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古蛋白质组学研究揭示云南蝙蝠洞存在多种丹尼索瓦化石

梁晓彤1,饶慧芸2,邢松2,付巧妹2,3   

  1. 1.西北大学生命科学学院,西安 710069

    2.中国科学院古脊椎动物与古人类研究所,脊椎动物演化与人类起源重点实验室,北京 100044

    3.中国科学院大学,北京 100049

  • 收稿日期:2026-09-09 发布日期:2026-09-10

Paleoproteomics reveals various Denisovan fossils from Bianfu Cave, Yunnan

Xiaotong Liang1, Huiyun Rao2, Song Xing2, Qiaomei Fu2,3   

  1. 1. College of Life Sciences, Northwest University, Xi’an 710064, China

    2. Key Laboratory of Vertebrate Evolution and Human Origins, Institute of Vertebrate Paleontology and Paleoanthropology,

    Chinese Academy of Sciences, Beijing 100044, China

    3. University of Chinese Academy of Sciences, Beijing 100049, China

  • Received:2026-09-09 Online:2026-09-10

摘要: 近年来,尽管丹尼索瓦人的群体遗传历史、时空演化及形态特征研究已取得重大突破,但中国西南部仍存在明显的地理分布空白。由于其头后骨骼遗存稀少,尤其缺乏具有诊断特征的长骨,这两者同时限制了人们对丹尼索瓦人时空分布范围和形态表型的认识。为进一步识别更多古人类化石,中国科学院古脊椎动物与古人类研究所付巧妹研究团队联合多家考古研究单位,对中国云南省蝙蝠洞出土的6万多块骨骼碎片进行了全面的形态学筛选,从中选取76块用于质谱法分析,随后对其中的17块开展蛋白质组学测序分析。结果共鉴定出了3块新的古人类化石,包括2块顶骨碎片和1块远端桡骨碎片,这些化石的年代约为16.7~13.4万年前。单氨基酸多态性和系统发育分析证实,这些新发现的古人类骨骼以及此前发掘出土的2颗古人类牙齿均属于丹尼索瓦人。以上发现使云南蝙蝠洞成为除西伯利亚的丹尼索瓦洞外,丹尼索瓦人遗存种类最为丰富的地点。该研究成果填补了丹尼索瓦人已知分布范围中的关键地理空白,深化了对丹尼索瓦人演化历史的理解,同时桡骨的形态学分析结果也为揭示其头后骨骼表型提供了重要线索。

关键词:

丹尼索瓦人, 古蛋白质组学, 蝙蝠洞, 中国西南地区

Abstract:

Although recent studies have provided crucial insights into the population genetic history, spatiotemporal distribution, and morphology phenotype of Denisovans, a conspicuous research gap still exists in southwestern China. Moreover, Denisovan postcranial remains are scarce, particularly lacking diagnostic long bones. These research gaps limited our understanding of the spatiotemporal distribution and morphological phenotype of Denisovans. To identify more hominin fossils, a research team led by Qiaomei Fu from the Institute of Vertebrate Paleontology and Paleoanthropology, Chinese Academy of Sciences, in collaboration with several archaeological institutions or universities, conducted comprehensive morphological screening of over 60,000 bone fragments from Bianfu Cave in Yunnan Province. Among these specimens, 76 were selected for Zooarchaeology by Mass Spectrometry (ZooMS) analysis, and subsequently, 17 were subjected to proteomic sequencing. A total of 3 new ancient hominin fossils were identified, including two parietal fragments and one distal radius fragment, whose stratigraphic ages dated to approximately 167~134 thousand years ago. Single amino-acid polymorphism analysis and phylogenetic analysis confirmed that both the newly discovered hominin bones and two hominin teeth unearthed during excavation belong to Denisovans. These findings make Bianfu Cave to be a site with the richest variety of Denisovan remains outside Denisova Cave in Siberia. This study fills a critical geographic gap in the known distribution of Denisovans, deepens our understanding of their evolutionary history, and sheds new light on their postcranial phenotype.

Key words: Denisovan, paleoproteomics, Bianfu Cave, Northwest China