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Ancient DNA reveals differences in behaviour and sociality between brown bears and extinct cave bears

  • Ancient DNA studies have revolutionized the study of extinct species and populations, providing insights on phylogeny, phylogeography, admixture and demographic history. However, inferences on behaviour and sociality have been far less frequent. Here, we investigate the complete mitochondrial genomes of extinct Late Pleistocene cave bears and middle Holocene brown bears that each inhabited multiple geographically proximate caves in northern Spain. In cave bears, we find that, although most caves were occupied simultaneously, each cave almost exclusively contains a unique lineage of closely related haplotypes. This remarkable pattern suggests extreme fidelity to their birth site in cave bears, best described as homing behaviour, and that cave bears formed stable maternal social groups at least for hibernation. In contrast, brown bears do not show any strong association of mitochondrial lineage and cave, suggesting that these two closely related species differed in aspects of their behaviour and sociality. This difference is likely toAncient DNA studies have revolutionized the study of extinct species and populations, providing insights on phylogeny, phylogeography, admixture and demographic history. However, inferences on behaviour and sociality have been far less frequent. Here, we investigate the complete mitochondrial genomes of extinct Late Pleistocene cave bears and middle Holocene brown bears that each inhabited multiple geographically proximate caves in northern Spain. In cave bears, we find that, although most caves were occupied simultaneously, each cave almost exclusively contains a unique lineage of closely related haplotypes. This remarkable pattern suggests extreme fidelity to their birth site in cave bears, best described as homing behaviour, and that cave bears formed stable maternal social groups at least for hibernation. In contrast, brown bears do not show any strong association of mitochondrial lineage and cave, suggesting that these two closely related species differed in aspects of their behaviour and sociality. This difference is likely to have contributed to cave bear extinction, which occurred at a time in which competition for caves between bears and humans was likely intense and the ability to rapidly colonize new hibernation sites would have been crucial for the survival of a species so dependent on caves for hibernation as cave bears. Our study demonstrates the potential of ancient DNA to uncover patterns of behaviour and sociality in ancient species and populations, even those that went extinct many tens of thousands of years ago.zeige mehrzeige weniger

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Verfasserangaben:Gloria M. González-FortesORCiD, Ben Kolbe, Daniel Fernandes, Ioana N. Meleg, Ana Garcia-Vazquez, Ana C. Pinto-Llona, Silviu Constantin, Trino J. de Torres, Jose E. Ortiz, Christine Frischauf, Gernot Rabeder, Michael HofreiterORCiDGND, Axel BarlowORCiDGND
DOI:https://doi.org/10.1111/mec.13800
ISSN:0962-1083
ISSN:1365-294X
Pubmed ID:https://pubmed.ncbi.nlm.nih.gov/27506329
Titel des übergeordneten Werks (Englisch):Molecular ecology
Verlag:Wiley-Blackwell
Verlagsort:Hoboken
Publikationstyp:Wissenschaftlicher Artikel
Sprache:Englisch
Jahr der Erstveröffentlichung:2016
Erscheinungsjahr:2016
Datum der Freischaltung:22.03.2020
Freies Schlagwort / Tag:Ursus arctos; Ursus spelaeus; ancient DNA; extinction; homing; sociality
Band:25
Seitenanzahl:12
Erste Seite:4907
Letzte Seite:4918
Fördernde Institution:Xunta de Galicia, Conselleria de Economia e Industria [10 PXIB 162 125]; Ministerio de Economia y Competitividad [MINECO CGL2014-57209-P]; European Science Foundation Research Networking Programmes (ConGenOmics) [5882]; ERC consolidator grant GeneFlow [310763]; KARSTHIVES Project - CNCS-UEFISCDI [PCCE_ID_31/2010]
Organisationseinheiten:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Biochemie und Biologie
Peer Review:Referiert
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