Ancient mitochondrial genomes of Erlitou dogs reveal diverse population dynamics during early state formation in China

The Erlitou site (c. 1750 to 1520 cal BC) in the Central Plains of China is widely regarded as the earliest state-level society in East Asia, yet the population history of domestic dogs within this key archaeological context remains poorly understood. Here, we analyze 21 ancient dog samples excavated from Erlitou to investigate their maternal genetic structure and population dynamics during early state formation. Our results reveal high maternal genetic diversity characterized by a majority of individuals belonging to haplogroup A, comprising sub-haplogroups A1, A2, A3, A5, and unassigned A lineages, alongside one individual assigned to the western Eurasian haplogroup C. Phylogenetic and network analyses suggest that this diversity may derive from multiple geographic sources. The identification of the A1 lineage at Erlitou traces its presence in the Central Plains to the Early Bronze Age, suggesting established chronologies of canine lineage replacement require reassessment. The high diversity in maternal lineages of Erlitou dogs revealed by the genetic data, combined with previously published isotopic evidence for millet-based diets, suggests that dogs with diverse maternal lineages were incorporated into local agricultural systems at Erlitou during early state formation. More broadly, dog population dynamics in early China reflect the intensified human mobility and cultural integration associated with early state formation.

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Publication Details

Journal
Journal of Archaeological Science
Published
2026-09-13
DOI
https://doi.org/10.1016/j.jas.2026.106692
Primary Topic
Human-Animal Interaction Studies
Type
article
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Ancient mitochondrial genomes of Erlitou dogs reveal diverse population dynamics during early state formation in China

Xingcheng Wang, Xiayire Xiaokaiti, Haitao Zhao, Xin Zhao et al.
Journal of Archaeological Science
Human-Animal Interaction Studies
article

Ancient mitochondrial genomes of Erlitou dogs reveal diverse population dynamics during early state formation in China

Xingcheng Wang, Xiayire Xiaokaiti, Haitao Zhao, Xin Zhao, Zhipeng Li
article en

Abstract

The Erlitou site (c. 1750 to 1520 cal BC) in the Central Plains of China is widely regarded as the earliest state-level society in East Asia, yet the population history of domestic dogs within this key archaeological context remains poorly understood. Here, we analyze 21 ancient dog samples excavated from Erlitou to investigate their maternal genetic structure and population dynamics during early state formation. Our results reveal high maternal genetic diversity characterized by a majority of individuals belonging to haplogroup A, comprising sub-haplogroups A1, A2, A3, A5, and unassigned A lineages, alongside one individual assigned to the western Eurasian haplogroup C. Phylogenetic and network analyses suggest that this diversity may derive from multiple geographic sources. The identification of the A1 lineage at Erlitou traces its presence in the Central Plains to the Early Bronze Age, suggesting established chronologies of canine lineage replacement require reassessment. The high diversity in maternal lineages of Erlitou dogs revealed by the genetic data, combined with previously published isotopic evidence for millet-based diets, suggests that dogs with diverse maternal lineages were incorporated into local agricultural systems at Erlitou during early state formation. More broadly, dog population dynamics in early China reflect the intensified human mobility and cultural integration associated with early state formation.

Journal of Archaeological ScienceVol. 194
Chinese Academy of Social Sciences (CN), Jilin University (CN), Chinese Academy of Cultural Heritage (CN), Institute of Archaeology (CN)
Openalex Percentile: Top 11%
Human-Animal Interaction Studies
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Ancient mitochondrial genomes of Erlitou dogs reveal diverse population dynamics during early state formation in China — Xingcheng Wang, Xiayire Xiaokaiti, et al. · Journal of Archaeological Science (2026) | TGRS Research Map | TGRS