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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Phenotypic integration of the cervical vertebrae in the Hominoidea (Primates)
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Phenotypic integration of the cervical vertebrae in the Hominoidea (Primates)

机译:颈椎在原主角中的表型整合(灵长类动物)

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Phenotypic integration and modularity represent important factors influencing evolutionary change. The mammalian cervical vertebral column is particularly interesting in regards to integration and modularity because it is highly constrained to seven elements, despite widely variable morphology. Previous research has found a common pattern of integration among quadrupedal mammals, but integration patterns also evolve in response to locomotor selective pressures like those associated with hominin bipedalism. Here, I test patterns of covariation in the cervical vertebrae of three hominoid primates (Hylobates, Pan, Homo) who engage in upright postures and locomotion. Patterns of integration in the hominoid cervical vertebrae correspond generally to those previously found in other mammals, suggesting that integration in this region is highly conserved, even among taxa that engage in novel positional behaviors. These integration patterns reflect underlying developmental as well as functional modules. The strong integration between vertebrae suggests that the functional morphology of the cervical vertebral column should be considered as a whole, rather than in individual vertebrae. Taxa that display highly derived morphologies in the cervical vertebrae are likely exploiting these integration patterns, rather than reorganizing them. Future work on vertebrates without cervical vertebral number constraints will further clarify the evolution of integration in this region.
机译:表型集成和模块化代表了影响进化变革的重要因素。哺乳动物颈椎柱对整合和模块性特别有趣,因为它对七种元素受到高度约束,尽管变化很大。以前的研究发现了四边形哺乳动物之间的常见集成模式,但响应于与原始蛋白双层主义相关的运动选择性压力,整合模式也会发展。在此,我在三种同源物的宫颈椎骨(Hylobates,Pan,Homo)中的调节模式,用于从事直立姿势和运动。同源物颈椎的整合模式通常对其在其他哺乳动物中发现的那些人对应于那些先前发现的那些,这表明该地区的整合是高度保守的,即使在从事新的位置行为的分类群中也是高度保守的。这些集成模式反映了底层的发展以及功能模块。椎骨之间的强烈融合表明宫颈椎间柱的功能形态应视为整体,而不是单独的椎骨。在颈椎中显示高衍生形态的分类群可能利用这些集成模式,而不是重新组织它们。未经颈椎数约束的脊椎动物的未来工作将进一步阐明该地区集成的演变。

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