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哺乳动物椎骨的差异缩放模式与颈部长度的演化

Differential scaling patterns of vertebrae and the evolution of neck length in mammals.

作者信息

Arnold Patrick, Amson Eli, Fischer Martin S

机构信息

Institut für Spezielle Zoologie und Evolutionsbiologie mit Phyletischem Museum, Friedrich-Schiller-Universität Jena, Erbert-Straße 1, D-07743, Jena, Germany.

Department of Human Evolution, Max Planck Institute for Evolutionary Anthropology, Deutscher Platz 6, D-04103, Leipzig, Germany.

出版信息

Evolution. 2017 Jun;71(6):1587-1599. doi: 10.1111/evo.13232. Epub 2017 Apr 13.

Abstract

Almost all mammals have seven vertebrae in their cervical spines. This consistency represents one of the most prominent examples of morphological stasis in vertebrae evolution. Hence, the requirements associated with evolutionary modifications of neck length have to be met with a fixed number of vertebrae. It has not been clear whether body size influences the overall length of the cervical spine and its inner organization (i.e., if the mammalian neck is subject to allometry). Here, we provide the first large-scale analysis of the scaling patterns of the cervical spine and its constituting cervical vertebrae. Our findings reveal that the opposite allometric scaling of C1 and C2-C7 accommodate the increase of neck bending moment with body size. The internal organization of the neck skeleton exhibits surprisingly uniformity in the vast majority of mammals. Deviations from this general pattern only occur under extreme loading regimes associated with particular functional and allometric demands. Our results indicate that the main source of variation in the mammalian neck stems from the disparity of overall cervical spine length. The mammalian neck reveals how evolutionary disparity manifests itself in a structure that is otherwise highly restricted by meristic constraints.

摘要

几乎所有哺乳动物的颈椎都有七块椎骨。这种一致性是椎骨进化中形态停滞最显著的例子之一。因此,颈部长度进化改变所涉及的要求必须在固定数量的椎骨下得到满足。目前尚不清楚体型是否会影响颈椎的整体长度及其内部结构(即哺乳动物的颈部是否存在异速生长)。在此,我们首次对颈椎及其组成颈椎的缩放模式进行了大规模分析。我们的研究结果表明,第一颈椎(C1)和第二至第七颈椎(C2 - C7)的异速缩放相反,以适应随着体型增大而增加的颈部弯矩。在绝大多数哺乳动物中,颈部骨骼的内部结构表现出惊人的一致性。只有在与特定功能和异速生长需求相关的极端负荷情况下,才会出现偏离这种一般模式的情况。我们的结果表明,哺乳动物颈部变异的主要来源在于颈椎整体长度的差异。哺乳动物的颈部揭示了进化差异如何在一个原本受到数量限制高度约束的结构中表现出来。

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