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      Asociación de tiburones con el Monte Submarino Las Gemelas y primera evidencia de conectividad con la Isla del Coco, Pacífico de Costa Rica Translated title: Association of sharks with Las Gemelas Seamount and first evidence of connectivity with Cocos Island, Pacific of Costa Rica

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          Abstract

          Resumen Introducción: Los montes submarinos y las islas oceánicas son conocidos como “puntos calientes” de biodiversidad pelágica, los cuales son utilizados por especies altamente migratorias como corredores biológicos naturales. En el Pacífico Tropical Oriental se han establecido una serie de Áreas Marinas Protegidas (AMPs) cuyo objetivo principal es proteger y manejar los recursos marinos que se encuentran dentro de esta región. Sin embargo, muchas de estas AMPs no incluyen esquemas de protección absoluta, y ninguna cuenta con la capacidad de de proteger a las especies altamente móviles una vez que estas se desplazan fuera de sus límites. Objetivos: El objetivo del presente estudio es dar a conocer la primer evidencia de conectividad entre el Parque Nacional Isla del Coco (PNIC) y el monte submarino Las Gemelas ubicado dentro del Área Marina de Manejo Montes Submarinos (AMM-MS) registrada por un tiburón martillo hembra (Sphyrna lewini). Métodos: Entre mayo del 2015 y mayo del 2016 un tiburón martillo y un tiburón zorro (Alopias pelagicus) fueron marcados (V16, Vemco Ltd.) y monitoreados por una serie de receptores acústicos ubicados en el PNIC y en Las Gemelas. Los datos fueron analizados descriptivamente y se calculó el índice de residencia (IR). Resultados: S. lewini realizó viajes de ida y vuelta entre los sitios ubicados dentro del PNIC y el AMM-MS. El mayor número de detecciones registradas por S. lewini ocurrieron en Roca Sucia, y todas las detecciones tuvieron lugar durante las horas de la mañana (7:00 - 12:00 h). S. lewini exhibió una baja residencia (IR=0.02) y una presencia periódica en el área de estudio. Se detectó la presencia de A. pelagicus en Las Gemelas casi un año después de haber sido marcado en ese mismo lugar. Conclusiones: La presencia periódica de S. lewini entre estas dos AMPs, y la presencia de A. pelagicus en Las Gemelas sugiere que los movimientos entre las islas oceánicas de la región puede ser más complejo que simples movimientos de “ida y vuelta”, donde los montes submarinos juegan un papel importante en el desplazamiento de dichas especies. Nuestros resultados destacan la importancia de aumentar la protección a los montes submarinos y de crear corredores marinos que conecten las islas oceánicas con el fin de promover la conservación de especies altamente migratorias. Aunque la creación de AMPs alrededor de estas formaciones geológicas se ha propuesto como una manera efectiva de conservar y proteger la biodiversidad marina en aguas abiertas, su efectividad es solo parcial. Esta investigación resalta la importancia de estudiar la dinámica espacial de especies altamente migratorias con el objetivo de mejorar el diseño y la efectividad de AMPs ubicadas lejos del continente como es el caso del PNIC y el AMM-MS.

          Translated abstract

          Abstract Introduction: Seamounts and oceanic islands are known as hotspots of pelagic biodiversity, which highly migratory species use as natural biological corridors. Although marine protected areas have been established in the Eastern Tropical Pacific with a goal to protect and manage region’s marine biodiversity, not all utilize or enforce a no-take policy, and none are capable of protecting highly mobile species once they move outside of the limit of these areas. Objective: We present the first evidence of shark connectivity between Cocos Island National Park (CINP) and Las Gemelas seamount located in the Seamounts Marine Management Area (SMMA), by a female scalloped hammerhead shark (Sphyrna lewini). Methods: Between May 2015 and May 2016 a scalloped hammerhead shark and a pelagic thresher shark (Alopias pelagicus) were tagged (V16, Vemco Ltd.) and monitored by an array of acoustic receivers installed at CINP and Las Gemelas. We analyzed the acoustic data descriptively and we calculated the residency index (IR). Results: S. lewini performed persistent movements between these two marine protected areas. All detections in Cocos Island occurred during the morning (7:00-12:00 h) and Roca Sucia was the most visited site. The shark shows a low residency (IR=0.02) and intermittent presence in the study area. We recorded the presence of A. pelagicus at Las Gemelas almost one year after it was tagged at the site. Conclusions: The persistent movements of S. lewini between these two pelagic marine protected areas, and the presence of a tagged A. pelagicus at Las Gemelas seamount, suggests that movements between oceanic islands in the region may be more complex than simple “back and forth” movements, with seamounts in between them acting as stepping stones, where they may also stay for periods of time. Our results emphasize the importance of granting greater protection to seamounts and creating connecting swimways to oceanic island hotspots for the conservation of pelagic and highly migratory species. Although the establishment of marine reserves around oceanic islands and seamounts have been proposed as an effective way to conserve and protect marine biodiversity in the high seas, their effectiveness is only partial. This study highlights the importance of studying the spatial dynamics of highly migratory species to help improve the design and efficiency of marine protected areas located in the high seas such as CINP and SMMA.

