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Variation in osteocytes morphology vs bone type in turtle shell and their exceptional preservation from the Jurassic to the present

机译:龟壳中骨细胞形态与骨类型的变化及其从侏罗纪到现在的特殊保存

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Here we describe variations in osteocytes derived from each of the three bone layers that comprise the turtle shell. We examine osteocytes in bone from four extant turtle species to form a morphological 'baseline', and then compare these with morphologies of osteocytes preserved in Cenozoic and Mesozoic fossils. Two different morphotypes of osteocytes are recognized: flattened-oblate osteocytes (FO osteocytes), which are particularly abundant in the internal cortex and lamellae of secondary osteons in cancellous bone, and stellate osteocytes (SO osteocytes), principally present in the interstitial lamellae between secondary osteons and external cortex. We show that the morphology of osteocytes in each of the three bone layers is conserved through ontogeny. We also demonstrate that these morphological variations are phylogenetically independent, as well as independent of the bone origin (intramembranous or endochondral). Preservation of microstructures consistent with osteocytes in the morphology in Cenozoic and Mesozoic fossil turtle bones appears to be common, and occurs in diverse diagenetic environments including marine, freshwater, and terrestrial deposits. These data have potential to illuminate aspects of turtle biology and evolution previously unapproachable, such as estimates of genome size of extinct species, differences in metabolic rates among different bones from a single individual, and potential function of osteocytes as capsules for preservation of ancient biomolecules.
机译:在这里,我们描述了由构成乌龟壳的三个骨层中的每个骨层衍生的骨细胞的变化。我们检查了来自四种现存海龟物种的骨中的骨细胞,形成了形态“基线”,然后将它们与保存在新生代和中生代化石中的骨细胞的形态进行了比较。骨细胞有两种不同的形态类型:扁平扁圆形骨细胞(FO骨细胞),其在松质骨中次生骨的内部皮层和片状细胞中特别丰富;以及星状骨细胞(SO骨细胞),主要存在于次生骨之间的间隙骨和外部皮质。我们表明,通过个体发育,在三个骨层中的每个骨层中的骨细胞形态都是保守的。我们还证明了这些形态学变异在系统发育上是独立的,并且独立于骨骼起源(膜内或软骨内)。在新生代和中生代化石龟骨中,形态上与骨细胞一致的微观结构的保存似乎很普遍,并且发生在包括海洋,淡水和陆地沉积在内的多种成岩环境中。这些数据有可能阐明以前无法进行的海龟生物学和进化方面的情况,例如已灭绝物种的基因组大小估计,单个个体不同骨骼之间新陈代谢速率的差异以及骨细胞作为保存古代生物分子的胶囊的潜在功能。

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