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芝加哥始祖鸟揭示了鸟类基本形态的早期演化。

Chicago Archaeopteryx informs on the early evolution of the avian bauplan.

作者信息

O'Connor Jingmai, Clark Alexander, Kuo Pei-Chen, Kiat Yosef, Fabbri Matteo, Shinya Akiko, Van Beek Constance, Lu Jing, Wang Min, Hu Han

机构信息

Negaunee Integrative Research Center, Field Museum of Natural History, Chicago, IL, USA.

Committee on Evolutionary Biology, University of Chicago, Chicago, IL, USA.

出版信息

Nature. 2025 May;641(8065):1201-1207. doi: 10.1038/s41586-025-08912-4. Epub 2025 May 14.

DOI:10.1038/s41586-025-08912-4
PMID:40369075
Abstract

Here we report on the nearly complete and uncrushed 14th specimen of Archaeopteryx. Exceptional preservation and preparation guided by micro-computed tomographic data make this one of the best exemplars of this iconic taxon, preserving important data regarding skeletal transformation and plumage evolution in relation to the acquisition of flight during early avian evolution. The ventrolaterally exposed skull reveals a palatal morphology intermediate between troodontids and crownward Cretaceous birds. Modifications of the skull reflect the shift towards a less rigid cranial architecture in archaeopterygids from non-avian theropods. The complete vertebral column reveals paired proatlases and a tail longer than previously recognized. Skin traces on the right major digit of the hand suggest that the minor digit was free and mobile distally, contrary to previous interpretations. The morphology of the foot pads indicates that they were adapted for non-raptorial terrestrial locomotion. Specialized inner secondary feathers called tertials are observed on both wings. Humeral tertials are absent in non-avian dinosaurs closely related to birds, suggesting that these feathers evolved for flight, creating a continuous aerodynamic surface. These new findings clarify the mosaic of traits present in Archaeopteryx, refine ecological predictions and elucidate the unique evolutionary history of the Archaeopterygidae, providing clues regarding the ancestral avian condition.

摘要

在此,我们报告始祖鸟近乎完整且未受压碎的第14号标本。在微计算机断层扫描数据引导下进行的特殊保存和标本制备,使其成为这一标志性分类单元的最佳标本之一,保存了有关早期鸟类演化过程中骨骼转变和羽毛进化与飞行获得相关的重要数据。腹侧外露的头骨显示出介于伤齿龙类和白垩纪晚期鸟类之间的腭部形态。头骨的变化反映了始祖鸟从非鸟类兽脚亚目恐龙向颅骨结构不那么僵硬的方向转变。完整的脊柱显示出成对的寰椎前节和一条比先前认为的更长的尾巴。手部右主指上的皮肤痕迹表明,小指在远端是自由且可活动的,这与之前的解释相反。脚垫的形态表明它们适应非猛禽式的陆地运动。在双翅上均观察到了特殊的内侧次级羽毛,即三级飞羽。与鸟类亲缘关系较近的非鸟类恐龙没有肱骨三级飞羽,这表明这些羽毛是为飞行而演化的,形成了一个连续的空气动力学表面。这些新发现阐明了始祖鸟所具有的一系列特征,完善了生态预测,并阐明了始祖鸟科独特的演化历史,为鸟类祖先的状况提供了线索。

相似文献

1
Chicago Archaeopteryx informs on the early evolution of the avian bauplan.芝加哥始祖鸟揭示了鸟类基本形态的早期演化。
Nature. 2025 May;641(8065):1201-1207. doi: 10.1038/s41586-025-08912-4. Epub 2025 May 14.
2
Barb geometry of asymmetrical feathers reveals a transitional morphology in the evolution of avian flight.不对称羽毛的羽枝几何结构揭示了鸟类飞行进化中的一种过渡形态。
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New specimen of Archaeopteryx provides insights into the evolution of pennaceous feathers.新的始祖鸟标本为羽毛的演化提供了新见解。
Nature. 2014 Jul 3;511(7507):79-82. doi: 10.1038/nature13467.
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The avian nature of the brain and inner ear of Archaeopteryx.始祖鸟大脑和内耳的鸟类特征。
Nature. 2004 Aug 5;430(7000):666-9. doi: 10.1038/nature02706.
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A pre-Archaeopteryx troodontid theropod from China with long feathers on the metatarsus.来自中国的一种始祖鸟之前的伤齿龙科兽脚亚目恐龙,其跖骨上有长羽毛。
Nature. 2009 Oct 1;461(7264):640-3. doi: 10.1038/nature08322.
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Mosaic evolution in an asymmetrically feathered troodontid dinosaur with transitional features.具有过渡特征的不对称羽毛驰龙类恐龙中的镶嵌进化。
Nat Commun. 2017 May 2;8:14972. doi: 10.1038/ncomms14972.
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Ultraviolet light illuminates the avian nature of the Berlin Archaeopteryx skeleton.紫外线照亮了柏林始祖鸟骨骼的鸟类特征。
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本文引用的文献

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Effects of wing damage and moult gaps on vertebrate flight performance.翼损伤和换羽间隙对脊椎动物飞行性能的影响。
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Exceptional preservation and foot structure reveal ecological transitions and lifestyles of early theropod flyers.非凡的保存状况和足部结构揭示了早期兽脚亚目飞行者的生态转变和生活方式。
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Insight into the evolutionary assemblage of cranial kinesis from a Cretaceous bird.从白垩纪鸟类看颅部运动的进化组合。
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Feather function and the evolution of birds.羽毛的功能与鸟类的进化。
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Cretaceous bird with dinosaur skull sheds light on avian cranial evolution.白垩纪带恐龙头骨的鸟类揭示了鸟类颅部演化。
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