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Shifts in cranial integration associated with ecological specialization in pinnipeds (Mammalia Carnivora)

机译:颅骨融合的变化与针尖虫的生态专业化有关(哺乳动物食肉目)

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摘要

Patterns of trait integration reflect the underlying genetic and developmental architecture of morphology and significantly influence the direction of evolution. Nevertheless, the relationship between integration and disparity is complex and unlikely to be uniform across large phylogenetic and ecological scales. To date, there are little data comparing patterns of integration across major ecological transitions, limiting understanding of the processes driving changes in trait integration and their consequences. Here, we investigated patterns of cranial integration and disparity across pinnipeds, three closely related carnivoran families that have undergone a secondary adaptation to the aquatic niche with varying levels of ecological differentiation. With a three-dimensional geometric morphometric dataset of 677 specimens spanning 15 species, we compared five models of trait integration, and examined the effects of sexual dimorphism and allometry on model support. Pinnipeds varied greatly in patterns of cranial integration compared to terrestrial carnivorans. Interestingly, this variation is concentrated in phocids, which may reflect the broader range of ecological and life-history specializations across phocid species, and greater independence from the terrestrial habitat observed in that group, relative to otariids. Overall, these results indicate that major ecological transitions, and presumably large changes in selection pressures, may drive changes in phenotypic trait integration.
机译:性状整合的模式反映了潜在的形态学遗传和发育结构,并极大地影响了进化方向。然而,整合与差异之间的关系是复杂的,并且在大型的系统发育和生态学规模上不可能统一。迄今为止,几乎没有数据可以比较跨主要生态过渡的整合模式,从而限制了对推动性状整合变化及其后果的过程的理解。在这里,我们调查了三个紧密相关的食肉动物科(跨夹齿动物)的颅骨整合和差异的模式,这些食肉动物经历了对水生生态位的二次适应,具有不同程度的生态分化。我们使用15个物种中677个标本的三维几何形态计量数据集,比较了五个特征整合模型,并研究了性二态性和异构性对模型支持的影响。与陆生食肉动物相比,Pinnipeds的颅骨整合模式差异很大。有趣的是,这种变化主要集中在phosids中,这可能反映了整个phocid物种在生态学和生活史方面的专长范围更广,并且相对于otariids,该群体与陆地生境的独立性更高。总体而言,这些结果表明,主要的生态过渡以及选择压力的较大变化,可能会推动表型性状整合的变化。

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