6533b7d3fe1ef96bd1260c6b

RESEARCH PRODUCT

Abundance and Distribution Patterns of Thunnus albacares in Isla del Coco National Park through Predictive Habitat Suitability Models

Maria Grazia PenninoMaria Grazia PenninoJosé Luis Sánchez-lizasoPriscila F. M. LopesJorge CortésCristina Gonzáles-andrésCristina Gonzáles-andrés

subject

CocosChlorophyll0106 biological sciences010504 meteorology & atmospheric scienceslcsh:MedicineOceanography01 natural sciencesGeographical LocationsAbundanceAbundance (ecology)OceansZoologíaIsla del Coco National Parklcsh:ScienceClimatologyMultidisciplinarybiologyEcologyNational parkFishesTemperatureAgricultureSurface TemperatureGeographyHabitatOsteichthyesVertebratesPhysical SciencesMarine GeologyThunnusResearch ArticleCosta RicaYellowfin tunaSurface PropertiesClimate ChangeOceaniaMaterials ScienceMaterial PropertiesFisheriesSede Central IEOAnimalsAtmospheric scienceWeatherEcosystem0105 earth and related environmental sciencesOverfishingTunaChlorophyll A010604 marine biology & hydrobiologylcsh:REl Ni単o-Southern OscillationOrganismsBiology and Life SciencesCentral AmericaBayes TheoremPelagic zoneBodies of Waterbiology.organism_classificationThunnus albacaresMarine and aquatic sciencesFisheryEarth sciencesPeople and PlacesNorth AmericaGeographic Information Systemslcsh:QTunaAnimal Distribution

description

Information on the distribution and habitat preferences of ecologically and commercially important species is essential for their management and protection. This is especially important as climate change, pollution, and overfishing change the structure and functioning of pelagic ecosystems. In this study, we used Bayesian hierarchical spatial-temporal models to map the Essential Fish Habitats of the Yellowfin tuna (Thunnus albacares) in the waters around Isla del Coco National Park, Pacific Costa Rica, based on independent underwater observations from 1993 to 2013. We assessed if observed changes in the distribution and abundance of this species are related with habitat characteristics, fishing intensity or more extreme climatic events, including the El Niño Southern Oscillation, and changes on the average sea surface temperature. Yellowfin tuna showed a decreasing abundance trend in the sampled period, whereas higher abundances were found in shallow and warmer waters, with high concentration of chlorophyll-a, and in surrounding seamounts. In addition, El Niño Southern Oscillation events did not seem to affect Yellowfin tuna distribution and abundance. Understanding the habitat preferences of this species, using approaches as the one developed here, may help design integrated programs for more efficient management of vulnerable species. Marine Stewardship Council/[]/MSC/Londres UCR::Vicerrectoría de Investigación::Unidades de Investigación::Ciencias Básicas::Centro de Investigación en Ciencias del Mar y Limnología (CIMAR)

https://doi.org/10.1371/journal.pone.0168212