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The structural variation landscape in 492 Atlantic salmon genomes

Authors :
Craig R. Primmer
Sigbjørn Lien
Kjetil Hindar
Samuel A.M. Martin
Manu Kumar Gundappa
Matilde Mengkrog Holen
Line Lieblein Røsæg
Ian Johnston
Alicia C. Bertolotti
Ege Pehlivanoglu
Diego Robledo
Harald Sægrov
Teshome Dagne Mulugeta
Daniel J. Macqueen
Torfinn Nome
Simen Rød Sandve
Bjørn Florø-Larsen
Thomas J. Ashton
Matthew Peter Kent
Jaakko Erkinaro
Ryan M. Layer
Louis Bernatchez
Michael Gallagher
Biosciences
Helsinki Institute of Sustainability Science (HELSUS)
Evolution, Conservation, and Genomics
Institute of Biotechnology
Organismal and Evolutionary Biology Research Programme
Source :
Nature Communications, Nature Communications, Vol 11, Iss 1, Pp 1-16 (2020), Bertolotti, A, Layer, R M, Gundappa, M K, Gallagher, M, Pehlivanoglu, E, Nome, T, Robledo, D, Kent, M P, Røsæg, L L, Holen, M M, Mulugeta, T D, Ashton, T J, Hindar, K, Saegrov, H, Florø-Larsen, B, Erkinaro, J, Primmer, C R, Bernatchez, L, Martin, S A M, Johnston, I A, Sandve, S R, Lien, S & Macqueen, D 2020, ' The structural variation landscape in 492 Atlantic salmon genomes ', Nature Communications, vol. 11, 5176 (2020) . https://doi.org/10.1038/s41467-020-18972-x
Publication Year :
2020

Abstract

Structural variants (SVs) are a major source of genetic and phenotypic variation, but remain challenging to accurately type and are hence poorly characterized in most species. We present an approach for reliable SV discovery in non-model species using whole genome sequencing and report 15,483 high-confidence SVs in 492 Atlantic salmon (Salmo salar L.) sampled from a broad phylogeographic distribution. These SVs recover population genetic structure with high resolution, include an active DNA transposon, widely affect functional features, and overlap more duplicated genes retained from an ancestral salmonid autotetraploidization event than expected. Changes in SV allele frequency between wild and farmed fish indicate polygenic selection on behavioural traits during domestication, targeting brain-expressed synaptic networks linked to neurological disorders in humans. This study offers novel insights into the role of SVs in genome evolution and the genetic architecture of domestication traits, along with resources supporting reliable SV discovery in non-model species.<br />This study presents and validates a novel approach to reliably identify structural variations (SVs) in non-model genomes using whole genome sequencing, which was used to detect 15,483 SVs in 492 Atlantic salmon, shedding light on their roles in genome evolution and the genetic architecture of domestication.

Details

ISSN :
20411723
Volume :
11
Issue :
1
Database :
OpenAIRE
Journal :
Nature communications
Accession number :
edsair.doi.dedup.....41225293028e0f134b7dd3ff57c8296e
Full Text :
https://doi.org/10.1038/s41467-020-18972-x