Prehistoric genomes reveal the genetic foundation and cost of horse domestication
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Jonsson, Hakon
Chang, Dan
Der Sarkissian, Clio
Ermini, Luca
Ginolhac, Aurelien
Albrechtsen, Anders
Dupanloup, Isabelle
Foucal, Adrien
Petersen, Bent
Fumagalli, Matteo
Raghavan, Maanasa
Seguin-Orlando, Andaine
Korneliussen, Thorfinn S.
Velazquez, Amhed M. V.
Stenderup, Jesper
Hoover, Cindi A.
Rubin, Carl-Johan
Alfarhan, Ahmed H.
Alquraishi, Saleh A.
Al-Rasheid, Khaled A. S.
MacHugh, David E.
Kalbfleisch, Ted
MacLeod, James N.
Rubin, Edward M.
Sicheritz-Ponten, Thomas
Andersson, Leif
Hofreiter, Michael
Willerslev, Eske
et al.
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Abstract
The domestication of the horse ∼5.5 kya and the emergence of mounted riding, chariotry, and cavalry dramatically transformed human civilization. However, the genetics underlying horse domestication are difficult to reconstruct, given the near extinction of wild horses. We therefore sequenced two ancient horse genomes from Taymyr, Russia (at 7.4- and 24.3-fold coverage), both predating the earliest archeological evidence of domestication. We compared these genomes with genomes of domesticated horses and the wild Przewalski’s horse and found genetic structure within Eurasia in the Late Pleistocene, with the ancient population contributing significantly to the genetic variation of domesticated breeds. We furthermore identified a conservative set of 125 potential domestication targets using four complementary scans for genes that have undergone positive selection. One group of genes is involved in muscular and limb development, articular junctions, and the cardiac system, and may represent physiological adaptations to human utilization. A second group consists of genes with cognitive functions, including social behavior, learning capabilities, fear response, and agreeableness, which may have been key for taming horses. We also found that domestication is associated with inbreeding and an excess of deleterious mutations. This genetic load is in line with the “cost of domestication” hypothesis also reported for rice, tomatoes, and dogs, and it is generally attributed to the relaxation of purifying selection resulting from the strong demographic bottlenecks accompanying domestication. Our work demonstrates the power of ancient genomes to reconstruct the complex genetic changes that transformed wild animals into their domesticated forms, and the population context in which this process took place.
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Proceedings of the National Academy of Sciences of the United States of America
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111
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52
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Population, Ecological and Evolutionary Genetics