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Letting the ‘cat’ out of the bag: pouch young development of the extinct Tasmanian tiger revealed by X-ray computed tomography

机译:让猫脱颖而出:X射线计算机断层扫描揭示了已灭绝的塔斯马尼亚虎的年轻发育

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摘要

The Tasmanian tiger or thylacine (Thylacinus cynocephalus) was an iconic Australian marsupial predator that was hunted to extinction in the early 1900s. Despite sharing striking similarities with canids, they failed to evolve many of the specialized anatomical features that characterize carnivorous placental mammals. These evolutionary limitations are thought to arise from functional constraints associated with the marsupial mode of reproduction, in which otherwise highly altricial young use their well-developed forelimbs to climb to the pouch and mouth to suckle. Here we present the first three-dimensional digital developmental series of the thylacine throughout its pouch life using X-ray computed tomography on all known ethanol-preserved specimens. Based on detailed skeletal measurements, we refine the species growth curve to improve age estimates for the individuals. Comparison of allometric growth trends in the appendicular skeleton (fore- and hindlimbs) with that of other placental and marsupial mammals revealed that despite their unique adult morphologies, thylacines retained a generalized early marsupial ontogeny. Our approach also revealed mislabelled specimens that possessed large epipubic bones (vestigial in thylacine) and differing vertebral numbers. All of our generated CT models are publicly available, preserving their developmental morphology and providing a novel digital resource for future studies of this unique marsupial.
机译:塔斯马尼亚虎或胸苷(Thylacinus cynocephalus)是澳大利亚有袋动物的标志性捕食者,于1900年代初被捕杀。尽管与犬科动物具有惊人的相似性,但它们仍未能发展出许多食肉胎盘哺乳动物的特殊解剖学特征。这些进化上的局限性被认为是与有袋繁殖模式有关的功能性限制所引起的,否则,其他高度戒酒的年轻人会利用其发达的前肢爬到袋和嘴上吮吸。在这里,我们在所有已知的保存乙醇的标本上使用X射线计算机断层扫描技术,介绍了甲状腺素在囊袋整个生命周期中的第一个三维数字显影系列。基于详细的骨骼测量,我们细化物种生长曲线以改善个体的年龄估计。比较阑尾骨骼(前肢和后肢)与其他胎盘和有袋哺乳动物的异速生长趋势,发现尽管有独特的成年形态,胸苷仍保留了一般的有袋早期个体。我们的方法还揭示了标签错误的标本,这些标本具有大的耻骨(在胸腺嘧啶中为检骨)和不同的椎骨数目。我们生成的所有CT模型都是公开可用的,可以保留它们的发育形态,并为这种有袋动物的进一步研究提供新颖的数字资源。

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