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Assessing the predictive taxonomic power of the bony labyrinth 3D shape in horses, donkeys and their F1-hybrids

机译:评估马匹,驴及其F1杂种中骨迷宫3D形状的预测分类力

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摘要

Horses and donkeys have had a far-reaching impact on human history, providing mechanical power for agriculture and transportation. Their F1-hybrids, especially mules, have also been of considerable importance due to their exceptional strength, endurance and resistance. The reconstruction of the respective role that horses, donkeys and mules played in past societies requires prior identification of their osseous elements in archaeological assemblages. This, however, remains difficult on the basis of morphological data alone and in the absence of complete skeletal elements. While DNA sequencing provides almost certain identification success, this approach requires dedicated infrastructure and sufficient ancient DNA (aDNA) preservation. Here, we assessed the performance of a cost-effective alternative approach based on geometric morphometric (GMM) analysis of the bony labyrinth, a structure carried within the petrosal bone. This extremely compact osseous structure provides good aDNA preservation and is frequently found in archaeological assemblages. To assess the GMM performance, we first used High-throughput DNA sequencing to identify 41 horses, 24 donkeys, 36 mules and one hinny from 11 archaeological sites from France and Turkey spanning different time periods. This provided a panel of 102 ancient equine remains for micro-computed tomography (microCT) and GMM assessment of the variation of the bony labyrinth shape, including the cochlea and the semicircular canals. Our new method shows good-to-excellent prediction rates (85.7%-95.2%) for the identification of species and hybrids when considering the cochlea and semicircular canals together. It provides a cheap, non-destructive alternative to aDNA for the taxonomic identification of past equine assemblages.
机译:马和驴对人类历史产生了深远的影响,为农业和交通提供了机械动力。他们的F1杂交种,尤其是骡子,由于其非凡的力量、耐力和抵抗力,也具有相当重要的意义。要重建马、驴和骡子在过去社会中各自扮演的角色,需要事先在考古组合中确定它们的骨性成分。然而,仅以形态学数据为基础,在缺乏完整骨骼元素的情况下,这仍然很困难。虽然DNA测序提供了几乎肯定的鉴定成功,但这种方法需要专门的基础设施和足够的古代DNA(aDNA)保存。在这里,我们基于对骨迷路的几何形态计量学(GMM)分析,评估了一种经济高效的替代方法的性能,骨迷路是一种在岩骨内携带的结构。这种极其紧密的骨结构提供了良好的aDNA保存,经常在考古组合中发现。为了评估GMM的性能,我们首先使用高通量DNA测序,从法国和土耳其跨越不同时期的11个考古遗址中鉴定了41匹马、24头驴、36头骡子和一头海尼。计算机断层扫描(包括GMM)和耳蜗显微形态的评估。当考虑耳蜗和半规管时,我们的新方法对物种和杂交种的识别显示出良好的预测率(85.7%-95.2%)。它提供了一种廉价的、非破坏性的aDNA替代品,用于对过去的马类组合进行分类鉴定。

著录项

  • 来源
    《Journal of Archaeological Science》 |2021年第1期|共12页
  • 作者单位

    Univ Toulouse 3 Ctr Anthropobiol &

    Genom Toulouse Univ Paul Sabatier CNRS UMR 5288 F-31000 Toulouse France;

    Univ Toulouse 3 Ctr Anthropobiol &

    Genom Toulouse Univ Paul Sabatier CNRS UMR 5288 F-31000 Toulouse France;

    Univ Toulouse 3 Ctr Anthropobiol &

    Genom Toulouse Univ Paul Sabatier CNRS UMR 5288 F-31000 Toulouse France;

    Univ Toulouse 3 Ctr Anthropobiol &

    Genom Toulouse Univ Paul Sabatier CNRS UMR 5288 F-31000 Toulouse France;

    Univ Toulouse 3 Ctr Anthropobiol &

    Genom Toulouse Univ Paul Sabatier CNRS UMR 5288 F-31000 Toulouse France;

    Univ Toulouse 3 Ctr Anthropobiol &

    Genom Toulouse Univ Paul Sabatier CNRS UMR 5288 F-31000 Toulouse France;

    Univ Toulouse 3 Ctr Anthropobiol &

    Genom Toulouse Univ Paul Sabatier CNRS UMR 5288 F-31000 Toulouse France;

    Univ Paris Saclay Inst Biol Francois Jacob Commissariat Energie Atom CEA Genoscope Evry France;

    Univ Paris Saclay Univ Evry Inst Biol Francois Jacob CNRS Genom Metab Genoscope CEA Evry France;

    Univ Paris Saclay Univ Evry Inst Biol Francois Jacob CNRS Genom Metab Genoscope CEA Evry France;

    Istanbul Univ Cerrahpasa Fac Vet Med Osteoarchaeol Practice &

    Res Ctr TR-34320 Istanbul Turkey;

    Alliance Sorbonne Univ Ctr Natl Rech Sci CNRS Museum Natl Hist Nat MNHN UMR7209 Archeozool Archeobot Soc Prat &

    Environm Paris France;

    Alliance Sorbonne Univ Ctr Natl Rech Sci CNRS Museum Natl Hist Nat MNHN UMR7209 Archeozool Archeobot Soc Prat &

    Environm Paris France;

    Univ Toulouse 3 Ctr Anthropobiol &

    Genom Toulouse Univ Paul Sabatier CNRS UMR 5288 F-31000 Toulouse France;

    Univ Toulouse 3 Ctr Anthropobiol &

    Genom Toulouse Univ Paul Sabatier CNRS UMR 5288 F-31000 Toulouse France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 文物考古;
  • 关键词

    Geometric morphometry; Equid hybrids; Bony labyrinth; Ancient DNA; Zonkey;

    机译:几何形态学;Equid混合动力车;骨迷宫;古代DNA;Zonkey;

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