Oceanic circulation models help to predict global biogeography of pelagic yellow-bellied sea snake
Identifieur interne : 003A31 ( Ncbi/Merge ); précédent : 003A30; suivant : 003A32Oceanic circulation models help to predict global biogeography of pelagic yellow-bellied sea snake
Auteurs : François Brischoux [France] ; Cédric Cotté [France] ; Harvey B. Lillywhite [États-Unis] ; Frédéric Bailleul [Australie] ; Maxime Lalire [France] ; Philippe Gaspar [France]Source :
- Biology Letters [ 1744-9561 ] ; 2016.
Abstract
It is well recognized that most marine vertebrates, and especially tetrapods, precisely orient and actively move in apparently homogeneous oceanic environments. Here, we investigate the presumptive role of oceanic currents in biogeographic patterns observed in a secondarily marine tetrapod, the yellow-bellied sea snake (
Url:
DOI: 10.1098/rsbl.2016.0436
PubMed: 27555651
PubMed Central: 5014037
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<front><div type="abstract" xml:lang="en"><p>It is well recognized that most marine vertebrates, and especially tetrapods, precisely orient and actively move in apparently homogeneous oceanic environments. Here, we investigate the presumptive role of oceanic currents in biogeographic patterns observed in a secondarily marine tetrapod, the yellow-bellied sea snake (<italic>Hydrophis</italic>
[<italic>Pelamis</italic>
] <italic>platurus</italic>
). State-of-the-art world ocean circulation models show how <italic>H. platurus</italic>
, the only pelagic species of sea snake, can potentially exploit oceanic currents to disperse and maintain population mixing between localities that spread over two-thirds of the Earth's circumference. The very close association of these snakes with surface currents seems to provide a highly efficient dispersal mechanism that allowed this species to range extensively and relatively quickly well beyond the central Indo-Pacific area, the centre of origin, abundance and diversity of sea snakes. Our results further suggest that the pan-oceanic population of this species must be extraordinarily large.</p>
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<front><div type="abstract" xml:lang="en"><p>It is well recognized that most marine vertebrates, and especially tetrapods, precisely orient and actively move in apparently homogeneous oceanic environments. Here, we investigate the presumptive role of oceanic currents in biogeographic patterns observed in a secondarily marine tetrapod, the yellow-bellied sea snake (<italic>Hydrophis</italic>
[<italic>Pelamis</italic>
] <italic>platurus</italic>
). State-of-the-art world ocean circulation models show how <italic>H. platurus</italic>
, the only pelagic species of sea snake, can potentially exploit oceanic currents to disperse and maintain population mixing between localities that spread over two-thirds of the Earth's circumference. The very close association of these snakes with surface currents seems to provide a highly efficient dispersal mechanism that allowed this species to range extensively and relatively quickly well beyond the central Indo-Pacific area, the centre of origin, abundance and diversity of sea snakes. Our results further suggest that the pan-oceanic population of this species must be extraordinarily large.</p>
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<affiliation wicri:level="1"><nlm:affiliation>Department of Marine Ecosystems, Satellite Oceanography Division, Collecte Localisation Satellites, 31520 Ramonville, France.</nlm:affiliation>
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<wicri:regionArea>Department of Marine Ecosystems, Satellite Oceanography Division, Collecte Localisation Satellites, 31520 Ramonville</wicri:regionArea>
<wicri:noRegion>31520 Ramonville</wicri:noRegion>
<wicri:noRegion>31520 Ramonville</wicri:noRegion>
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</author>
<author><name sortKey="Gaspar, Philippe" sort="Gaspar, Philippe" uniqKey="Gaspar P" first="Philippe" last="Gaspar">Philippe Gaspar</name>
<affiliation wicri:level="1"><nlm:affiliation>Department of Marine Ecosystems, Satellite Oceanography Division, Collecte Localisation Satellites, 31520 Ramonville, France.</nlm:affiliation>
<country xml:lang="fr">France</country>
<wicri:regionArea>Department of Marine Ecosystems, Satellite Oceanography Division, Collecte Localisation Satellites, 31520 Ramonville</wicri:regionArea>
<wicri:noRegion>31520 Ramonville</wicri:noRegion>
<wicri:noRegion>31520 Ramonville</wicri:noRegion>
</affiliation>
</author>
</titleStmt>
<publicationStmt><idno type="wicri:source">PubMed</idno>
<date when="2016">2016</date>
<idno type="RBID">pubmed:27555651</idno>
<idno type="pmid">27555651</idno>
<idno type="doi">10.1098/rsbl.2016.0436</idno>
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<sourceDesc><biblStruct><analytic><title xml:lang="en">Oceanic circulation models help to predict global biogeography of pelagic yellow-bellied sea snake.</title>
