Grey wolf genomic history reveals a dual ancestry of dogs

Author:

Bergström AndersORCID,Stanton David W. G.,Taron Ulrike H.,Frantz LaurentORCID,Sinding Mikkel-Holger S.ORCID,Ersmark Erik,Pfrengle Saskia,Cassatt-Johnstone Molly,Lebrasseur OphélieORCID,Girdland-Flink Linus,Fernandes Daniel M.ORCID,Ollivier MorganeORCID,Speidel Leo,Gopalakrishnan Shyam,Westbury Michael V.ORCID,Ramos-Madrigal JazminORCID,Feuerborn Tatiana R.ORCID,Reiter Ella,Gretzinger Joscha,Münzel Susanne C.,Swali Pooja,Conard Nicholas J.ORCID,Carøe Christian,Haile JamesORCID,Linderholm AnnaORCID,Androsov Semyon,Barnes IanORCID,Baumann ChrisORCID,Benecke Norbert,Bocherens HervéORCID,Brace SelinaORCID,Carden Ruth F.,Drucker Dorothée G.ORCID,Fedorov Sergey,Gasparik Mihály,Germonpré MietjeORCID,Grigoriev Semyon,Groves Pam,Hertwig Stefan T.,Ivanova Varvara V.,Janssens Luc,Jennings Richard P.ORCID,Kasparov Aleksei K.,Kirillova Irina V.,Kurmaniyazov Islam,Kuzmin Yaroslav V.ORCID,Kosintsev Pavel A.,Lázničková-Galetová Martina,Leduc Charlotte,Nikolskiy Pavel,Nussbaumer Marc,O’Drisceoil Cóilín,Orlando LudovicORCID,Outram AlanORCID,Pavlova Elena Y.,Perri Angela R.ORCID,Pilot Małgorzata,Pitulko Vladimir V.,Plotnikov Valerii V.ORCID,Protopopov Albert V.,Rehazek André,Sablin MikhailORCID,Seguin-Orlando Andaine,Storå Jan,Verjux Christian,Zaibert Victor F.,Zazula Grant,Crombé PhilippeORCID,Hansen Anders J.ORCID,Willerslev Eske,Leonard Jennifer A.ORCID,Götherström Anders,Pinhasi RonORCID,Schuenemann Verena J.,Hofreiter Michael,Gilbert M. Thomas P.,Shapiro BethORCID,Larson GregerORCID,Krause JohannesORCID,Dalén LoveORCID,Skoglund PontusORCID

Abstract

AbstractThe grey wolf (Canis lupus) was the first species to give rise to a domestic population, and they remained widespread throughout the last Ice Age when many other large mammal species went extinct. Little is known, however, about the history and possible extinction of past wolf populations or when and where the wolf progenitors of the present-day dog lineage (Canis familiaris) lived1–8. Here we analysed 72 ancient wolf genomes spanning the last 100,000 years from Europe, Siberia and North America. We found that wolf populations were highly connected throughout the Late Pleistocene, with levels of differentiation an order of magnitude lower than they are today. This population connectivity allowed us to detect natural selection across the time series, including rapid fixation of mutations in the gene IFT88 40,000–30,000 years ago. We show that dogs are overall more closely related to ancient wolves from eastern Eurasia than to those from western Eurasia, suggesting a domestication process in the east. However, we also found that dogs in the Near East and Africa derive up to half of their ancestry from a distinct population related to modern southwest Eurasian wolves, reflecting either an independent domestication process or admixture from local wolves. None of the analysed ancient wolf genomes is a direct match for either of these dog ancestries, meaning that the exact progenitor populations remain to be located.

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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