Middle Pleistocene genome calibrates a revised evolutionary history of extinct cave bears

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Middle Pleistocene genome calibrates a revised evolutionary history of extinct cave bears. / Barlow, Axel; Paijmans, Johanna; Alberti, Federica et al.
Yn: Current Biology, 26.04.2021.

Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

HarvardHarvard

Barlow, A, Paijmans, J, Alberti, F, Gasparyan, B, Bar-Oz, G, Pinhasi, R, Foronova, I, Puzachenko, AY, Pacher, M, Dalén, L, Baryshnikov, G & Hofreiter, M 2021, 'Middle Pleistocene genome calibrates a revised evolutionary history of extinct cave bears', Current Biology. https://doi.org/10.1016/j.cub.2021.01.073

APA

Barlow, A., Paijmans, J., Alberti, F., Gasparyan, B., Bar-Oz, G., Pinhasi, R., Foronova, I., Puzachenko, A. Y., Pacher, M., Dalén, L., Baryshnikov, G., & Hofreiter, M. (2021). Middle Pleistocene genome calibrates a revised evolutionary history of extinct cave bears. Current Biology. https://doi.org/10.1016/j.cub.2021.01.073

CBE

Barlow A, Paijmans J, Alberti F, Gasparyan B, Bar-Oz G, Pinhasi R, Foronova I, Puzachenko AY, Pacher M, Dalén L, et al. 2021. Middle Pleistocene genome calibrates a revised evolutionary history of extinct cave bears. Current Biology. https://doi.org/10.1016/j.cub.2021.01.073

MLA

VancouverVancouver

Barlow A, Paijmans J, Alberti F, Gasparyan B, Bar-Oz G, Pinhasi R et al. Middle Pleistocene genome calibrates a revised evolutionary history of extinct cave bears. Current Biology. 2021 Ebr 26. Epub 2021 Chw 15. doi: 10.1016/j.cub.2021.01.073

Author

Barlow, Axel ; Paijmans, Johanna ; Alberti, Federica et al. / Middle Pleistocene genome calibrates a revised evolutionary history of extinct cave bears. Yn: Current Biology. 2021.

RIS

TY - JOUR

T1 - Middle Pleistocene genome calibrates a revised evolutionary history of extinct cave bears

AU - Barlow, Axel

AU - Paijmans, Johanna

AU - Alberti, Federica

AU - Gasparyan, Boris

AU - Bar-Oz, Guy

AU - Pinhasi, Ron

AU - Foronova, Irina

AU - Puzachenko, Andrey Y.

AU - Pacher, Martina

AU - Dalén, Love

AU - Baryshnikov, Gennady

AU - Hofreiter, Michael

PY - 2021/4/26

Y1 - 2021/4/26

N2 - Palaeogenomes provide the potential to study evolutionary processes in real time, but this potential is limited by our ability to recover genetic data over extended timescales.1 As a consequence, most studies so far have focused on samples of Late Pleistocene or Holocene age, which covers only a small part of the history of many clades and species. Here, we report the recovery of a low coverage palaeogenome from the petrous bone of a ∼360,000 year old cave bear from Kudaro 1 cave in the Caucasus Mountains. Analysis of this genome alongside those of several Late Pleistocene cave bears reveals widespread mito-nuclear discordance in this group. Using the time interval between Middle and Late Pleistocene cave bear genomes, we directly estimate ursid nuclear and mitochondrial substitution rates to calibrate their respective phylogenies. This reveals post-divergence mitochondrial transfer as the dominant factor explaining their mito-nuclear discordance. Interestingly, these transfer events were not accompanied by large-scale nuclear introgression. However, we do detect additional instances of nuclear admixture among other cave bear lineages, and between cave bears and brown bears, which are not associated with mitochondrial exchange. Genomic data obtained from the Middle Pleistocene cave bear petrous bone has thus facilitated a revised evolutionary history of this extinct megafaunal group. Moreover, it suggests that petrous bones may provide a means of extending both the magnitude and time depth of palaeogenome retrieval over substantial portions of the evolutionary histories of many mammalian clades.

AB - Palaeogenomes provide the potential to study evolutionary processes in real time, but this potential is limited by our ability to recover genetic data over extended timescales.1 As a consequence, most studies so far have focused on samples of Late Pleistocene or Holocene age, which covers only a small part of the history of many clades and species. Here, we report the recovery of a low coverage palaeogenome from the petrous bone of a ∼360,000 year old cave bear from Kudaro 1 cave in the Caucasus Mountains. Analysis of this genome alongside those of several Late Pleistocene cave bears reveals widespread mito-nuclear discordance in this group. Using the time interval between Middle and Late Pleistocene cave bear genomes, we directly estimate ursid nuclear and mitochondrial substitution rates to calibrate their respective phylogenies. This reveals post-divergence mitochondrial transfer as the dominant factor explaining their mito-nuclear discordance. Interestingly, these transfer events were not accompanied by large-scale nuclear introgression. However, we do detect additional instances of nuclear admixture among other cave bear lineages, and between cave bears and brown bears, which are not associated with mitochondrial exchange. Genomic data obtained from the Middle Pleistocene cave bear petrous bone has thus facilitated a revised evolutionary history of this extinct megafaunal group. Moreover, it suggests that petrous bones may provide a means of extending both the magnitude and time depth of palaeogenome retrieval over substantial portions of the evolutionary histories of many mammalian clades.

U2 - 10.1016/j.cub.2021.01.073

DO - 10.1016/j.cub.2021.01.073

M3 - Article

JO - Current Biology

JF - Current Biology

SN - 0960-9822

ER -