Analysis of gene origin in the first adult returns to the Cultus sockeye salmon captive breeding program

Rigorous evaluation of the utility of captive breeding for the restoration of depleted wild salmonid fish populations has not been undertaken. In particular, little is known about the reproductive success of captively-bred individuals that are released back into an extant population and their capaci...

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Published in:Conservation genetics Vol. 12; no. 6; pp. 1469 - 1483
Main Authors: Withler, Ruth E., Devlin, Robert H., Latham, Steve, Wood, Chris C., Supernault, K. Janine
Format: Journal Article
Language:English
Published: Dordrecht Springer Netherlands 01-12-2011
Springer Nature B.V
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Abstract Rigorous evaluation of the utility of captive breeding for the restoration of depleted wild salmonid fish populations has not been undertaken. In particular, little is known about the reproductive success of captively-bred individuals that are released back into an extant population and their capacity to assist in long-term population persistence. For the endangered Cultus Lake sockeye salmon population, we examined the potential genetic contribution of the first juvenile fish released from a captive breeding program upon their maturity in the natural Cultus Lake environment. Genetic analysis of 792 Cultus sockeye salmon that were spawned in captivity in 2004 and their adult progeny of 2007 and 2008 revealed a genetic bottleneck originating from 20 wild sockeye salmon hatchery-spawned at Cultus Lake in the previous generation. Pedigree analysis revealed that six of the 20 sockeye salmon spawned in 2001 (grandparents) gave rise to a majority of the hatchery spawners in 2004 (parents) and provided more than 30% of the genes in the progeny that survived to maturity in the wild. Allele frequencies and genetic diversity of the age three progeny that returned to Cultus Lake from their marine migration in 2007 reflected the bottleneck, but its genetic signature was faint among the more genetically diverse age four fish that returned in 2008. Two-generation analysis of gene origin among fish resulting from 2004 hatchery production indicated that they contained the genetic diversity expected from 36 effective ancestors.
AbstractList Rigorous evaluation of the utility of captive breeding for the restoration of depleted wild salmonid fish populations has not been undertaken. In particular, little is known about the reproductive success of captively-bred individuals that are released back into an extant population and their capacity to assist in long-term population persistence. For the endangered Cultus Lake sockeye salmon population, we examined the potential genetic contribution of the first juvenile fish released from a captive breeding program upon their maturity in the natural Cultus Lake environment. Genetic analysis of 792 Cultus sockeye salmon that were spawned in captivity in 2004 and their adult progeny of 2007 and 2008 revealed a genetic bottleneck originating from 20 wild sockeye salmon hatchery-spawned at Cultus Lake in the previous generation. Pedigree analysis revealed that six of the 20 sockeye salmon spawned in 2001 (grandparents) gave rise to a majority of the hatchery spawners in 2004 (parents) and provided more than 30% of the genes in the progeny that survived to maturity in the wild. Allele frequencies and genetic diversity of the age three progeny that returned to Cultus Lake from their marine migration in 2007 reflected the bottleneck, but its genetic signature was faint among the more genetically diverse age four fish that returned in 2008. Two-generation analysis of gene origin among fish resulting from 2004 hatchery production indicated that they contained the genetic diversity expected from 36 effective ancestors.[PUBLICATION ABSTRACT]
Rigorous evaluation of the utility of captive breeding for the restoration of depleted wild salmonid fish populations has not been undertaken. In particular, little is known about the reproductive success of captively-bred individuals that are released back into an extant population and their capacity to assist in long-term population persistence. For the endangered Cultus Lake sockeye salmon population, we examined the potential genetic contribution of the first juvenile fish released from a captive breeding program upon their maturity in the natural Cultus Lake environment. Genetic analysis of 792 Cultus sockeye salmon that were spawned in captivity in 2004 and their adult progeny of 2007 and 2008 revealed a genetic bottleneck originating from 20 wild sockeye salmon hatchery-spawned at Cultus Lake in the previous generation. Pedigree analysis revealed that six of the 20 sockeye salmon spawned in 2001 (grandparents) gave rise to a majority of the hatchery spawners in 2004 (parents) and provided more than 30% of the genes in the progeny that survived to maturity in the wild. Allele frequencies and genetic diversity of the age three progeny that returned to Cultus Lake from their marine migration in 2007 reflected the bottleneck, but its genetic signature was faint among the more genetically diverse age four fish that returned in 2008. Two-generation analysis of gene origin among fish resulting from 2004 hatchery production indicated that they contained the genetic diversity expected from 36 effective ancestors.
Author Devlin, Robert H.
Wood, Chris C.
Supernault, K. Janine
Latham, Steve
Withler, Ruth E.
Author_xml – sequence: 1
  givenname: Ruth E.
  surname: Withler
  fullname: Withler, Ruth E.
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  organization: Pacific Biological Station, Fisheries and Oceans Canada
– sequence: 2
  givenname: Robert H.
  surname: Devlin
  fullname: Devlin, Robert H.
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  givenname: Steve
  surname: Latham
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  organization: Pacific Salmon Commission
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  givenname: Chris C.
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  organization: Pacific Biological Station, Fisheries and Oceans Canada
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  givenname: K. Janine
  surname: Supernault
  fullname: Supernault, K. Janine
  organization: Pacific Biological Station, Fisheries and Oceans Canada
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CitedBy_id crossref_primary_10_3390_d6020354
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crossref_primary_10_1186_s13223_018_0273_6
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Keywords Sockeye salmon
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Captive breeding
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  doi: 10.1007/s10592-007-9466-0
  contributor:
    fullname: CC Kozfkay
– volume: 275
  start-page: 703
  year: 2008
  ident: 246_CR44
  publication-title: Proc R Soc B
  doi: 10.1098/rspb.2007.0989
  contributor:
    fullname: M Szulkin
SSID ssj0016271
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Snippet Rigorous evaluation of the utility of captive breeding for the restoration of depleted wild salmonid fish populations has not been undertaken. In particular,...
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SubjectTerms Animal Genetics and Genomics
Animal reproduction
Biodiversity
Biomedical and Life Sciences
Conservation biology
Conservation Biology/Ecology
Cultus
Ecology
Endangered & extinct species
Evolutionary Biology
Fish hatcheries
Fish populations
Genetic diversity
Lakes
Life Sciences
Plant Genetics and Genomics
Population genetics
Reproduction
Research Article
Salmon
Salmonidae
Title Analysis of gene origin in the first adult returns to the Cultus sockeye salmon captive breeding program
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Volume 12
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