Population-size history inferences from the coho salmon (Oncorhynchus kisutch) genome
Author(s) -
Éric Rondeau,
Kris A. Christensen,
David R. Minkley,
Jong S. Leong,
Michelle Chan,
Cody A. Despins,
Anita Mueller,
Dionne Sakhrani,
Carlo A. Biagi,
Quentin Rougemont,
Éric Normandeau,
Steven J.M. Jones,
Robert H. Devlin,
Ruth E. Withler,
Terry D. Beacham,
Kerry A. Naish,
José M. Yáñez,
Roberto Neira,
Louis Bernatchez,
William S. Davidson,
Ben F. Koop
Publication year - 2023
Publication title -
g3 genes genomes genetics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.468
H-Index - 66
ISSN - 2160-1836
DOI - 10.1093/g3journal/jkad033
Subject(s) - oncorhynchus , spawn (biology) , biology , population bottleneck , demographic history , effective population size , fishery , population , gene flow , ecology , genetic variation , demography , microsatellite , fish <actinopterygii> , genetics , allele , sociology , gene
Coho salmon (Oncorhynchus kisutch) are a culturally and economically important species that return from multiyear ocean migrations to spawn in rivers that flow to the Northern Pacific Ocean. Southern stocks of coho salmon in Canada and the United States have significantly declined over the past quarter century, and unfortunately, conservation efforts have not reversed this trend. To assist in stock management and conservation efforts, we generated a chromosome-level genome assembly. We also resequenced the genomes of 83 coho salmon across the North American range to identify nucleotide variants and understand the demographic histories of these salmon by modeling effective population size from genome-wide data. From demographic history modeling, we observed reductions in effective population sizes between 3,750 and 8,000 years ago for several northern sampling sites, which may correspond to bottleneck events during recolonization after glacial retreat.
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