Data

Data from: Local genetic patchiness but no regional differences between Indo-West Pacific populations of the dogtooth tuna Gymnosarda unicolor

The University of Western Australia
Bentley, Blair ; Harvey, Euan Sinclair ; Newman, S.J. ; Welch, D.J. ; Smith, A.K. ; Kennington, Winn
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ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=info:doi10.5061/dryad.44kh3&rft.title=Data from: Local genetic patchiness but no regional differences between Indo-West Pacific populations of the dogtooth tuna Gymnosarda unicolor&rft.identifier=10.5061/dryad.44kh3&rft.publisher=DRYAD&rft.description=Microsatellite data - dogtooth: Excel file containing microsatellite data. Missing data are coded with -9. mtDNA data file: This is an is an ARLEQUIN input file containing mtDNA data for each population. Physical barriers can have profound impacts on dispersal in marine species. Here, we investigate population structure and levels of relatedness among individuals of the coral reef associated fish, the dogtooth tuna Gymnosarda unicolor, collected from 15 sites across the Indo-West Pacific region. We screened 92 individuals for genetic variation at 13 nuclear microsatellite loci and the cytochrome oxidase subunit 1 (CO1) mitochondrial DNA (mtDNA) gene. We detected no genetic differentiation between ocean basins or between sites within ocean basins, suggesting G. unicolor possesses a highly mobile larval or juvenile stage. In addition, the lack of deep evolutionary mtDNA divergences suggests gene flow was also not limited historically. However, comparisons of relatedness between pairs of individuals revealed that individuals collected from the same site were more related to each other, on average, than individuals collected from different sites. Such patterns are consistent with chaotic genetic patchiness, a possible consequence of high variance in reproductive success and patchy, local recruitment.&rft.creator=Bentley, Blair &rft.creator=Harvey, Euan Sinclair &rft.creator=Newman, S.J. &rft.creator=Welch, D.J. &rft.creator=Smith, A.K. &rft.creator=Kennington, Winn &rft.date=2014&rft.relation=http://research-repository.uwa.edu.au/en/publications/38e5e4f4-974b-41a9-bde5-da0a56074c79&rft.coverage=Indo-West Pacific region&rft_subject=Spatial genetic structure&rft_subject=microsatellites&rft_subject=mtDNA&rft_subject=ephemeral genetic patchiness&rft_subject=Gymnosarda unicolor&rft_subject=Holocene&rft.type=dataset&rft.language=English Access the data

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Microsatellite data - dogtooth: Excel file containing microsatellite data. Missing data are coded with -9. mtDNA data file: This is an is an ARLEQUIN input file containing mtDNA data for each population. Physical barriers can have profound impacts on dispersal in marine species. Here, we investigate population structure and levels of relatedness among individuals of the coral reef associated fish, the dogtooth tuna Gymnosarda unicolor, collected from 15 sites across the Indo-West Pacific region. We screened 92 individuals for genetic variation at 13 nuclear microsatellite loci and the cytochrome oxidase subunit 1 (CO1) mitochondrial DNA (mtDNA) gene. We detected no genetic differentiation between ocean basins or between sites within ocean basins, suggesting G. unicolor possesses a highly mobile larval or juvenile stage. In addition, the lack of deep evolutionary mtDNA divergences suggests gene flow was also not limited historically. However, comparisons of relatedness between pairs of individuals revealed that individuals collected from the same site were more related to each other, on average, than individuals collected from different sites. Such patterns are consistent with chaotic genetic patchiness, a possible consequence of high variance in reproductive success and patchy, local recruitment.

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Associated Persons
S.J. Newman (Creator); D.J. Welch (Creator); A.K. Smith (Creator)

Issued: 2014-06-24

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Spatial Coverage And Location

text: Indo-West Pacific region

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