Mitochondrial Evidence for Panmixia despite Perceived Barriers to Gene Flow in a Widely Distributed Waterbird
We examined the mitochondrial genetic structure of American white pelicans (Pelecanus erythrorhynchos) to: 1) verify or refute whether American white pelicans are panmictic and 2) understand if any lack of genetic structure is the result of contemporary processes or historical phenomena. Sequence an...
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Published in | The Journal of heredity Vol. 102; no. 5; pp. 584 - 592 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
United States
Oxford University Press
01.09.2011
Oxford Publishing Limited (England) |
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Abstract | We examined the mitochondrial genetic structure of American white pelicans (Pelecanus erythrorhynchos) to: 1) verify or refute whether American white pelicans are panmictic and 2) understand if any lack of genetic structure is the result of contemporary processes or historical phenomena. Sequence analysis of mitochondrial DNA control region haplotypes of 367 individuals from 19 colonies located across their North American range revealed a lack of population genetic or phylogeographic structure. This lack of structure was unexpected because: 1) Major geographic barriers such as the North American Continental Divide are thought to limit dispersal; 2) Differences in migratory behavior are expected to promote population differentiation; and 3) Many widespread North American migratory bird species show historic patterns of differentiation resulting from having inhabited multiple glacial refugia. Further, high haplotype diversity and many rare haplotypes are maintained across the species' distribution, despite frequent local extinctions and recolonizations that are expected to decrease diversity. Our findings suggest that American white pelicans have a high effective population size and low natal philopatry. We suggest that the rangewide panmixia we observed in American white pelicans is due to high historical and contemporary gene flow, enabled by high mobility and a lack of effective physical or behavioral barriers. |
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AbstractList | We examined the mitochondrial genetic structure of American white pelicans (Pelecanus erythrorhynchos) to: 1) verify or refute whether American white pelicans ate panmictic and 2) understand if any lack of genetic structure is the result of contemporary processes or historical phenomena. Sequence analysis of mitochondrial DNA control region haplotypes of 367 individuals from 19 colonies located across their North American range revealed a lack of population genetic or phylogeographic structure. This lack of structure was unexpected because: 1) Major geographic barriers such as the North American Continental Divide are thought to limit dispersal; 2) Differences in migratory behavior are expected to promote differentiation resulting from having inhabited multiple glacial refugia. Further, high haplotype diversity and many rare haplotypes are maintained across the species' distribution, despite frequent local extinctions and recolonizations that are expected to decrease diversity. Our findings suggest that American white pelicans have a high effective population size and low natal philopatry. We suggest that the rangewide panmixia we observed in American white pelicans is due to high historical and contemporary gene flow, enabled by high mobility and a lack of effective physical or behavioral barriers. [PUBLICATION ABSTRACT] We examined the mitochondrial genetic structure of American white pelicans (Pelecanus erythrorhynchos) to: 1) verify or refute whether American white pelicans are panmictic and 2) understand if any lack of genetic structure is the result of contemporary processes or historical phenomena. Sequence analysis of mitochondrial DNA control region haplotypes of 367 individuals from 19 colonies located across their North American range revealed a lack of population genetic or phylogeographic structure. This lack of structure was unexpected because: 1) Major geographic barriers such as the North American Continental Divide are thought to limit dispersal; 2) Differences in migratory behavior are expected to promote population differentiation; and 3) Many widespread North American migratory bird species show historic patterns of differentiation resulting from having inhabited multiple glacial refugia. Further, high haplotype diversity and many rare haplotypes are maintained across the species' distribution, despite frequent local extinctions and recolonizations that are expected to decrease diversity. Our findings suggest that American white pelicans have a high effective population size and low natal philopatry. We suggest that the rangewide panmixia we observed in American white pelicans is due to high historical and contemporary gene flow, enabled by high mobility and a lack of effective physical or behavioral barriers. |
Author | Kyle, Christopher J. Somers, Christopher M. Reudink, Matthew W. Nocera, Joseph J. Green, M. Clay Oomen, Rebekah A. |
Author_xml | – sequence: 1 givenname: Rebekah A. surname: Oomen fullname: Oomen, Rebekah A. email: rebekahoomen@gmail.com – sequence: 2 givenname: Matthew W. surname: Reudink fullname: Reudink, Matthew W. – sequence: 3 givenname: Joseph J. surname: Nocera fullname: Nocera, Joseph J. – sequence: 4 givenname: Christopher M. surname: Somers fullname: Somers, Christopher M. – sequence: 5 givenname: M. Clay surname: Green fullname: Green, M. Clay – sequence: 6 givenname: Christopher J. surname: Kyle fullname: Kyle, Christopher J. |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/21705489$$D View this record in MEDLINE/PubMed |
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Copyright | The American Genetic Association. 2011. All rights reserved. For permissions, please email: journals.permissions@oup.com. 2011 Copyright Oxford Publishing Limited(England) Sep/Oct 2011 |
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Keywords | gene flow colonial waterbird panmixia American white pelican Pelecanus erythrorhynchos mitochondrial DNA |
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Snippet | We examined the mitochondrial genetic structure of American white pelicans (Pelecanus erythrorhynchos) to: 1) verify or refute whether American white pelicans... |
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SubjectTerms | Animal Migration Animals Birds Birds - classification Birds - genetics DNA, Mitochondrial - genetics Gene Flow Genes Genetic Variation Genetics, Population Haplotypes Marine Mitochondrial DNA Pelecanus erythrorhynchos Phylogeny Phylogeography Studies |
Title | Mitochondrial Evidence for Panmixia despite Perceived Barriers to Gene Flow in a Widely Distributed Waterbird |
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