不仅帮助解释家庭的表型多样化,而且为什么人类能够通过人工选择产生如此巨大的狗品种。

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