Genome analyses suggest recent speciation and postglacial isolation in the Norwegian lemming

E Edana Lord (Centre for Palaeogenetics) I Isabelle S. Feinauer (Centre for Palaeogenetics) A André E. R. Soares (National Bioinformatics Infrastructure Sweden, Science for Life Laboratory, Department of Medical Biochemistry and Microbiology, Uppsala University) V Vendela K. Lagerholm (Centre for Palaeogenetics) K Karin Näsvall (Tree of Life Programme, Wellcome Sanger Institute) E Erik Ersmark (Centre for Palaeogenetics) R Remi-André Olsen (Science for Life Laboratory, Department of Biochemistry and Biophysics, Stockholm University) S Stefan Prost (Natural History Museum Vienna, Central Research Laboratories) E Elena A. Kuzmina (Institute of Plant and Animal Ecology, Ural Branch of the Russian Academy of Sciences) N Nickolay G. Smirnov (Institute of Plant and Animal Ecology, Ural Branch of the Russian Academy of Sciences) J John R. Stewart M Monika V. Knul (Department of Archaeology, Anthropology and Geography, University of Winchester) P Pierre Noiret M Mietje Germonpré D Dorothee Ehrich (Department of Arctic and Marine Biology, Faculty of Biosciences, Fisheries and Economics University of Tromsø The Arctic University of Norway) I Ivan Pokrovsky (Max Planck Institute of Animal Behaviour) V Vadim B. Fedorov (Institute of Arctic Biology, University of Alaska) A Anna V. Goropashnaya (Institute of Arctic Biology, University of Alaska) L Love Dalén (Centre for Palaeogenetics) D David Díez-del-Molino (Centre for Palaeogenetics)

Abstract

The Norwegian lemming ( Lemmus lemmus ) is a small rodent distributed across the Fennoscandian mountain tundra and the Kola Peninsula. The Norwegian lemming likely evolved during the Late Pleistocene and inhabited Fennoscandia shortly prior to the Last Glacial Maximum. However, the exact timing and origins of the species, and its phylogenetic position relative to the closely related Siberian lemming ( Lemmus sibiricus ) remain disputed. Moreover, the presence of ancient or contemporary gene flow between both species is largely untested. The Norwegian lemming displays characteristic phenotypic and behavioral adaptations (e.g., coat color, aggression) that are not present in other Lemmus species. We generated a de novo genome assembly for the Norwegian lemming and resequenced nine modern and two ancient Lemmus spp. genomes. We show that all Lemmus species form distinct monophyletic clades, with concordant topology between the mitochondrial and nuclear genome phylogenies. The Siberian lemming is divided into two distinct but paraphyletic clades, one in the east and one in the west, where the western clade represents a sister taxon to the Norwegian lemming. We estimate that the Norwegian and western Siberian lemming diverged shortly before the Last Glacial Maximum, making the Norwegian lemming one of the youngest known mammalian species. We did not find any indication of gene flow between L. lemmus and L. sibiricus , suggesting postglacial isolation of L. lemmus . Furthermore, we identify species-specific genomic differences in genes related to coat color and fat transport, which are likely associated with the distinctive coloration and overwintering behavior observed in the Norwegian lemming.

Article Details

Volume / Issue Vol. 122, Issue 28
Published July 15, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (20)

E

Edana Lord

Centre for Palaeogenetics

I

Isabelle S. Feinauer

Centre for Palaeogenetics

A

André E. R. Soares

National Bioinformatics Infrastructure Sweden, Science for Life Laboratory, Department of Medical Biochemistry and Microbiology, Uppsala University

V

Vendela K. Lagerholm

Centre for Palaeogenetics

K

Karin Näsvall

Tree of Life Programme, Wellcome Sanger Institute

E

Erik Ersmark

Centre for Palaeogenetics

R

Remi-André Olsen

Science for Life Laboratory, Department of Biochemistry and Biophysics, Stockholm University

S

Stefan Prost

Natural History Museum Vienna, Central Research Laboratories

E

Elena A. Kuzmina

Institute of Plant and Animal Ecology, Ural Branch of the Russian Academy of Sciences

N

Nickolay G. Smirnov

Institute of Plant and Animal Ecology, Ural Branch of the Russian Academy of Sciences

J

John R. Stewart

M

Monika V. Knul

Department of Archaeology, Anthropology and Geography, University of Winchester

P

Pierre Noiret

M

Mietje Germonpré

D

Dorothee Ehrich

Department of Arctic and Marine Biology, Faculty of Biosciences, Fisheries and Economics University of Tromsø The Arctic University of Norway

I

Ivan Pokrovsky

Max Planck Institute of Animal Behaviour

V

Vadim B. Fedorov

Institute of Arctic Biology, University of Alaska

A

Anna V. Goropashnaya

Institute of Arctic Biology, University of Alaska

L

Love Dalén

Centre for Palaeogenetics

D

David Díez-del-Molino

Centre for Palaeogenetics