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Ancient bears provide insights into Pleistocene ice age refugia in Southeast Alaska

  • Flavio Augusto da Silva Coelho
  • , Stephanie Gill
  • , Crystal M. Tomlin
  • , Marilena Papavassiliou
  • , Sean D. Farley
  • , Joseph A. Cook
  • , Sarah A. Sonsthagen
  • , George K. Sage
  • , Timothy H. Heaton
  • , Sandra L. Talbot
  • , Charlotte Lindqvist
  • SUNY Buffalo
  • Alaska Department of Fish and Game
  • University of New Mexico
  • University of Nebraska-Lincoln
  • Far Northwestern Institute of Art and Science
  • University of South Dakota

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

During the Late Pleistocene, major parts of North America were periodically covered by ice sheets. However, there are still questions about whether ice-free refugia were present in the Alexander Archipelago along the Southeast (SE) Alaska coast during the last glacial maximum (LGM). Numerous subfossils have been recovered from caves in SE Alaska, including American black (Ursus americanus) and brown (U. arctos) bears, which today are found in the Alexander Archipelago but are genetically distinct from mainland bear populations. Hence, these bear species offer an ideal system to investigate long-term occupation, potential refugial survival and lineage turnover. Here, we present genetic analyses based on 99 new complete mitochondrial genomes from ancient and modern brown and black bears spanning the last ~45,000 years. Black bears form two SE Alaskan subclades, one preglacial and another postglacial, that diverged >100,000 years ago. All postglacial ancient brown bears are closely related to modern brown bears in the archipelago, while a single preglacial brown bear is found in a distantly related clade. A hiatus in the bear subfossil record around the LGM and the deep split of their pre- and postglacial subclades fail to support a hypothesis of continuous occupancy in SE Alaska throughout the LGM for either species. Our results are consistent with an absence of refugia along the SE Alaska coast, but indicate that vegetation quickly expanded after deglaciation, allowing bears to recolonize the area after a short-lived LGM peak.

Original languageEnglish
Pages (from-to)3641-3656
Number of pages16
JournalMolecular Ecology
Volume32
Issue number13
DOIs
StatePublished - Jul 2023

Keywords

  • Southeast Alaska
  • Ursus americanus
  • Ursus arctos
  • last glacial maximum
  • paleogenetics
  • refugia

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