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The pink salmon genome: Uncovering the genomic consequences of a two-year life cycle

Pink salmon (Oncorhynchus gorbuscha) adults are the smallest of the five Pacific salmon native to the western Pacific Ocean. Pink salmon are also the most abundant of these species and account for a large proportion of the commercial value of the salmon fishery worldwide. A two-year life history of...

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Autores principales: Christensen, Kris A., Rondeau, Eric B., Sakhrani, Dionne, Biagi, Carlo A., Johnson, Hollie, Joshi, Jay, Flores, Anne-Marie, Leelakumari, Sreeja, Moore, Richard, Pandoh, Pawan K., Withler, Ruth E., Beacham, Terry D., Leggatt, Rosalind A., Tarpey, Carolyn M., Seeb, Lisa W., Seeb, James E., Jones, Steven J. M., Devlin, Robert H., Koop, Ben F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8682878/
https://www.ncbi.nlm.nih.gov/pubmed/34919547
http://dx.doi.org/10.1371/journal.pone.0255752
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author Christensen, Kris A.
Rondeau, Eric B.
Sakhrani, Dionne
Biagi, Carlo A.
Johnson, Hollie
Joshi, Jay
Flores, Anne-Marie
Leelakumari, Sreeja
Moore, Richard
Pandoh, Pawan K.
Withler, Ruth E.
Beacham, Terry D.
Leggatt, Rosalind A.
Tarpey, Carolyn M.
Seeb, Lisa W.
Seeb, James E.
Jones, Steven J. M.
Devlin, Robert H.
Koop, Ben F.
author_facet Christensen, Kris A.
Rondeau, Eric B.
Sakhrani, Dionne
Biagi, Carlo A.
Johnson, Hollie
Joshi, Jay
Flores, Anne-Marie
Leelakumari, Sreeja
Moore, Richard
Pandoh, Pawan K.
Withler, Ruth E.
Beacham, Terry D.
Leggatt, Rosalind A.
Tarpey, Carolyn M.
Seeb, Lisa W.
Seeb, James E.
Jones, Steven J. M.
Devlin, Robert H.
Koop, Ben F.
author_sort Christensen, Kris A.
collection PubMed
description Pink salmon (Oncorhynchus gorbuscha) adults are the smallest of the five Pacific salmon native to the western Pacific Ocean. Pink salmon are also the most abundant of these species and account for a large proportion of the commercial value of the salmon fishery worldwide. A two-year life history of pink salmon generates temporally isolated populations that spawn either in even-years or odd-years. To uncover the influence of this genetic isolation, reference genome assemblies were generated for each year-class and whole genome re-sequencing data was collected from salmon of both year-classes. The salmon were sampled from six Canadian rivers and one Japanese river. At multiple centromeres we identified peaks of Fst between year-classes that were millions of base-pairs long. The largest Fst peak was also associated with a million base-pair chromosomal polymorphism found in the odd-year genome near a centromere. These Fst peaks may be the result of a centromere drive or a combination of reduced recombination and genetic drift, and they could influence speciation. Other regions of the genome influenced by odd-year and even-year temporal isolation and tentatively under selection were mostly associated with genes related to immune function, organ development/maintenance, and behaviour.
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spelling pubmed-86828782021-12-18 The pink salmon genome: Uncovering the genomic consequences of a two-year life cycle Christensen, Kris A. Rondeau, Eric B. Sakhrani, Dionne Biagi, Carlo A. Johnson, Hollie Joshi, Jay Flores, Anne-Marie Leelakumari, Sreeja Moore, Richard Pandoh, Pawan K. Withler, Ruth E. Beacham, Terry D. Leggatt, Rosalind A. Tarpey, Carolyn M. Seeb, Lisa W. Seeb, James E. Jones, Steven J. M. Devlin, Robert H. Koop, Ben F. PLoS One Research Article Pink salmon (Oncorhynchus gorbuscha) adults are the smallest of the five Pacific salmon native to the western Pacific Ocean. Pink salmon are also the most abundant of these species and account for a large proportion of the commercial value of the salmon fishery worldwide. A two-year life history of pink salmon generates temporally isolated populations that spawn either in even-years or odd-years. To uncover the influence of this genetic isolation, reference genome assemblies were generated for each year-class and whole genome re-sequencing data was collected from salmon of both year-classes. The salmon were sampled from six Canadian rivers and one Japanese river. At multiple centromeres we identified peaks of Fst between year-classes that were millions of base-pairs long. The largest Fst peak was also associated with a million base-pair chromosomal polymorphism found in the odd-year genome near a centromere. These Fst peaks may be the result of a centromere drive or a combination of reduced recombination and genetic drift, and they could influence speciation. Other regions of the genome influenced by odd-year and even-year temporal isolation and tentatively under selection were mostly associated with genes related to immune function, organ development/maintenance, and behaviour. Public Library of Science 2021-12-17 /pmc/articles/PMC8682878/ /pubmed/34919547 http://dx.doi.org/10.1371/journal.pone.0255752 Text en © 2021 Christensen et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Christensen, Kris A.
Rondeau, Eric B.
Sakhrani, Dionne
Biagi, Carlo A.
Johnson, Hollie
Joshi, Jay
Flores, Anne-Marie
Leelakumari, Sreeja
Moore, Richard
Pandoh, Pawan K.
Withler, Ruth E.
Beacham, Terry D.
Leggatt, Rosalind A.
Tarpey, Carolyn M.
Seeb, Lisa W.
Seeb, James E.
Jones, Steven J. M.
Devlin, Robert H.
Koop, Ben F.
The pink salmon genome: Uncovering the genomic consequences of a two-year life cycle
title The pink salmon genome: Uncovering the genomic consequences of a two-year life cycle
title_full The pink salmon genome: Uncovering the genomic consequences of a two-year life cycle
title_fullStr The pink salmon genome: Uncovering the genomic consequences of a two-year life cycle
title_full_unstemmed The pink salmon genome: Uncovering the genomic consequences of a two-year life cycle
title_short The pink salmon genome: Uncovering the genomic consequences of a two-year life cycle
title_sort pink salmon genome: uncovering the genomic consequences of a two-year life cycle
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8682878/
https://www.ncbi.nlm.nih.gov/pubmed/34919547
http://dx.doi.org/10.1371/journal.pone.0255752
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