29 research outputs found

    Zooplankton Abundance and Diversity in the Tropical and Subtropical Ocean

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    The abundance and composition of zooplankton down to 3000 m depth was studied in the subtropical and tropical latitudes across the Atlantic, Pacific and Indian Oceans (35 N–40 S). Samples were collected from December 2010 to June 2011 during the Malaspina Circumnavigation Expedition. Usually, low abundances were observed with the highest values found in the North Pacific Ocean, Benguela, and o Mauritania, and the lowest in the South Pacific Ocean. No significant di erences in abundance and zooplankton composition were found among oceans, with depth being consistently the most important factor a ecting their distribution. Each depth strata were inhabited by distinct copepod assemblages, which significantly di ered among the strata. The contribution of copepods to the zooplankton community increased with the depth although, as expected, their abundance strongly decreased. Among the copepods, 265 species were identified but 85% were rare and contributed less than 1% in abundance. Clausocalanus furcatus and Nannocalanus minor dominated the epipelagic strata. Pleuromamma abdominalis and Lucicutia clausi were of importance in the mesopelagic layer, and Pareucalanus, Triconia, Conaea and Metridia brevicauda in the bathypelagic layer. Our results provide a global-scale assessment of copepod biodiversity and distribution, providing a contemporary benchmark to follow future ocean changes at low latitudes

    Abundance and Structure of the Zooplankton Community During a Post-eruptive Process: The Case of the Submarine Volcano Tagoro (El Hierro; Canary Islands), 2013-2018

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    The mesozooplankton community was analyzed over a 6-year period (2013-2018) during the post-eruptive stage of the submarine volcano Tagoro, located south of the island of El Hierro (Canary Archipelago, Spain). Nine cruises from March 2013 to March 2018 were carried out in two different seasons, spring (March-April) and autumn (October). A high-resolution study was carried out across the main cones of Tagoro volcano, as well as a large number of reference stations surrounding El Hierro (unaffected by the volcano). The zooplankton community at the reference stations showed a high similarity with more than 85% of the variation in abundance and composition attributable to seasonal differences. Moreover, our data showed an increase in zooplankton abundance in waters affected by the volcano with a higher presence of non-calanoid copepods and a decline in the diversity of the copepod community, indicating that volcanic inputs have a significant effect on these organisms. Fourteen different zooplankton groups were found but copepods were dominant (79%) with 59 genera and 170 species identified. Despite the high species number, less than 30 presented a larger abundance than 1%. Oncaea and Clausocalanus were the most abundant genera followed by Oithona and Paracalanus (60%). Nine species dominated (>2%): O. media, O. plumifera, and O. setigera among the non-calanoids and M. clausi, P. nanus, P. parvus, C. furcatus, C. arcuicornis, and N. minor among the calanoids. After the initial low abundance of the copepods as a consequence of the eruption, an increase was observed in the last years of the study, where besides the small Paracalanus and Clausocalanus, the Cyclopoids seem to have a good adaptive strategy to the new water conditions. The increase in zooplankton abundance and the decline in the copepod diversity in the area affected by the volcano indicate that important changes in the composition of the zooplankton community have occurred. The effect of the volcanic emissions on the different copepods was more evident in spring when the water was cooler and the mixing layer was deeper. Further and longer research is recommended to monitor the zooplankton community in the natural laboratory of the Tagoro submarine volcano.En prens

    Identification and characterization of esential habitats for three cephalopod species in the national parks of Galician Atlantic Islands and Cabrera

