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当同源的牙尖显示出非同源的磨损面时:在鼠科(啮齿目,哺乳动物)牙齿演化过程中,一种咬合重建确保了功能的连续性。

When homologous cusps display non-homologous wear facets: An occlusal reorganization ensures functional continuity during dental evolution of Murinae (Rodentia, Mammalia).

机构信息

Steinmann-Institut, Paläontologie, Universität Bonn, Nussallee 8, 53115 Bonn, Germany.

出版信息

Arch Oral Biol. 2011 Feb;56(2):194-204. doi: 10.1016/j.archoralbio.2010.09.011.

Abstract

OBJECTIVE

This study was designed to interpret the differences between the occlusal relationships in the murine rodents and those in their Miocene "cricetodont" ancestors. It aimed at understanding the functional transformations that led to the emergence of the peculiar chewing motion of the Murinae, associating forwardly directed masticatory movements to cusp interlocking, a trait unique amongst mammals.

METHODS

Microwear analyses and simulations of occlusion achieved with size-increased 3D printings of teeth crafted from 3D data obtained by X-ray synchrotron microtomography at the European synchrotron radiation facility allow us to carefully interpret the occlusal relationships in Muroidea.

RESULTS

A rotation of the direction of the chewing movements occurred from "Cricetodontinae" to Murinae. This rotation emerged without any cusp removal contrary to previous interpretations, by the way of an occlusal reorganization involving a loss of contacts between some cusps, offset by a contact with other cusps. This new organization was already present in the early and middle Miocene genus Potwarmus.

CONCLUSION

Molar tooth evolution in Murinae was characterized by the preservation and the reshaping of the primitive muroid cusps, the acquisition of supplementary cusps, and changes in the contacts between the opposite cusps. During evolution, changes of cusp patterns in upper and lower molar teeth are coordinated in order to retain a functional occlusion. Because of this functional constraint, one cusp was supposed to more likely occlude with the same opposite cusps during evolution, and therefore homologous cusps would always carry homologous attrition facets. Evolution of Murinae proves that functional continuity can also be preserved through changes in occlusal relationships independently from cusp removal.

摘要

目的

本研究旨在解释鼠形亚目动物的咬合关系与它们中新世“仓鼠科”祖先之间的差异。目的是理解导致鼠科动物特有的咀嚼运动出现的功能转变,这种运动将向前的咀嚼运动与尖牙锁结联系起来,这是哺乳动物特有的特征。

方法

通过使用 X 射线同步加速器微断层扫描在欧洲同步加速器辐射设施获得的 3D 数据制作的牙齿的尺寸增大的 3D 打印品进行的微磨损分析和咬合模拟,使我们能够仔细解释鼠形亚目动物的咬合关系。

结果

咀嚼运动的方向从“仓鼠科”到鼠科发生了旋转。这种旋转的出现并没有像以前的解释那样通过去除尖牙来实现,而是通过一种涉及一些尖牙之间的接触丧失的咬合重新组织,通过与其他尖牙接触来弥补。这种新的组织已经存在于中新世早期和中期的属 Potwarmus 中。

结论

鼠科动物的臼齿进化的特征是原始鼠形亚目的尖牙的保存和重塑、获得补充的尖牙以及对相对尖牙之间的接触的改变。在进化过程中,上下臼齿的尖牙模式的变化是协调的,以保持功能的咬合。由于这种功能限制,一个尖牙在进化过程中更有可能与相同的相对尖牙咬合,因此同源尖牙将始终带有同源的磨损面。鼠科动物的进化证明,功能连续性也可以通过独立于尖牙去除的咬合关系的变化来保留。

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