A high-coverage Neandertal genome from the Altai Mountains reveals population structure among Neandertals

D Diyendo Massilani (Department of Genetics, Yale School of Medicine) S Stéphane Peyrégne L Leonardo N. M. Iasi C Cesare de Filippo F Fabrizio Mafessoni (Department of Life Sciences, University of Trieste) A Alba Bossoms Mesa A Arev P. Sümer Y Yaniv Swiel (Department of Evolutionary Genetics, Max Planck Institute for Evolutionary Anthropology) D Divyaratan Popli S Shahar Silverman (Department of Genetics, Yale School of Medicine) M Michael James Boyle (Department of Genetics, Yale School of Medicine) M Maxim B. Kozlikin (Institute of Archaeology and Ethnography of the Siberian Branch of the Russian Academy of Sciences) M Michael V. Shunkov (Institute of Archaeology and Ethnography of the Siberian Branch of the Russian Academy of Sciences) A Anatoly P. Derevianko T Tom Higham K Katerina Douka (Department of Evolutionary Anthropology, University of Vienna) M Matthias Meyer H Hugo Zeberg J Janet Kelso S Svante Pääbo

Abstract

We present a genome sequenced to ~37-fold genomic coverage from an approximately 110,000-y-old male Neandertal from Denisova Cave in the Altai Mountains and analyze it together with previously published Neandertal genomes of high quality. We show that he belonged to a population more closely related to a ~120,000-y-old Neandertal from Denisova Cave than to Neandertals in Europe or to a ~80,000-y-old Neandertal from Chagyrskaya Cave in the Altai Mountains. Both Neandertals from Denisova Cave show evidence of gene flow from Denisovans, a pattern not seen in later Neandertals from the Altai region or from Western Europe. The extent of chromosomal regions of homozygosity in Neandertals from the Altai region between 120,000 and 80,000 y ago indicates that they lived in smaller and more isolated groups than later Neandertals in Europe (54,000 to 40,000 y ago). We estimate the extent of allele frequency differentiation among Neandertal populations and find that the older Eastern Neandertals in the Altai region and younger Western Neandertals in Europe were as differentiated as the most differentiated present-day human populations worldwide.

Article Details

Volume / Issue Vol. 123, Issue 13
Published March 31, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (20)

D

Diyendo Massilani

Department of Genetics, Yale School of Medicine

S

Stéphane Peyrégne

L

Leonardo N. M. Iasi

C

Cesare de Filippo

F

Fabrizio Mafessoni

Department of Life Sciences, University of Trieste

A

Alba Bossoms Mesa

A

Arev P. Sümer

Y

Yaniv Swiel

Department of Evolutionary Genetics, Max Planck Institute for Evolutionary Anthropology

D

Divyaratan Popli

S

Shahar Silverman

Department of Genetics, Yale School of Medicine

M

Michael James Boyle

Department of Genetics, Yale School of Medicine

M

Maxim B. Kozlikin

Institute of Archaeology and Ethnography of the Siberian Branch of the Russian Academy of Sciences

M

Michael V. Shunkov

Institute of Archaeology and Ethnography of the Siberian Branch of the Russian Academy of Sciences

A

Anatoly P. Derevianko

T

Tom Higham

K

Katerina Douka

Department of Evolutionary Anthropology, University of Vienna

M

Matthias Meyer

H

Hugo Zeberg

J

Janet Kelso

S

Svante Pääbo