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Coral connectivity between equatorial eastern Pacific marine protected areas: A biophysical modeling approach

There are many marine protected areas (MPAs) containing coral reef aggregations in the eastern Pacific region. However, the connectivity of corals between MPAs is still poorly known, especially in the Marine Conservation Corridor of the Eastern Tropical Pacific (MCCETP). Here, we assess the potentia...

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Autores principales: Lequeux, Bertrand D., Ahumada-Sempoal, Miguel-Angel, López-Pérez, Andrés, Reyes-Hernández, Cristóbal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6114865/
https://www.ncbi.nlm.nih.gov/pubmed/30157276
http://dx.doi.org/10.1371/journal.pone.0202995
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author Lequeux, Bertrand D.
Ahumada-Sempoal, Miguel-Angel
López-Pérez, Andrés
Reyes-Hernández, Cristóbal
author_facet Lequeux, Bertrand D.
Ahumada-Sempoal, Miguel-Angel
López-Pérez, Andrés
Reyes-Hernández, Cristóbal
author_sort Lequeux, Bertrand D.
collection PubMed
description There are many marine protected areas (MPAs) containing coral reef aggregations in the eastern Pacific region. However, the connectivity of corals between MPAs is still poorly known, especially in the Marine Conservation Corridor of the Eastern Tropical Pacific (MCCETP). Here, we assess the potential connectivity of corals across equatorial eastern Pacific MPAs through a Lagrangian particle-tracking algorithm coupled offline with an ocean-circulation numerical model. Connectivity metrics and graph theory were used to analyze the networks and highlight those MPAs that are critical for maintaining the connectivity of corals across the region. Our results show that the equatorial eastern Pacific MPAs form a relatively well-connected network, at least 40% of coral larvae released per year end up within the boundaries of an MPA. MPAs like Malpelo and Gorgona islands included in the MCCETP were found to be critical for connectivity of corals because of their high betweenness centrality and potential role as stepping-stones between coastal MPAs and offshore MPAs such as the Galapagos Islands. Two pelagic larval duration (PLD) scenarios (40 and 130 days) indicate a quasi-unidirectional larval flow from coastal MPAs toward oceanic MPAs, where the only resilient MPAs (Coiba and Malpelo islands) depend mostly on subsidiary recruitment from MPAs located along the coast of Costa Rica, Panama and Colombia. In the two PLD scenarios, Cocos Island maintains a very low resilience potential. Our results indicate the imperative need to include coastal MPAs in the MCCETP network initiative, since connectivity and resilience of coral reefs in the equatorial eastern Pacific region rely heavily on coastal MPAs.
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spelling pubmed-61148652018-09-17 Coral connectivity between equatorial eastern Pacific marine protected areas: A biophysical modeling approach Lequeux, Bertrand D. Ahumada-Sempoal, Miguel-Angel López-Pérez, Andrés Reyes-Hernández, Cristóbal PLoS One Research Article There are many marine protected areas (MPAs) containing coral reef aggregations in the eastern Pacific region. However, the connectivity of corals between MPAs is still poorly known, especially in the Marine Conservation Corridor of the Eastern Tropical Pacific (MCCETP). Here, we assess the potential connectivity of corals across equatorial eastern Pacific MPAs through a Lagrangian particle-tracking algorithm coupled offline with an ocean-circulation numerical model. Connectivity metrics and graph theory were used to analyze the networks and highlight those MPAs that are critical for maintaining the connectivity of corals across the region. Our results show that the equatorial eastern Pacific MPAs form a relatively well-connected network, at least 40% of coral larvae released per year end up within the boundaries of an MPA. MPAs like Malpelo and Gorgona islands included in the MCCETP were found to be critical for connectivity of corals because of their high betweenness centrality and potential role as stepping-stones between coastal MPAs and offshore MPAs such as the Galapagos Islands. Two pelagic larval duration (PLD) scenarios (40 and 130 days) indicate a quasi-unidirectional larval flow from coastal MPAs toward oceanic MPAs, where the only resilient MPAs (Coiba and Malpelo islands) depend mostly on subsidiary recruitment from MPAs located along the coast of Costa Rica, Panama and Colombia. In the two PLD scenarios, Cocos Island maintains a very low resilience potential. Our results indicate the imperative need to include coastal MPAs in the MCCETP network initiative, since connectivity and resilience of coral reefs in the equatorial eastern Pacific region rely heavily on coastal MPAs. Public Library of Science 2018-08-29 /pmc/articles/PMC6114865/ /pubmed/30157276 http://dx.doi.org/10.1371/journal.pone.0202995 Text en © 2018 Lequeux 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
Lequeux, Bertrand D.
Ahumada-Sempoal, Miguel-Angel
López-Pérez, Andrés
Reyes-Hernández, Cristóbal
Coral connectivity between equatorial eastern Pacific marine protected areas: A biophysical modeling approach
title Coral connectivity between equatorial eastern Pacific marine protected areas: A biophysical modeling approach
title_full Coral connectivity between equatorial eastern Pacific marine protected areas: A biophysical modeling approach
title_fullStr Coral connectivity between equatorial eastern Pacific marine protected areas: A biophysical modeling approach
title_full_unstemmed Coral connectivity between equatorial eastern Pacific marine protected areas: A biophysical modeling approach
title_short Coral connectivity between equatorial eastern Pacific marine protected areas: A biophysical modeling approach
title_sort coral connectivity between equatorial eastern pacific marine protected areas: a biophysical modeling approach
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6114865/
https://www.ncbi.nlm.nih.gov/pubmed/30157276
http://dx.doi.org/10.1371/journal.pone.0202995
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