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首页> 外文期刊>Mammalia: Morphologie, Biologie Systematique des Mammiferes. >Phylogeny, adaptation and mandible shape in Sciuridae (Rodentia, Mammalia)
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Phylogeny, adaptation and mandible shape in Sciuridae (Rodentia, Mammalia)

机译:针形科的系统发育,适应性和下颌骨形状(Rodentia,哺乳动物)

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摘要

Morphological diversity in the sciurid family was analysed by applying geometric morphometry ( Fourier transform) to the mandible outline. The results obtained showed that phylogeny and ecology had a prominent role in shaping the mandible. Three distinct extreme forms are recognised illustrated by Marmota, dwarf tree squirrels and dwarf flying squirrels, respectively. Contrary to the mandible of the dwarf flying squirrel, the dwarf tree squirrel mandible does not have a developed coronoid process, while Marmota mandible is rather elongated. Tooth morphology, as well as chewing direction, studied by microwear analysis were only slightly variable and had no clear impact on the shape of the mandible. A study of the mandible of the Early Oligocene European squirrel Palaeosciurus goti did not contradict a preliminary interpretation ( based on its limbs) that it had been a ground dweller, despite the fact that its mandible still exhibits a primitive outline.
机译:通过对下颌骨轮廓应用几何形态计量学(傅里叶变换)分析了鳞甲科的形态多样性。获得的结果表明,系统发育和生态学对下颌骨的成形具有重要作用。 Marmota,矮树松鼠和矮小飞鼠分别识别出三种不同的极端形式。与矮小的flying鼠的下颌骨相反,矮树的鼠的下颌骨没有发达的冠状突,而Marmota的下颌骨则拉长了。通过微磨损分析研究的牙齿形态以及咀嚼方向仅略有变化,并且对下颌骨的形状没有明显影响。对早期渐新世欧洲松鼠下颌骨的研究与基于其肢体的初步解释(基于其四肢)并没有矛盾,尽管事实上其下颌骨仍具有原始轮廓。

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