Severe Inbreeding and Small Effective Number of Breeders in a Formerly Abundant Marine Fish

In contrast to freshwater fish it is presumed that marine fish are unlikely to spawn with close relatives due to the dilution effect of large breeding populations and their propensity for movement and reproductive mixing. Inbreeding is therefore not typically a focal concern of marine fish managemen...

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Vydané v:PloS one Ročník 8; číslo 6; s. e66126
Hlavní autori: O'Leary, Shannon J., Hice, Lyndie A., Feldheim, Kevin A., Frisk, Michael G., McElroy, Anne E., Fast, Mark D., Chapman, Demian D.
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: United States Public Library of Science 07.06.2013
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Abstract In contrast to freshwater fish it is presumed that marine fish are unlikely to spawn with close relatives due to the dilution effect of large breeding populations and their propensity for movement and reproductive mixing. Inbreeding is therefore not typically a focal concern of marine fish management. We measured the effective number of breeders in 6 New York estuaries for winter flounder (Pseudopleuronectes americanus), a formerly abundant fish, using 11 microsatellite markers (6-56 alleles per locus). The effective number of breeders for 1-2 years was remarkably small, with point estimates ranging from 65-289 individuals. Excess homozygosity was detected at 10 loci in all bays (FIS = 0.169-0.283) and individuals exhibited high average internal relatedness (IR; mean = 0.226). These both indicate that inbreeding is very common in all bays, after testing for and ruling out alternative explanations such as technical and sampling artifacts. This study demonstrates that even historically common marine fish can be prone to inbreeding, a factor that should be considered in fisheries management and conservation plans.
AbstractList In contrast to freshwater fish it is presumed that marine fish are unlikely to spawn with close relatives due to the dilution effect of large breeding populations and their propensity for movement and reproductive mixing. Inbreeding is therefore not typically a focal concern of marine fish management. We measured the effective number of breeders in 6 New York estuaries for winter flounder (Pseudopleuronectes americanus), a formerly abundant fish, using 11 microsatellite markers (6–56 alleles per locus). The effective number of breeders for 1–2 years was remarkably small, with point estimates ranging from 65–289 individuals. Excess homozygosity was detected at 10 loci in all bays (FIS = 0.169–0.283) and individuals exhibited high average internal relatedness (IR; mean = 0.226). These both indicate that inbreeding is very common in all bays, after testing for and ruling out alternative explanations such as technical and sampling artifacts. This study demonstrates that even historically common marine fish can be prone to inbreeding, a factor that should be considered in fisheries management and conservation plans.
In contrast to freshwater fish it is presumed that marine fish are unlikely to spawn with close relatives due to the dilution effect of large breeding populations and their propensity for movement and reproductive mixing. Inbreeding is therefore not typically a focal concern of marine fish management. We measured the effective number of breeders in 6 New York estuaries for winter flounder (Pseudopleuronectes americanus), a formerly abundant fish, using 11 microsatellite markers (6-56 alleles per locus). The effective number of breeders for 1-2 years was remarkably small, with point estimates ranging from 65-289 individuals. Excess homozygosity was detected at 10 loci in all bays (F.sub.IS = 0.169-0.283) and individuals exhibited high average internal relatedness (IR; mean = 0.226). These both indicate that inbreeding is very common in all bays, after testing for and ruling out alternative explanations such as technical and sampling artifacts. This study demonstrates that even historically common marine fish can be prone to inbreeding, a factor that should be considered in fisheries management and conservation plans.