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    31 pages, 16 figures, 8 tables, 1 appendix[EN] We evaluated specific habitat features (bottom substrate type, depth, temperature and season) at random locations in the Cíes archipelago (Galician Atlantic Islands National Park, NW Spain) and to determine their impact on Octopus vulgaris, Sepia officinalis and Loligo vulgaris habitat use. We performed 113 underwater visual transects by scuba diving between April 2012 and August 2015. Habitat features were evaluated as predictors of the presence/absence of spawning dens and egg clusters using Generalized Additive Models. The O. vulgaris spawning essential habitats was found between 5 and 30 m depth in rocky bottoms from Punta Escodelo to Punta Ferreiro (Monteagudo Island), which surface is 6% of the total marine area of the Cíes islands. We propose a complete protection of this area for exploitation. underwater visual transects also showed that there is an O. vulgaris hatchery essential habitat (specimens ≤1000 g) in the sandy bottoms of the Rodas inlet. This small area (2.8% of the total) could be also protected. S. officinalis results revealed two SEH: Bajo de Viños and Piedra del Borrón, hard bottom shoals between 8-13 m covered by sea fans and sea worms and located in the central Cíes islands. We also suggest protecting that small area (0.28% of the total). Very few L. vulgaris eggs masses were found with underwater visual transects and artificial devices attractors in the Cíes islands. Also very few specimens of O. vulgaris and S. officinalis were found with underwater visual transects in Cabrera National Park between 5 and 50 m depth. Two squid spawning essential habitats were located in that park using artificial devices attractors: Na Redona and Ses Rates, both on sandy bottoms from 18 to 50 m depth with fast marine currents. The spawning essential habitats found reveal indicators of three species habitat selection and should help to identify targets for habitat improvement projects and ecosystem management approaches[ES] Mediante 112 censos visuales con escafandra autónoma realizados entre abril de 2012 y agosto de 2015, distribuidos aleatoriamente en el archipiélago de Cíes (Parque Nacional de las Islas Atlánticas de Galicia), se evaluaron las características (tipo de sustrato, profundidad, temperatura y estación) de los hábitats esenciales de Octopus vulgaris, Sepia officinalis y Loligo vulgaris. Dichas características se emplearon como predictores de la presencia/ausencia de guaridas de desove o masas de huevos utilizando Modelos Aditivos Generalizados. El hábitat esencial para el desove de O. vulgaris se localizó entre 5 y 30 m de profundidad en fondos rocosos entre Punta Escodelo y Punta Ferreiro (isla de Monteagudo), cuya superficie es del 6% del total. Proponemos su protección completa para la explotación. Los censos visuales con escafandra autónoma mostraron un hábitat esencial de cría de O. vulgaris en fondos arenosos de la ensenada de Rodas. Esta pequeña área (2,8% del total) podría ser también protegida. Los resultados para S. officinalis revelaron dos HE para el desove: el Bajo de Viños y la Piedra del Borrón, bancos de fondo duro entre 8-13 m cubiertos por gorgonias y poliquetos tubícolas en la ensenada de Rodas. Se sugiere protección para este área (0,28% del total). Apenas se hallaron puestas de L. vulgaris con censos visuales con escafandra autónoma y Dispositivos Atractores de Puesta en Cíes. También se observaron muy escasos ejemplares de S. officinalis y O. vulgaris con censos visuales con escafandra autónoma entre 5 y 50 m de profundidad en el Parque Nacional de Cabrera. Se identificaron dos HE para el desove del calamar en el Parque Nacional de Cabrera usando Dispositivos Atractores de Puesta: Na Redona y Ses Rates, fondos arenosos entre 18 y 50 m de profundidad con rápidas corrientes. Estos HEs son indicadores de selección del hábitat, y constituyen un notable apoyo para identificar objetivos en proyectos de conservación de hábitats y enfoques ecosistémicos en la gestión pesqueraMiguel Cabanellas-Reboredo fue becado por la Conselleria de Educació del Govern de les Illes Balears (Fondo Social Europeo) y actualmente beneficiario de contrato post-doctoral Juan de la Cierva formación (MINECO). Marta Sestelo disfrutó de beca de investigación SFRH/BPD/93928 de Fundacão Ciência e Tecnologia de Portugal y de proyectos del Ministerio de Ciencia e Innovación y la Xunta de Galicia. Este proyecto estuvo financiado por el Organismo Autónomo de Parques Nacionales del Ministerio de Agricultura, Alimentación y Medio Ambiente (CEFAPARQUES, Proyecto número: 458/2011)N

    Terms of reference for the mediterranean tuna habitat observatory initiative

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    [EN] We present the Terms of Reference for a case study on a Mediterranean eco-region focusing on the environmental component of the Ecosystem Report Card. The objective of this case study is to describe and monitor the variability of environmental processes in the Mediterranean Sea that affect the ecology of large pelagic fishes, with a particular attention on tunas, and the possible role of climate change on this variability. Here we define the objectives and activities of the initiative, the participant roles, primary indicators and the methodological approach[FR] Ce document présente les termes de référence d’une étude de cas sur une écorégion méditerranéenne consacrée à la composante environnementale de la fiche informative sur les écosystèmes. L'objectif de cette étude de cas est de décrire et de suivre la variabilité des processus environnementaux en mer Méditerranée qui affectent l'écologie des grands poissons pélagiques, en accordant une attention particulière aux thonidés, et de déterminer le rôle possible du changement climatique sur cette variabilité. Nous définissons ici les objectifs et les activités de l'initiative, les rôles des participants, les indicateurs primaires et l'approche méthodologique.[ES] En el documento se presentan los términos de referencia para un estudio de caso sobre una ecorregión mediterránea centrado en el componente medioambiental de la ficha informativa sobre ecosistemas. El objetivo de este estudio de caso es describir y hacer un seguimiento de la variabilidad de los procesos medioambientales en el mar Mediterráneo que afectan a la ecología de los grandes peces pelágicos, con especial atención a los túnidos, y el posible papel del cambio climático en esta variabilidad. A continuación, se definen los objetivos y actividades de la iniciativa, las funciones de los participantes, los indicadores principales y el enfoque metodológico.Peer reviewe

    Feeding ecology of two squid species from the western Mediterranean

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    The squid Loligo vulgaris (LV) and L. forbesii (LF) are 2 cephalopod species occurring in the Atlantic Ocean and the Mediterranean Sea. Bathymetric segregation allows the coexistence of both species, with LV preferentially inhabiting the shallow shelf and LF living on the shelf-break and upper slope grounds. In this paper, the feeding habits of LV and LF were studied for the first time in the Mediterranean, by means of stomach content analysis (1452 and 900 individuals of LV and LF, respectively). The main objective was to determine the diet of both species, analysing temporal and ontogenetic diet changes and inferring predator-prey interactions. Fish were by far the most important prey in both squid, followed by crustaceans and cephalopods. Prey composition revealed the bathymetric segregation of both species in the Mediterranean. Whereas LV preferentially consumed typical coastal species of sparids and gobiids, LF preyed on slope inhabitants such as myctophids and euphausiids. Ontogenetic shifts of diet occurred in both squid, but took place at contrasting sizes, suggesting that the factors triggering them might be species-specific. The diet of small-sized LV individuals was more dependent on bottom-living organisms than in large individuals, which preyed mainly on benthopelagic fish. During the main reproductive period in spring, LV increased the consumption of highly nutritive prey such as polychaetes (nereidids). Size-related differences in LF diet during the second half of the year indicated a deeper distribution of large individuals, preferentially preying on mesopelagic species and being thus involved in benthic-pelagic coupling.Versión del editor2,483
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