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Journal Article

Genomic basis of deep‐water adaptation in Arctic Charr ( Salvelinus alpinus ) morphs

Tony Kess; J. Brian Dempson; Sarah J. Lehnert; Kara K. S. Layton; Anthony Einfeldt; Paul Bentzen; Sarah J. Salisbury; Amber M. Messmer; Steven Duffy; Daniel E. Ruzzante; Cameron M. Nugent; Moira M. Ferguson; Jong S. Leong; Ben F. Koop; Michael F. O’Connell; Ian R. Bradbury
Molecular Ecology · Vol. 30, Issue 18 · pp. 4415-4432 · 2021

Abstract

The post‐glacial colonization of Gander Lake in Newfoundland, Canada, by Arctic Charr ( Salvelinus alpinus) provides the opportunity to study the genomic basis of adaptation to extreme deep‐water environments. Colonization of deep‐water (>50 m) habitats often requires extensive adaptation to cope with novel environmental challenges from high hydrostatic pressure, low temperature, and low light, but the genomic mechanisms underlying evolution in these environments are rarely known. Here, we compare genomic divergence between a deep‐water morph adapted to depths of up to 288 m and a larger, piscivorous pelagic morph occupying shallower depths. Using both a SNP array and resequencing of whole nuclear and mitochondrial genomes, we find clear genetic divergence ( F ST = 0.11–0.15) between deep and shallow water morphs, despite an absence of morph divergence across the mitochondrial genome. Outlier analyses identified many diverged genomic regions containing genes enriched for processes such as gene expression and DNA repair, cardiac function, and membrane transport. Detection of putative copy number variants (CNVs) uncovered 385 genes with CNVs distinct to piscivorous morphs, and 275 genes with CNVs distinct to deep‐water morphs, enriched for processes associated with synapse assembly. Demographic analyses identified evidence for recent and local morph divergence, and ongoing reductions in diversity consistent with postglacial colonization. Together, these results show that Arctic Charr morph divergence has occurred through genome‐wide differentiation and elevated divergence of genes underlying multiple cellular and physiological processes, providing insight into the genomic basis of adaptation in a deep‐water habitat following postglacial recolonization.

Bibliographic Information

JournalMolecular Ecology
PublisherWiley
Publication Date2021-09-01
Publication Year2021
Volume30
Issue18
Pages4415-4432
Document TypeJournal Article
Print ISSN0962-1083
eISSN1365-294X
DOI10.1111/mec.16033
SubjectEcology & Organismal Biology

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/1365294X
Publisher PageOpen Publisher Page
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