TY - JOUR
T1 - Mitochondrial DNA diversity and evolution of the Pleistocene cave bear complex
AU - Stiller, Mathias
AU - Molak, Martyna
AU - Prost, Stefan
AU - Rabeder, Gernot
AU - Baryshnikov, Gennady
AU - Rosendahl, Wilfried
AU - Münzel, Susanne
AU - Bocherens, Hervé
AU - Grandal-d'Anglade, Aurora
AU - Hilpert, Brigitte
AU - Germonpré, Mietje
AU - Stasyk, Oleh
AU - Pinhasi, Ron
AU - Tintori, Andrea
AU - Rohland, Nadin
AU - Mohandesan, Elmira
AU - Ho, Simon Y.W.
AU - Hofreiter, Michael
AU - Knapp, Michael
N1 - Funding Information:
The study was funded by the Max Planck Society . MS is supported by the National Science Foundation Award # 0909456 . MM is supported by the University of Sydney International Scholarship . MK was and SP is supported by the Allan Wilson Centre for Molecular Ecology and Evolution and the University of Otago . AGD was funded by the Spanish Ministry of Science and Innovation CICYT – CGL2011-30141. SYWH is supported by the Australian Research Council . We thank Grit Schubert for assistance in the lab.
PY - 2014/8/1
Y1 - 2014/8/1
N2 - Cave bears are among the most well known extinct Pleistocene mammals. Their biogeography and taxonomy, along with the factors that led to their extinction, have been subject to long-standing controversy. Here, we reconstruct the phylogeography as well as the temporal and spatial population dynamics of cave bears across their range using mitochondrial DNA control region sequences from 77 published as well as 65 new cave bear samples, Our analyses reveal a dramatic loss of genetic diversity in cave bear populations after 30,000 years before present and provide evidence for a range decline from east to west towards the onset of the last glacial maximum. Our results also suggest that the three major haplogroups within cave bears, which may correspond to distinct species, were previously more widespread, with relict populations in remote and alpine areas still harbouring haplotypes that have disappeared from most of their previous range. Applying a phylogenetic dating approach, we estimated the age of the oldest of our samples, originating from the Yana River region in north-eastern Siberia, to be around 178,000 years, which confirms a previous estimate of a Middle Pleistocene age based on its stratigraphic position. Our results extend our knowledge about the evolutionary history of cave bears, but they also show that to unravel the complexities of cave bear evolution future ancient DNA studies on this Pleistocene species will need to go beyond short mitochondrial DNA fragments, including full mitochondrial genomes as well as nuclear DNA sequences.
AB - Cave bears are among the most well known extinct Pleistocene mammals. Their biogeography and taxonomy, along with the factors that led to their extinction, have been subject to long-standing controversy. Here, we reconstruct the phylogeography as well as the temporal and spatial population dynamics of cave bears across their range using mitochondrial DNA control region sequences from 77 published as well as 65 new cave bear samples, Our analyses reveal a dramatic loss of genetic diversity in cave bear populations after 30,000 years before present and provide evidence for a range decline from east to west towards the onset of the last glacial maximum. Our results also suggest that the three major haplogroups within cave bears, which may correspond to distinct species, were previously more widespread, with relict populations in remote and alpine areas still harbouring haplotypes that have disappeared from most of their previous range. Applying a phylogenetic dating approach, we estimated the age of the oldest of our samples, originating from the Yana River region in north-eastern Siberia, to be around 178,000 years, which confirms a previous estimate of a Middle Pleistocene age based on its stratigraphic position. Our results extend our knowledge about the evolutionary history of cave bears, but they also show that to unravel the complexities of cave bear evolution future ancient DNA studies on this Pleistocene species will need to go beyond short mitochondrial DNA fragments, including full mitochondrial genomes as well as nuclear DNA sequences.
UR - http://www.scopus.com/inward/record.url?scp=84904627780&partnerID=8YFLogxK
U2 - 10.1016/j.quaint.2013.09.023
DO - 10.1016/j.quaint.2013.09.023
M3 - Article
SN - 1040-6182
VL - 339-340
SP - 224
EP - 231
JO - Quaternary International
JF - Quaternary International
ER -