Ancient DNA reveals interstadials as a driver of common vole population dynamics during the last glacial period

Mateusz Baca, Danijela Popović, Anna Lemanik, Sandra Bañuls‐Cardona, Nicholas J. Conard, Gloria Cuenca‐Bescós, Emmanuel Desclaux, Helen Fewlass, Jesus T. Garcia, Tereza Hadravova, Gerald Heckel, Ivan Horáček, Monika Vlasta Knul, Loïc Lebreton, Juan Manuel López‐García, Elisa Luzi, Zoran Marković, Jadranka Mauch Lenardić, Xabier Murelaga, Pierre NoiretAlexandru Petculescu, Vasil Popov, Sara E. Rhodes, Bogdan Ridush, Aurélien Royer, John R. Stewart, Joanna Stojak, Sahra Talamo, Xuejing Wang, Jan M. Wójcik, Adam Nadachowski

Research output: Contribution to journalArticlepeer-review

Abstract

Aim: Many species experienced population turnover and local extinction during the Late Pleistocene. In the case of megafauna, it remains challenging to disentangle climate change and the activities of Palaeolithic hunter‐gatherers as the main cause. In contrast, the impact of humans on rodent populations is likely to be negligible. This study investigated which climatic and/or environmental factors affect the population dynamics of the common vole. This temperate rodent is widespread across Europe and was one of the most abundant small mammal species throughout the Late Pleistocene.
Location: Europe.TaxonCommon vole (Microtus arvalis).Methods: We generated a dataset comprised of 4.2 kb long fragment of mitochondrial DNA (mtDNA) from 148 ancient and 51 modern specimens sampled from multiple localities across Europe and covering the last 60 thousand years (ka). We used Bayesian inference to reconstruct their phylogenetic relationships and to estimate the age of the specimens that were not directly dated.ResultsWe estimated the time to the most recent common ancestor of all last glacial and extant common vole lineages to be 90 ka ago and the divergence of the main mtDNA lineages present in extant populations to between 55 and 40 ka ago, which is earlier than most previous estimates. We detected several lineage turnovers in Europe during the period of high climate variability at the end of Marine Isotope Stage 3 (MIS 3; 57–29 ka ago) in addition to those found previously around the Pleistocene/Holocene transition. In contrast, data from the Western Carpathians suggest continuity throughout the Last Glacial Maximum (LGM) even at high latitudes. Main Conclusions :The main factor affecting the common vole populations during the last glacial period was the decrease in open habitat during the interstadials, whereas climate deterioration during the LGM had little impact on population dynamics. This suggests that the rapid environmental change rather than other factors was the major force shaping the histories of the Late Pleistocene faunas.
Original languageEnglish
Pages (from-to)183-196
Number of pages14
JournalJournal of Biogeography
Volume50
Issue number1
Early online date10 Nov 2022
DOIs
Publication statusPublished - 10 Nov 2022

Keywords

  • Ecology
  • Ecology, Evolution, Behavior and Systematics

Cite this