Cargando…

Giant Galápagos tortoises; molecular genetic analyses identify a trans-island hybrid in a repatriation program of an endangered taxon

BACKGROUND: Giant Galápagos tortoises on the island of Española have been the focus of an intensive captive breeding-repatriation programme for over 35 years that saved the taxon from extinction. However, analysis of 118 samples from released individuals indicated that the bias sex ratio and large v...

Descripción completa

Detalles Bibliográficos
Autores principales: Milinkovitch, Michel C, Monteyne, Daniel, Russello, Michael, Gibbs, James P, Snell, Howard L, Tapia, Washington, Marquez, Cruz, Caccone, Adalgisa, Powell, Jeffrey R
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1820773/
https://www.ncbi.nlm.nih.gov/pubmed/17302982
http://dx.doi.org/10.1186/1472-6785-7-2
_version_ 1782132648480604160
author Milinkovitch, Michel C
Monteyne, Daniel
Russello, Michael
Gibbs, James P
Snell, Howard L
Tapia, Washington
Marquez, Cruz
Caccone, Adalgisa
Powell, Jeffrey R
author_facet Milinkovitch, Michel C
Monteyne, Daniel
Russello, Michael
Gibbs, James P
Snell, Howard L
Tapia, Washington
Marquez, Cruz
Caccone, Adalgisa
Powell, Jeffrey R
author_sort Milinkovitch, Michel C
collection PubMed
description BACKGROUND: Giant Galápagos tortoises on the island of Española have been the focus of an intensive captive breeding-repatriation programme for over 35 years that saved the taxon from extinction. However, analysis of 118 samples from released individuals indicated that the bias sex ratio and large variance in reproductive success among the 15 breeders has severely reduced the effective population size (N(e)). RESULTS: We report here that an analysis of an additional 473 captive-bred tortoises released back to the island reveals an individual (E1465) that exhibits nuclear microsatellite alleles not found in any of the 15 breeders. Statistical analyses incorporating genotypes of 304 field-sampled individuals from all populations on the major islands indicate that E1465 is most probably a hybrid between an Española female tortoise and a male from the island of Pinzón, likely present on Española due to human transport. CONCLUSION: Removal of E1465 as well as its father and possible (half-)siblings is warranted to prevent further contamination within this taxon of particular conservation significance. Despite this detected single contamination, it is highly noteworthy to emphasize the success of this repatriation program conducted over nearly 40 years and involving release of over 2000 captive-bred tortoises that now reproduce in situ. The incorporation of molecular genetic analysis of the program is providing guidance that will aid in monitoring the genetic integrity of this ambitious effort to restore a unique linage of a spectacular animal.
format Text
id pubmed-1820773
institution National Center for Biotechnology Information
language English
publishDate 2007
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-18207732007-03-13 Giant Galápagos tortoises; molecular genetic analyses identify a trans-island hybrid in a repatriation program of an endangered taxon Milinkovitch, Michel C Monteyne, Daniel Russello, Michael Gibbs, James P Snell, Howard L Tapia, Washington Marquez, Cruz Caccone, Adalgisa Powell, Jeffrey R BMC Ecol Research Article BACKGROUND: Giant Galápagos tortoises on the island of Española have been the focus of an intensive captive breeding-repatriation programme for over 35 years that saved the taxon from extinction. However, analysis of 118 samples from released individuals indicated that the bias sex ratio and large variance in reproductive success among the 15 breeders has severely reduced the effective population size (N(e)). RESULTS: We report here that an analysis of an additional 473 captive-bred tortoises released back to the island reveals an individual (E1465) that exhibits nuclear microsatellite alleles not found in any of the 15 breeders. Statistical analyses incorporating genotypes of 304 field-sampled individuals from all populations on the major islands indicate that E1465 is most probably a hybrid between an Española female tortoise and a male from the island of Pinzón, likely present on Española due to human transport. CONCLUSION: Removal of E1465 as well as its father and possible (half-)siblings is warranted to prevent further contamination within this taxon of particular conservation significance. Despite this detected single contamination, it is highly noteworthy to emphasize the success of this repatriation program conducted over nearly 40 years and involving release of over 2000 captive-bred tortoises that now reproduce in situ. The incorporation of molecular genetic analysis of the program is providing guidance that will aid in monitoring the genetic integrity of this ambitious effort to restore a unique linage of a spectacular animal. BioMed Central 2007-02-15 /pmc/articles/PMC1820773/ /pubmed/17302982 http://dx.doi.org/10.1186/1472-6785-7-2 Text en Copyright © 2007 Milinkovitch et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Milinkovitch, Michel C
Monteyne, Daniel
Russello, Michael
Gibbs, James P
Snell, Howard L
Tapia, Washington
Marquez, Cruz
Caccone, Adalgisa
Powell, Jeffrey R
Giant Galápagos tortoises; molecular genetic analyses identify a trans-island hybrid in a repatriation program of an endangered taxon
title Giant Galápagos tortoises; molecular genetic analyses identify a trans-island hybrid in a repatriation program of an endangered taxon
title_full Giant Galápagos tortoises; molecular genetic analyses identify a trans-island hybrid in a repatriation program of an endangered taxon
title_fullStr Giant Galápagos tortoises; molecular genetic analyses identify a trans-island hybrid in a repatriation program of an endangered taxon
title_full_unstemmed Giant Galápagos tortoises; molecular genetic analyses identify a trans-island hybrid in a repatriation program of an endangered taxon
title_short Giant Galápagos tortoises; molecular genetic analyses identify a trans-island hybrid in a repatriation program of an endangered taxon
title_sort giant galápagos tortoises; molecular genetic analyses identify a trans-island hybrid in a repatriation program of an endangered taxon
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1820773/
https://www.ncbi.nlm.nih.gov/pubmed/17302982
http://dx.doi.org/10.1186/1472-6785-7-2
work_keys_str_mv AT milinkovitchmichelc giantgalapagostortoisesmoleculargeneticanalysesidentifyatransislandhybridinarepatriationprogramofanendangeredtaxon
AT monteynedaniel giantgalapagostortoisesmoleculargeneticanalysesidentifyatransislandhybridinarepatriationprogramofanendangeredtaxon
AT russellomichael giantgalapagostortoisesmoleculargeneticanalysesidentifyatransislandhybridinarepatriationprogramofanendangeredtaxon
AT gibbsjamesp giantgalapagostortoisesmoleculargeneticanalysesidentifyatransislandhybridinarepatriationprogramofanendangeredtaxon
AT snellhowardl giantgalapagostortoisesmoleculargeneticanalysesidentifyatransislandhybridinarepatriationprogramofanendangeredtaxon
AT tapiawashington giantgalapagostortoisesmoleculargeneticanalysesidentifyatransislandhybridinarepatriationprogramofanendangeredtaxon
AT marquezcruz giantgalapagostortoisesmoleculargeneticanalysesidentifyatransislandhybridinarepatriationprogramofanendangeredtaxon
AT cacconeadalgisa giantgalapagostortoisesmoleculargeneticanalysesidentifyatransislandhybridinarepatriationprogramofanendangeredtaxon
AT powelljeffreyr giantgalapagostortoisesmoleculargeneticanalysesidentifyatransislandhybridinarepatriationprogramofanendangeredtaxon