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古颌鸟类(鸟类)蛋壳的微观结构和结晶演变。

Microstructural and crystallographic evolution of palaeognath (Aves) eggshells.

机构信息

Department of Earth Sciences, Montana State University, Bozeman, United States.

Key Laboratory of Vertebrate Evolution and Human Origins of Chinese Academy of Sciences, Institute of Vertebrate Paleontology and Paleoanthropology, Chinese Academy of Sciences, Beijing, China.

出版信息

Elife. 2023 Jan 31;12:e81092. doi: 10.7554/eLife.81092.

Abstract

The avian palaeognath phylogeny has been recently revised significantly due to the advancement of genome-wide comparative analyses and provides the opportunity to trace the evolution of the microstructure and crystallography of modern dinosaur eggshells. Here, eggshells of all major clades of Palaeognathae (including extinct taxa) and selected eggshells of Neognathae and non-avian dinosaurs are analysed with electron backscatter diffraction. Our results show the detailed microstructures and crystallographies of (previously) loosely categorized ostrich-, rhea-, and tinamou-style morphotypes of palaeognath eggshells. All rhea-style eggshell appears homologous, while respective ostrich-style and tinamou-style morphotypes are best interpreted as homoplastic morphologies (independently acquired). Ancestral state reconstruction and parsimony analysis additionally show that rhea-style eggshell represents the ancestral state of palaeognath eggshells both in microstructure and crystallography. The ornithological and palaeontological implications of the current study are not only helpful for the understanding of evolution of modern and extinct dinosaur eggshells, but also aid other disciplines where palaeognath eggshells provide useful archive for comparative contrasts (e.g. palaeoenvironmental reconstructions, geochronology, and zooarchaeology).

摘要

由于基因组范围的比较分析的进展,鸟类古颌类系统发育最近得到了重大修订,为追踪现代恐龙蛋壳的微观结构和结晶学的演化提供了机会。在这里,我们使用电子背散射衍射技术分析了古颌类(包括已灭绝的分类群)的所有主要分支的蛋壳,以及一些新颌类和非鸟恐龙的蛋壳。我们的研究结果显示了(以前)松散归类为鸵鸟型、美洲鸵型和凤头鹦鹉型的古颌类蛋壳的详细微观结构和结晶学特征。所有的美洲鸵型蛋壳似乎都是同源的,而各自的鸵鸟型和凤头鹦鹉型形态则最好被解释为同源的形态(独立获得的)。祖先状态重建和简约分析还表明,在微观结构和结晶学方面,美洲鸵型蛋壳代表了古颌类蛋壳的祖先状态。本研究的鸟类学和古生物学意义不仅有助于理解现代和已灭绝的恐龙蛋壳的演化,而且有助于其他学科,因为古颌类蛋壳为比较对比提供了有用的档案(例如古环境重建、地质年代学和动物考古学)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/768f/9889092/6dfa5dc2da14/elife-81092-fig1.jpg

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