Charles Cyril, Jaeger Jean-Jacques, Michaux Jacques, Viriot Laurent
Laboratoire de Géobiologie, Biochronologie et Paléontologie Humaine, CNRS UMR 6046, Faculté SFA, Université de Poitiers, 40, avenue du Recteur Pineau, 86022 Poitiers Cedex, France.
Naturwissenschaften. 2007 Jan;94(1):71-5. doi: 10.1007/s00114-006-0161-7. Epub 2006 Sep 21.
Observations of dental microwear are used to analyse the correlation between changes in molar tooth crown morphology and the direction of masticatory movement during the evolution of Myodonta (Rodentia, Mammalia). The studied sample includes 36 specimens representing both superfamilies of Myodonta (Muroidea and Dipodoidea) spanning 16 dipodoid and 9 muroid species. Microscopic scratches on occlusal surfaces resulting from contact between opposite teeth during mastication are analysed. Using these features, we determine the direction of masticatory movements. Microwear patterns display diverse orientations among Dipodoidea: oblique in Sicistinae, Euchoreutinae and Zapodinae, propalinal in Dipodinae and intermediary in Allactaginae. Similarly, Muroidea exhibit the following orientations: oblique in Cricetinae and propalinal in Arvicolinae, Cricetomyinae, Gerbillinae and Murinae. These various chewing types illustrate different evolutionary grades within the superfamilies. Acquisition of the antero-posterior masticatory movement in Dipodoidea is related to flattening of the molar occlusal surface. However, in some muroid subfamilies, this direction of mastication is associated with low-crowned and cuspidate molars (Cricetomyinae, Murinae).
通过观察牙齿微磨损情况,分析鼠形亚目(啮齿目,哺乳纲)进化过程中臼齿冠形态变化与咀嚼运动方向之间的相关性。研究样本包括36个标本,代表鼠形亚目的两个总科(鼠总科和跳鼠总科),涵盖16个跳鼠科物种和9个鼠科物种。对咀嚼过程中相对牙齿接触导致的咬合面微观划痕进行分析。利用这些特征,我们确定咀嚼运动的方向。跳鼠总科的微磨损模式呈现出多种方向:在长尾蹶鼠亚科、大蹶鼠亚科和林跳鼠亚科中为斜向,在跳鼠亚科中为前伸,在五趾跳鼠亚科中为中间型。同样,鼠总科呈现出以下方向:在仓鼠亚科中为斜向,在田鼠亚科、大颊鼠亚科、沙鼠亚科和鼠亚科中为前伸。这些不同的咀嚼类型说明了总科内不同的进化等级。跳鼠总科前后向咀嚼运动的获得与臼齿咬合面的变平有关。然而,在一些鼠科亚科中,这种咀嚼方向与低冠和具尖的臼齿有关(大颊鼠亚科、鼠亚科)。