In contrast to freshwater fish it is presumed that marine fish are unlikely to spawn with close relatives due to the dilution effect of large breeding populations and their propensity for movement and reproductive mixing. Inbreeding is therefore not typically a focal concern of marine fish management. We measured the effective number of breeders in 6 New York estuaries for winter flounder (Pseudopleuronectes americanus), a formerly abundant fish, using 11 microsatellite markers (6-56 alleles per locus). The effective number of breeders for 1-2 years was remarkably small, with point estimates ranging from 65-289 individuals. Excess homozygosity was detected at 10 loci in all bays (FIS = 0.169-0.283) and individuals exhibited high average internal relatedness (IR; mean = 0.226). These both indicate that inbreeding is very common in all bays, after testing for and ruling out alternative explanations such as technical and sampling artifacts. This study demonstrates that even historically common marine fish can be prone to inbreeding, a factor that should be considered in fisheries management and conservation plans.In contrast to freshwater fish it is presumed that marine fish are unlikely to spawn with close relatives due to the dilution effect of large breeding populations and their propensity for movement and reproductive mixing. Inbreeding is therefore not typically a focal concern of marine fish management. We measured the effective number of breeders in 6 New York estuaries for winter flounder (Pseudopleuronectes americanus), a formerly abundant fish, using 11 microsatellite markers (6-56 alleles per locus). The effective number of breeders for 1-2 years was remarkably small, with point estimates ranging from 65-289 individuals. Excess homozygosity was detected at 10 loci in all bays (FIS = 0.169-0.283) and individuals exhibited high average internal relatedness (IR; mean = 0.226). These both indicate that inbreeding is very common in all bays, after testing for and ruling out alternative explanations such as technical and sampling artifacts. This study demonstrates that even historically common marine fish can be prone to inbreeding, a factor that should be considered in fisheries management and conservation plans.
Audience Academic
Author McElroy, Anne E.
Fast, Mark D.
Hice, Lyndie A.
Feldheim, Kevin A.
Chapman, Demian D.
O'Leary, Shannon J.
Frisk, Michael G.
AuthorAffiliation Macquarie University, Australia
1 School of Marine and Atmospheric Science, Stony Brook University, Stony Brook, New York, United States of America
2 Pritzker Laboratory for Molecular Systematics and Evolution, The Field Museum, Chicago, Illinois, United States of America
3 Atlantic Veterinary College, University of Prince Edward Island, Charlottetown, Canada
4 Institute of Ocean Conservation Science, Stony Brook, New York, United States of America
AuthorAffiliation_xml – name: 3 Atlantic Veterinary College, University of Prince Edward Island, Charlottetown, Canada
– name: 4 Institute of Ocean Conservation Science, Stony Brook, New York, United States of America
– name: Macquarie University, Australia
– name: 1 School of Marine and Atmospheric Science, Stony Brook University, Stony Brook, New York, United States of America
– name: 2 Pritzker Laboratory for Molecular Systematics and Evolution, The Field Museum, Chicago, Illinois, United States of America
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  givenname: Shannon J.
  surname: O'Leary
  fullname: O'Leary, Shannon J.
– sequence: 2
  givenname: Lyndie A.
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/23762473$$D View this record in MEDLINE/PubMed
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ContentType Journal Article
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2013 O'Leary et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License: https://creativecommons.org/licenses/by/4.0/ (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.
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Competing Interests: The authors have declared that no competing interests exist.
Conceived and designed the experiments: LAH MGF AEM MDF DDC SJO. Performed the experiments: SJO KAF LAH. Analyzed the data: SJO KAF. Contributed reagents/materials/analysis tools: LAH MGF AEM DDC KAF. Wrote the paper: SJO DDC LAH MGF.
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StartPage e66126
SubjectTerms Agriculture
Alleles
Animal reproduction
Animals
Atmospheric sciences
Bays
Behavior
Biodiversity
Biology
Breeding
Confidence Intervals
Conservation
Dilution
Ecosystems
Endangered & extinct species
Estuaries
Fish
Fisheries
Fisheries management
Fishery management
Fishes
Fishes - genetics
Fishes - growth & development
Fishing
Flounder
Freshwater fish
Genetic diversity
Genetic Loci - genetics
Genetic markers
Genetic Variation
Geography
Heterozygote
Historical account
Homozygosity
Hypotheses
Inbreeding
Laboratories
Loci
Marine fish
Marine fishes
Microsatellite Repeats - genetics
Microsatellites
Morone saxatilis
New York
Pleuronectes platessa
Population genetics
Pseudopleuronectes americanus
Recreation
Sample Size
Seawater
Studies
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Title Severe Inbreeding and Small Effective Number of Breeders in a Formerly Abundant Marine Fish
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