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Eocene intra-plate shortening responsible for the rise of a faunal pathway in the northeastern Caribbean realm

Intriguing latest Eocene land-faunal dispersals between South America and the Greater Antilles (northern Caribbean) has inspired the hypothesis of the GAARlandia (Greater Antilles Aves Ridge) land bridge. This landbridge, however, should have crossed the Caribbean oceanic plate, and the geological e...

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Autores principales: Philippon, Mélody, Cornée, Jean-Jacques, Münch, Philippe, van Hinsbergen, Douwe J. J., BouDagher-Fadel, Marcelle, Gailler, Lydie, Boschman, Lydian M., Quillevere, Fredéric, Montheil, Leny, Gay, Aurelien, Lebrun, Jean Fredéric, Lallemand, Serge, Marivaux, Laurent, Antoine, Pierre-Olivier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7575083/
https://www.ncbi.nlm.nih.gov/pubmed/33079958
http://dx.doi.org/10.1371/journal.pone.0241000
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author Philippon, Mélody
Cornée, Jean-Jacques
Münch, Philippe
van Hinsbergen, Douwe J. J.
BouDagher-Fadel, Marcelle
Gailler, Lydie
Boschman, Lydian M.
Quillevere, Fredéric
Montheil, Leny
Gay, Aurelien
Lebrun, Jean Fredéric
Lallemand, Serge
Marivaux, Laurent
Antoine, Pierre-Olivier
author_facet Philippon, Mélody
Cornée, Jean-Jacques
Münch, Philippe
van Hinsbergen, Douwe J. J.
BouDagher-Fadel, Marcelle
Gailler, Lydie
Boschman, Lydian M.
Quillevere, Fredéric
Montheil, Leny
Gay, Aurelien
Lebrun, Jean Fredéric
Lallemand, Serge
Marivaux, Laurent
Antoine, Pierre-Olivier
author_sort Philippon, Mélody
collection PubMed
description Intriguing latest Eocene land-faunal dispersals between South America and the Greater Antilles (northern Caribbean) has inspired the hypothesis of the GAARlandia (Greater Antilles Aves Ridge) land bridge. This landbridge, however, should have crossed the Caribbean oceanic plate, and the geological evolution of its rise and demise, or its geodynamic forcing, remain unknown. Here we present the results of a land-sea survey from the northeast Caribbean plate, combined with chronostratigraphic data, revealing a regional episode of mid to late Eocene, trench-normal, E-W shortening and crustal thickening by ∼25%. This shortening led to a regional late Eocene–early Oligocene hiatus in the sedimentary record revealing the location of an emerged land (the Greater Antilles-Northern Lesser Antilles, or GrANoLA, landmass), consistent with the GAARlandia hypothesis. Subsequent submergence is explained by combined trench-parallel extension and thermal relaxation following a shift of arc magmatism, expressed by a regional early Miocene transgression. We tentatively link the NE Caribbean intra-plate shortening to a well-known absolute and relative North American and Caribbean plate motion change, which may provide focus for the search of the remaining connection between ‘GrANoLA’ land and South America, through the Aves Ridge or Lesser Antilles island arc. Our study highlights the how regional geodynamic evolution may have driven paleogeographic change that is still reflected in current biology.
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spelling pubmed-75750832020-10-26 Eocene intra-plate shortening responsible for the rise of a faunal pathway in the northeastern Caribbean realm Philippon, Mélody Cornée, Jean-Jacques Münch, Philippe van Hinsbergen, Douwe J. J. BouDagher-Fadel, Marcelle Gailler, Lydie Boschman, Lydian M. Quillevere, Fredéric Montheil, Leny Gay, Aurelien Lebrun, Jean Fredéric Lallemand, Serge Marivaux, Laurent Antoine, Pierre-Olivier PLoS One Research Article Intriguing latest Eocene land-faunal dispersals between South America and the Greater Antilles (northern Caribbean) has inspired the hypothesis of the GAARlandia (Greater Antilles Aves Ridge) land bridge. This landbridge, however, should have crossed the Caribbean oceanic plate, and the geological evolution of its rise and demise, or its geodynamic forcing, remain unknown. Here we present the results of a land-sea survey from the northeast Caribbean plate, combined with chronostratigraphic data, revealing a regional episode of mid to late Eocene, trench-normal, E-W shortening and crustal thickening by ∼25%. This shortening led to a regional late Eocene–early Oligocene hiatus in the sedimentary record revealing the location of an emerged land (the Greater Antilles-Northern Lesser Antilles, or GrANoLA, landmass), consistent with the GAARlandia hypothesis. Subsequent submergence is explained by combined trench-parallel extension and thermal relaxation following a shift of arc magmatism, expressed by a regional early Miocene transgression. We tentatively link the NE Caribbean intra-plate shortening to a well-known absolute and relative North American and Caribbean plate motion change, which may provide focus for the search of the remaining connection between ‘GrANoLA’ land and South America, through the Aves Ridge or Lesser Antilles island arc. Our study highlights the how regional geodynamic evolution may have driven paleogeographic change that is still reflected in current biology. Public Library of Science 2020-10-20 /pmc/articles/PMC7575083/ /pubmed/33079958 http://dx.doi.org/10.1371/journal.pone.0241000 Text en © 2020 Philippon et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Philippon, Mélody
Cornée, Jean-Jacques
Münch, Philippe
van Hinsbergen, Douwe J. J.
BouDagher-Fadel, Marcelle
Gailler, Lydie
Boschman, Lydian M.
Quillevere, Fredéric
Montheil, Leny
Gay, Aurelien
Lebrun, Jean Fredéric
Lallemand, Serge
Marivaux, Laurent
Antoine, Pierre-Olivier
Eocene intra-plate shortening responsible for the rise of a faunal pathway in the northeastern Caribbean realm
title Eocene intra-plate shortening responsible for the rise of a faunal pathway in the northeastern Caribbean realm
title_full Eocene intra-plate shortening responsible for the rise of a faunal pathway in the northeastern Caribbean realm
title_fullStr Eocene intra-plate shortening responsible for the rise of a faunal pathway in the northeastern Caribbean realm
title_full_unstemmed Eocene intra-plate shortening responsible for the rise of a faunal pathway in the northeastern Caribbean realm
title_short Eocene intra-plate shortening responsible for the rise of a faunal pathway in the northeastern Caribbean realm
title_sort eocene intra-plate shortening responsible for the rise of a faunal pathway in the northeastern caribbean realm
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7575083/
https://www.ncbi.nlm.nih.gov/pubmed/33079958
http://dx.doi.org/10.1371/journal.pone.0241000
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