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          Predator diversity hotspots in the blue ocean.

          Concentrations of biodiversity, or hotspots, represent conservation priorities in terrestrial ecosystems but remain largely unexplored in marine habitats. In the open ocean, many large predators such as tunas, sharks, billfishes, and sea turtles are of current conservation concern because of their vulnerability to overfishing and ecosystem role. Here we use scientific-observer records from pelagic longline fisheries in the Atlantic and Pacific Oceans to show that oceanic predators concentrate in distinct diversity hotspots. Predator diversity consistently peaks at intermediate latitudes (20-30 degrees N and S), where tropical and temperate species ranges overlap. Individual hotspots are found close to prominent habitat features such as reefs, shelf breaks, or seamounts and often coincide with zooplankton and coral reef hotspots. Closed-area models in the northwest Atlantic predict that protection of hotspots outperforms other area closures in safeguarding threatened pelagic predators from ecological extinction. We conclude that the seemingly monotonous landscape of the open ocean shows rich structure in species diversity and that these features should be used to focus future conservation efforts.
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            Movements and site fidelity of the giant manta ray, Manta birostris, in the Komodo Marine Park, Indonesia

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              Baselines and Degradation of Coral Reefs in the Northern Line Islands

              Effective conservation requires rigorous baselines of pristine conditions to assess the impacts of human activities and to evaluate the efficacy of management. Most coral reefs are moderately to severely degraded by local human activities such as fishing and pollution as well as global change, hence it is difficult to separate local from global effects. To this end, we surveyed coral reefs on uninhabited atolls in the northern Line Islands to provide a baseline of reef community structure, and on increasingly populated atolls to document changes associated with human activities. We found that top predators and reef-building organisms dominated unpopulated Kingman and Palmyra, while small planktivorous fishes and fleshy algae dominated the populated atolls of Tabuaeran and Kiritimati. Sharks and other top predators overwhelmed the fish assemblages on Kingman and Palmyra so that the biomass pyramid was inverted (top-heavy). In contrast, the biomass pyramid at Tabuaeran and Kiritimati exhibited the typical bottom-heavy pattern. Reefs without people exhibited less coral disease and greater coral recruitment relative to more inhabited reefs. Thus, protection from overfishing and pollution appears to increase the resilience of reef ecosystems to the effects of global warming.
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                Author and article information

                Journal
                rbt
                Revista de Biología Tropical
                Rev. biol. trop
                Universidad de Costa Rica (San José, San José, Costa Rica )
                0034-7744
                0034-7744
                March 2020
                : 68
                : suppl 1
                : 320-329
                Affiliations
                [3] orgnameTurtle Island Restoration Network. USA tsteiner@ 123456tirn.net
                [1] orgnameCentro Rescate de Especies Marinas Amenazadas Costa Rica echavk@ 123456gmail.com
                [4] orgnameMigraMar México.
                [5] orgnameUniversidad San Francisco de Quito Ecuador ahearn@ 123456usfq.edu.ec
                [2] orgnameFins Attached Marine Research and Conservation USA rarauz@ 123456finsattached.org
                Article
                S0034-77442020000500320 S0034-7744(20)06800000320
                10.15517/rbt.v68is1.41202
                8e3dfc2a-319b-4cde-858b-0f2f7e19936a

                This work is licensed under a Creative Commons Attribution 3.0 International License.

                History
                : 16 June 2019
                : 30 January 2019
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 49, Pages: 10
                Product

                SciELO Costa Rica

                Categories
                Artículos

                highly migratory species,Alopias pelagicus.,Sphyrna lewini,Áreas Marinas Protegidas,especies altamente migratorias,Pacífico Tropical Oriental,Marine Protected Areas.,Alopias pelagicus,Eastern Tropical Pacific

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