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哺乳动物中颌关节转动的进化起源。

The evolutionary origin of jaw yaw in mammals.

机构信息

University of Chicago, Committee on Evolutionary Biology, Chicago, 60637, USA.

出版信息

Sci Rep. 2017 Mar 21;7:45094. doi: 10.1038/srep45094.

Abstract

Theria comprises all but three living mammalian genera and is one of the most ecologically pervasive clades on Earth. Yet, the origin and early history of therians and their close relatives (i.e., cladotherians) remains surprisingly enigmatic. A critical biological function that can be compared among early mammal groups is mastication. Morphometrics and modeling analyses of the jaws of Mesozoic mammals indicate that cladotherians evolved musculoskeletal anatomies that increase mechanical advantage during jaw rotation around a dorsoventrally-oriented axis (i.e., yaw) while decreasing the mechanical advantage of jaw rotation around a mediolaterally-oriented axis (i.e., pitch). These changes parallel molar transformations in early cladotherians that indicate their chewing cycles included significant transverse movement, likely produced via yaw rotation. Thus, I hypothesize that cladotherian molar morphologies and musculoskeletal jaw anatomies evolved concurrently with increased yaw rotation of the jaw during chewing cycles. The increased transverse movement resulting from yaw rotation may have been a crucial evolutionary prerequisite for the functionally versatile tribosphenic molar morphology, which underlies the molars of all therians and is retained by many extant clades.

摘要

Theria 包含了除了三个现存的哺乳动物属以外的所有哺乳动物,是地球上生态最普遍的类群之一。然而,therians 和它们的近亲(即 cladotherians)的起源和早期历史仍然令人惊讶地神秘。在早期哺乳动物群体中,可以进行比较的一个关键生物学功能是咀嚼。中生代哺乳动物的颌骨形态计量学和建模分析表明,cladotherians 进化出了肌肉骨骼解剖结构,在围绕垂直方向的轴(即偏航)旋转颌骨时增加了机械优势,而在围绕水平方向的轴(即俯仰)旋转颌骨时降低了机械优势。这些变化与早期 cladotherians 的臼齿变化平行,表明它们的咀嚼周期包括了显著的横向运动,可能是通过偏航旋转产生的。因此,我假设 cladotherian 臼齿形态和肌肉骨骼颌骨解剖结构与咀嚼周期中颌骨偏航旋转的增加同时进化。偏航旋转产生的横向运动增加可能是功能多样的三尖齿形态的一个关键进化前提,这种形态构成了所有 therians 的臼齿,并被许多现存的类群保留。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b216/5359619/97f08713a531/srep45094-f1.jpg

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