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巨齿鲨牙齿的生物力学研究(Lamniformes:Otodontidae)。

Biomechanical insights into the dentition of megatooth sharks (Lamniformes: Otodontidae).

机构信息

Shool of Earth Sciences, University of Bristol, Bristol, BS8 1RJ, UK.

出版信息

Sci Rep. 2021 Jan 13;11(1):1232. doi: 10.1038/s41598-020-80323-z.

Abstract

The evolution of gigantism in extinct otodontid sharks was paralleled by a series of drastic modifications in their dentition including widening of the crowns, loss of lateral cusplets, and acquisition of serrated cutting edges. These traits have generally been interpreted as key functional features that enabled the transition from piscivory to more energetic diets based on marine mammals, ultimately leading to the evolution of titanic body sizes in the most recent forms (including the emblematic Otodus megalodon). To investigate this hypothesis, we evaluate the biomechanics of the anterior, lateral, and posterior teeth of five otodontid species under different loading conditions by using two-dimensional finite element analysis. Stress distribution patterns are remarkably similar among all models under puncture and draw (i.e., when subjected to vertical and lateral forces, respectively). Contrary to expectation, higher average stress values are detected under both loading scenarios in more recent species. Altogether, this suggests little correlation between tooth morphology and key aspects of biomechanical behaviour in otodontids, making it difficult to frame the morphological trend of their dentitions within an adaptive scenario. We propose that this pattern most likely emerged as a non-functional by-product of heterochronic processes driven by selection towards larger body sizes.

摘要

灭绝的齿鲨属鲨鱼的巨型化进化与一系列牙齿的剧烈变化平行,包括冠部变宽、侧小尖消失以及锯齿状切缘的形成。这些特征通常被解释为关键的功能特征,使它们能够从以鱼类为食转变为更具活力的以海洋哺乳动物为食的饮食,最终导致在最近的形式中(包括标志性的巨齿鲨)进化出巨大的体型。为了验证这一假说,我们通过二维有限元分析,评估了五种齿鲨属物种的前牙、侧牙和后牙在不同载荷条件下的生物力学特性。在穿刺和拉伸(即分别受到垂直和侧向力)的情况下,所有模型的应力分布模式都非常相似。出乎意料的是,在两种加载情况下,最近的物种的平均应力值都更高。总的来说,这表明齿鲨属的牙齿形态与生物力学行为的关键方面之间几乎没有相关性,使得很难在适应的背景下解释其牙齿形态的趋势。我们提出,这种模式很可能是由选择朝向更大体型的异时性过程驱动的非功能副产品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53f5/7806677/35c4095964af/41598_2020_80323_Fig1_HTML.jpg

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