<author><name sortKey="Brischoux, Francois" sort="Brischoux, Francois" uniqKey="Brischoux F" first="François" last="Brischoux">François Brischoux</name>
<affiliation wicri:level="1"><nlm:affiliation>Centre d'Etudes Biologiques de Chizé, CEBC-CNRS UMR 7372, 79360 Villiers en Bois, France francois.brischoux@gmail.com.</nlm:affiliation>
<country wicri:rule="url">Oman</country>
<wicri:regionArea>Centre d'Etudes Biologiques de Chizé, CEBC-CNRS UMR 7372, 79360 Villiers en Bois</wicri:regionArea>
<wicri:noRegion>79360 Villiers en Bois</wicri:noRegion>
</affiliation>
</author>
<author><name sortKey="Cotte, Cedric" sort="Cotte, Cedric" uniqKey="Cotte C" first="Cédric" last="Cotté">Cédric Cotté</name>
<affiliation wicri:level="1"><nlm:affiliation>LOCEAN Laboratory, Sorbonne Universités (UPMC, Univ Paris 06)-CNRS-IRD-MNHN, 4 place Jussieu, 75005 Paris, France.</nlm:affiliation>
<country xml:lang="fr">France</country>
<wicri:regionArea>LOCEAN Laboratory, Sorbonne Universités (UPMC, Univ Paris 06)-CNRS-IRD-MNHN, 4 place Jussieu, 75005 Paris</wicri:regionArea>
<wicri:noRegion>75005 Paris</wicri:noRegion>
<placeName><settlement type="city">Paris</settlement>
<region type="région" nuts="2">Île-de-France</region>
</placeName>
</affiliation>
</author>
<author><name sortKey="Lillywhite, Harvey B" sort="Lillywhite, Harvey B" uniqKey="Lillywhite H" first="Harvey B" last="Lillywhite">Harvey B. Lillywhite</name>
<affiliation wicri:level="2"><nlm:affiliation>Department of Biology, University of Florida, Gainesville, FL 32611-8525, USA.</nlm:affiliation>
<country xml:lang="fr">États-Unis</country>
<wicri:regionArea>Department of Biology, University of Florida, Gainesville, FL 32611-8525</wicri:regionArea>
<placeName><region type="state">Floride</region>
</placeName>
</affiliation>
</author>
<author><name sortKey="Bailleul, Frederic" sort="Bailleul, Frederic" uniqKey="Bailleul F" first="Frédéric" last="Bailleul">Frédéric Bailleul</name>
<affiliation wicri:level="1"><nlm:affiliation>South Australian Research and Development Institute (Aquatic Sciences), 2 Hamra Avenue, West Beach, Adelaide, South Australia 5024, Australia.</nlm:affiliation>
<country xml:lang="fr">Australie</country>
<wicri:regionArea>South Australian Research and Development Institute (Aquatic Sciences), 2 Hamra Avenue, West Beach, Adelaide, South Australia 5024</wicri:regionArea>
<wicri:noRegion>South Australia 5024</wicri:noRegion>
</affiliation>
</author>
<author><name sortKey="Lalire, Maxime" sort="Lalire, Maxime" uniqKey="Lalire M" first="Maxime" last="Lalire">Maxime Lalire</name>
<affiliation wicri:level="1"><nlm:affiliation>Department of Marine Ecosystems, Satellite Oceanography Division, Collecte Localisation Satellites, 31520 Ramonville, France.</nlm:affiliation>
<country xml:lang="fr">France</country>
<wicri:regionArea>Department of Marine Ecosystems, Satellite Oceanography Division, Collecte Localisation Satellites, 31520 Ramonville</wicri:regionArea>
<wicri:noRegion>31520 Ramonville</wicri:noRegion>
<wicri:noRegion>31520 Ramonville</wicri:noRegion>
</affiliation>
</author>
<author><name sortKey="Gaspar, Philippe" sort="Gaspar, Philippe" uniqKey="Gaspar P" first="Philippe" last="Gaspar">Philippe Gaspar</name>
<affiliation wicri:level="1"><nlm:affiliation>Department of Marine Ecosystems, Satellite Oceanography Division, Collecte Localisation Satellites, 31520 Ramonville, France.</nlm:affiliation>
<country xml:lang="fr">France</country>
<wicri:regionArea>Department of Marine Ecosystems, Satellite Oceanography Division, Collecte Localisation Satellites, 31520 Ramonville</wicri:regionArea>
<wicri:noRegion>31520 Ramonville</wicri:noRegion>
<wicri:noRegion>31520 Ramonville</wicri:noRegion>
</affiliation>
</author>
</analytic>
<series><title level="j">Biology letters</title>
<idno type="eISSN">1744-957X</idno>
<imprint><date when="2016" type="published">2016</date>
</imprint>
</series>
</biblStruct>
</sourceDesc>
</fileDesc>
<profileDesc><textClass></textClass>
</profileDesc>
</teiHeader>
<front><div type="abstract" xml:lang="en">It is well recognized that most marine vertebrates, and especially tetrapods, precisely orient and actively move in apparently homogeneous oceanic environments. Here, we investigate the presumptive role of oceanic currents in biogeographic patterns observed in a secondarily marine tetrapod, the yellow-bellied sea snake (Hydrophis [Pelamis] platurus). State-of-the-art world ocean circulation models show how H. platurus, the only pelagic species of sea snake, can potentially exploit oceanic currents to disperse and maintain population mixing between localities that spread over two-thirds of the Earth's circumference. The very close association of these snakes with surface currents seems to provide a highly efficient dispersal mechanism that allowed this species to range extensively and relatively quickly well beyond the central Indo-Pacific area, the centre of origin, abundance and diversity of sea snakes. Our results further suggest that the pan-oceanic population of this species must be extraordinarily large.</div>
</front>
</TEI>
</pubmed>
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