Early colonization before inundation consistent with northern glacial refugia in Southern Doggerland revealed by sedimentary ancient DNA

R Robin G. Allaby (School of Life Sciences, University of Warwick) R Rosie Ware (Faculty of Science, Engineering and Medicine, School of Life Sciences, Gibbet Hill Campus, University of Warwick) R Rebecca Cribdon (Faculty of Science, Engineering and Medicine, School of Life Sciences, Gibbet Hill Campus, University of Warwick) T Teri A. Hansford (Faculty of Science, Engineering and Medicine, School of Life Sciences, Gibbet Hill Campus, University of Warwick) T Tim Kinnaird (Faculty of Science, School of Earth and Environmental Sciences, University of St. Andrews) D Derek Hamilton (Faculty of Management, Sciences and Engineering, Scottish Universities Environmental Research Centre Radiocarbon Dating Laboratory, Scottish Enterprise Park) L Logan Kistler (Department of Anthropology, National Museum of Natural History, Smithsonian Institution) P Phil Murgatroyd (School of Archaeological and Forensic Sciences, University of Bradford) R Richard Bates (Faculty of Science, School of Earth and Environmental Sciences, University of St. Andrews) S Simon Fitch (School of Archaeological and Forensic Sciences, University of Bradford) V Vincent Gaffney (School of Archaeological and Forensic Sciences, University of Bradford)

Abstract

Prior to the formation of the present-day North Sea during the mid-Holocene, North-Western Europe was connected through the Doggerland landmass. While it has been known for the past century that Doggerland was forested, it has not been clear when the onset of forestation occurred or whether the environment was more habitable for humans than surrounding European areas. In this study, we reconstruct the paleoecology of a river system, the Southern River, from the late Late Pleistocene to the late Holocene using sedimentary ancient DNA (sedaDNA) from 252 sediment samples from 41 cores spanning the length of the river system and headwater area. We identify secure and insecure sedaDNA signals by integrating sedimentological and sedaDNA data into a taphonomic model. Secure sedaDNA signals are found in silty and fine sand deposits where 95 to 98% originates from local deposition, but coarse sands and gravels are insecure with 60 to 70% of the sedaDNA associated with mixed ecosystem signals from reworked and influxed sediments. Secure sediments reveal the presence of several temperate tree genera such as Quercus , Ulmus, and Corylus over 16,000 y ago in the Late Pleniglacial, and thermal indicator genus Tilia several thousand years earlier than has been recorded for surrounding European areas. In this area, we also detect an anomalous signal of the genus Pterocarya , considered extinct in the region since the Hoxnian Stage (~400 ka). These observations are consistent with colonization from nearby northern glacial refugia, suggesting a favorable environment in which the cultural Mesolithic could develop.

Article Details

Volume / Issue Vol. 123, Issue 11
Published March 17, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (11)

R

Robin G. Allaby

School of Life Sciences, University of Warwick

R

Rosie Ware

Faculty of Science, Engineering and Medicine, School of Life Sciences, Gibbet Hill Campus, University of Warwick

R

Rebecca Cribdon

Faculty of Science, Engineering and Medicine, School of Life Sciences, Gibbet Hill Campus, University of Warwick

T

Teri A. Hansford

Faculty of Science, Engineering and Medicine, School of Life Sciences, Gibbet Hill Campus, University of Warwick

T

Tim Kinnaird

Faculty of Science, School of Earth and Environmental Sciences, University of St. Andrews

D

Derek Hamilton

Faculty of Management, Sciences and Engineering, Scottish Universities Environmental Research Centre Radiocarbon Dating Laboratory, Scottish Enterprise Park

L

Logan Kistler

Department of Anthropology, National Museum of Natural History, Smithsonian Institution

P

Phil Murgatroyd

School of Archaeological and Forensic Sciences, University of Bradford

R

Richard Bates

Faculty of Science, School of Earth and Environmental Sciences, University of St. Andrews

S

Simon Fitch

School of Archaeological and Forensic Sciences, University of Bradford

V

Vincent Gaffney

School of Archaeological and Forensic Sciences, University of Bradford