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A global cline in a colour polymorphism suggests a limited contribution of gene flow towards the recovery of a heavily exploited marine mammal

Evaluating how populations are connected by migration is important for understanding species resilience because gene flow can facilitate recovery from demographic declines. We therefore investigated the extent to which migration may have contributed to the global recovery of the Antarctic fur seal (...

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Autores principales: Hoffman, J. I., Bauer, E., Paijmans, A. J., Humble, E., Beckmann, L. M., Kubetschek, C., Christaller, F., Kröcker, N., Fuchs, B., Moreras, A., Shihlomule, Y. D., Bester, M. N., Cleary, A. C., De Bruyn, P. J. N., Forcada, J., Goebel, M. E., Goldsworthy, S. D., Guinet, C., Hoelzel, A. R., Lydersen, C., Kovacs, K. M., Lowther, A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6227926/
https://www.ncbi.nlm.nih.gov/pubmed/30473858
http://dx.doi.org/10.1098/rsos.181227
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author Hoffman, J. I.
Bauer, E.
Paijmans, A. J.
Humble, E.
Beckmann, L. M.
Kubetschek, C.
Christaller, F.
Kröcker, N.
Fuchs, B.
Moreras, A.
Shihlomule, Y. D.
Bester, M. N.
Cleary, A. C.
De Bruyn, P. J. N.
Forcada, J.
Goebel, M. E.
Goldsworthy, S. D.
Guinet, C.
Hoelzel, A. R.
Lydersen, C.
Kovacs, K. M.
Lowther, A.
author_facet Hoffman, J. I.
Bauer, E.
Paijmans, A. J.
Humble, E.
Beckmann, L. M.
Kubetschek, C.
Christaller, F.
Kröcker, N.
Fuchs, B.
Moreras, A.
Shihlomule, Y. D.
Bester, M. N.
Cleary, A. C.
De Bruyn, P. J. N.
Forcada, J.
Goebel, M. E.
Goldsworthy, S. D.
Guinet, C.
Hoelzel, A. R.
Lydersen, C.
Kovacs, K. M.
Lowther, A.
author_sort Hoffman, J. I.
collection PubMed
description Evaluating how populations are connected by migration is important for understanding species resilience because gene flow can facilitate recovery from demographic declines. We therefore investigated the extent to which migration may have contributed to the global recovery of the Antarctic fur seal (Arctocephalus gazella), a circumpolar distributed marine mammal that was brought to the brink of extinction by the sealing industry in the eighteenth and nineteenth centuries. It is widely believed that animals emigrating from South Georgia, where a relict population escaped sealing, contributed to the re-establishment of formerly occupied breeding colonies across the geographical range of the species. To investigate this, we interrogated a genetic polymorphism (S291F) in the melanocortin 1 receptor gene, which is responsible for a cream-coloured phenotype that is relatively abundant at South Georgia and which appears to have recently spread to localities as far afield as Marion Island in the sub-Antarctic Indian Ocean. By sequencing a short region of this gene in 1492 pups from eight breeding colonies, we showed that S291F frequency rapidly declines with increasing geographical distance from South Georgia, consistent with locally restricted gene flow from South Georgia mainly to the South Shetland Islands and Bouvetøya. The S291F allele was not detected farther afield, suggesting that although emigrants from South Georgia may have been locally important, they are unlikely to have played a major role in the recovery of geographically more distant populations.
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spelling pubmed-62279262018-11-23 A global cline in a colour polymorphism suggests a limited contribution of gene flow towards the recovery of a heavily exploited marine mammal Hoffman, J. I. Bauer, E. Paijmans, A. J. Humble, E. Beckmann, L. M. Kubetschek, C. Christaller, F. Kröcker, N. Fuchs, B. Moreras, A. Shihlomule, Y. D. Bester, M. N. Cleary, A. C. De Bruyn, P. J. N. Forcada, J. Goebel, M. E. Goldsworthy, S. D. Guinet, C. Hoelzel, A. R. Lydersen, C. Kovacs, K. M. Lowther, A. R Soc Open Sci Biology (Whole Organism) Evaluating how populations are connected by migration is important for understanding species resilience because gene flow can facilitate recovery from demographic declines. We therefore investigated the extent to which migration may have contributed to the global recovery of the Antarctic fur seal (Arctocephalus gazella), a circumpolar distributed marine mammal that was brought to the brink of extinction by the sealing industry in the eighteenth and nineteenth centuries. It is widely believed that animals emigrating from South Georgia, where a relict population escaped sealing, contributed to the re-establishment of formerly occupied breeding colonies across the geographical range of the species. To investigate this, we interrogated a genetic polymorphism (S291F) in the melanocortin 1 receptor gene, which is responsible for a cream-coloured phenotype that is relatively abundant at South Georgia and which appears to have recently spread to localities as far afield as Marion Island in the sub-Antarctic Indian Ocean. By sequencing a short region of this gene in 1492 pups from eight breeding colonies, we showed that S291F frequency rapidly declines with increasing geographical distance from South Georgia, consistent with locally restricted gene flow from South Georgia mainly to the South Shetland Islands and Bouvetøya. The S291F allele was not detected farther afield, suggesting that although emigrants from South Georgia may have been locally important, they are unlikely to have played a major role in the recovery of geographically more distant populations. The Royal Society 2018-10-17 /pmc/articles/PMC6227926/ /pubmed/30473858 http://dx.doi.org/10.1098/rsos.181227 Text en © 2018 The Authors. http://creativecommons.org/licenses/by/4.0/ Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Biology (Whole Organism)
Hoffman, J. I.
Bauer, E.
Paijmans, A. J.
Humble, E.
Beckmann, L. M.
Kubetschek, C.
Christaller, F.
Kröcker, N.
Fuchs, B.
Moreras, A.
Shihlomule, Y. D.
Bester, M. N.
Cleary, A. C.
De Bruyn, P. J. N.
Forcada, J.
Goebel, M. E.
Goldsworthy, S. D.
Guinet, C.
Hoelzel, A. R.
Lydersen, C.
Kovacs, K. M.
Lowther, A.
A global cline in a colour polymorphism suggests a limited contribution of gene flow towards the recovery of a heavily exploited marine mammal
title A global cline in a colour polymorphism suggests a limited contribution of gene flow towards the recovery of a heavily exploited marine mammal
title_full A global cline in a colour polymorphism suggests a limited contribution of gene flow towards the recovery of a heavily exploited marine mammal
title_fullStr A global cline in a colour polymorphism suggests a limited contribution of gene flow towards the recovery of a heavily exploited marine mammal
title_full_unstemmed A global cline in a colour polymorphism suggests a limited contribution of gene flow towards the recovery of a heavily exploited marine mammal
title_short A global cline in a colour polymorphism suggests a limited contribution of gene flow towards the recovery of a heavily exploited marine mammal
title_sort global cline in a colour polymorphism suggests a limited contribution of gene flow towards the recovery of a heavily exploited marine mammal
topic Biology (Whole Organism)
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6227926/
https://www.ncbi.nlm.nih.gov/pubmed/30473858
http://dx.doi.org/10.1098/rsos.181227
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