Search results for "coast"

showing 10 items of 392 documents

A multidisciplinary analytical framework to delineate spawning areas and quantify larval dispersal in coastal fish

2019

International audience; Assessing larval dispersal is essential to understand the structure and dynamics of marine populations. However, knowledge about early-life dispersal is sparse, and so is our understanding of the spawning process, perhaps the most obscure component of biphasic life cycles. Indeed, the poorly known species-specific spawning modality and early-life traits, along with the high spatio-temporal variability of the oceanic circulation experienced during larval drift, hamper our ability to properly appraise the realized connectivity of coastal fishes. Here, we propose an analytical framework which combines Lagrangian modeling, network theory, otolith analyses and biogeograph…

0106 biological sciencesConservation of Natural ResourcesOceans and SeasPopulation DynamicsCoastal fishEcosystem ManagementConservationAquatic ScienceOceanography010603 evolutionary biology01 natural sciencesFish natal originsmedicineMediterranean SeaAnimalsDiplodus vulgarisMarine ecosystem14. Life underwaterEcosystemOtolithMarine Protected AreaLagrangian Flow Network[SDU.OCEAN]Sciences of the Universe [physics]/Ocean Atmosphere[SDV.EE]Life Sciences [q-bio]/Ecology environmentFish natal originbiologyEcology010604 marine biology & hydrobiologyFishesMarine connectivityPelagic zoneGeneral MedicineDiplodusbiology.organism_classificationPollutionCoastal fishesCoastal fishemedicine.anatomical_structureLarvaBiological dispersalMarine protected areaModels-hydrodynamicsModels-hydrodynamic
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Ocean Acidification and the Loss of Phenolic Substances in Marine Plants

2012

Rising atmospheric CO(2) often triggers the production of plant phenolics, including many that serve as herbivore deterrents, digestion reducers, antimicrobials, or ultraviolet sunscreens. Such responses are predicted by popular models of plant defense, especially resource availability models which link carbon availability to phenolic biosynthesis. CO(2) availability is also increasing in the oceans, where anthropogenic emissions cause ocean acidification, decreasing seawater pH and shifting the carbonate system towards further CO(2) enrichment. Such conditions tend to increase seagrass productivity but may also increase rates of grazing on these marine plants. Here we show that high CO(2) …

0106 biological sciencesCymodocea nodosaved/biology.organism_classification_rank.speciesCarbonatesSecondary MetabolismMarine and Aquatic Scienceslcsh:MedicinePlant Science01 natural scienceschemistry.chemical_compoundGlobal Change Ecologylcsh:SciencePhysiological EcologyMultidisciplinaryAlismatalesbiologyEcologyEcologyPlant BiochemistryMarine EcologyOcean acidificationPotamogetonaceaeHydrogen-Ion ConcentrationSeagrassProductivity (ecology)ItalyCarbon dioxideCoastal EcologyResearch ArticleOceans and SeasMarine Biology010603 evolutionary biologyStatistics NonparametricHydrothermal VentsPhenolsPlant-Environment InteractionsTerrestrial plantSeawater14. Life underwaterocean acidification climate change mediterranean sea seagrassBiologyAnalysis of VarianceChemical EcologyMarylandved/biology010604 marine biology & hydrobiologyPlant Ecologyfungilcsh:R15. Life on landCarbon Dioxidebiology.organism_classificationSalinitychemistry13. Climate actionEarth Scienceslcsh:QRuppia maritima
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Seasonal cycle of benthic denitrification and DNRA in the aphotic coastal zone, northern Baltic Sea

2020

Current knowledge on the seasonality of benthic nitrate reduction pathways in the aphotic, density stratified coastal zone of the Baltic Sea is largely based on data from muddy sediments, neglecting the potential contribution of sandy sediments. To gain a more comprehensive understanding of seasonality in this part of the Baltic Sea coast, we measured rates of benthic denitrification, anammox and dissimilatory nitrate reduction to ammonium (DNRA) monthly in the ice-free period of 2016 in both sandy and muddy aphotic sediments, northwestern Gulf of Finland. No anammox was observed. The seasonal cycle of denitrification in both sediment types was related to the hydrography-driven development …

0106 biological sciencesDenitrification010504 meteorology & atmospheric sciencesMARINE-SEDIMENTSFIXED-NITROGENsedimentitANAMMOX01 natural scienceswater column density stratificationCoastal zoneorganic matterNUTRIENT FLUXESEcologykausivaihtelutnitraatitWater column density stratificationOceanographyBenthic zoneOrganic matterorgaaninen ainesSeasonal cycledenitrifikaatioSandy sedimentrannikkoalueetDISSIMILATORY NITRATE REDUCTIONNutrient fluxAquatic ScienceNITRIFICATIONNitrate reduction14. Life underwaterCoastal filter1172 Environmental sciencesEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesbenthic−pelagic coupling010604 marine biology & hydrobiologyGeomorphologyISOTOPE PAIRING TECHNIQUENorthern Gulf of FinlandBenthic-pelagic couplingAMMONIUMgeomorphologysandy sedimentESTUARINE SEDIMENTNITROGEN REMOVALnitrate reductionBaltic sea13. Climate actionAphotic zonecoastal filteraineiden kiertoEnvironmental scienceNitrificationMarine Ecology Progress Series
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Warming-related shifts in the distribution of two competing coastal wrasses

2016

13 páginas, 5 figuras , 1 tabla, 1 apéndice con tres tablas y una figura

0106 biological sciencesFood ChainRange (biology)[SDE.MCG]Environmental Sciences/Global ChangesCorisThalassoma pavoDistributional shiftsWrasseInterspecific interactionsAquatic ScienceOceanography010603 evolutionary biology01 natural sciencesGlobal WarmingWrassesMediterranean seaAbundance (ecology)Aquatic scienceAnimalsSeawater14. Life underwaterManyGLMDemographyTemperaturesDistributional shiftbiologyEcology010604 marine biology & hydrobiologyGlobal warmingFishesTemperatureGeneral MedicineInterspecific competitionbiology.organism_classificationPollutionPerciformesCoastal waterOceanographyGeographyFish13. Climate actionMediterranean seaCoastal watersInterspecific interactionWarmingEnvironmental Monitoring
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Ocean acidification affects somatic and otolith growth relationship in fish: Evidence from an in situ study

2019

Ocean acidification (OA) may have varied effects on fish eco-physiological responses. Most OA studies have been carried out in laboratory conditions without considering the in situ p CO 2 /pH variability documented for many marine coastal ecosystems. Using a standard otolith ageing technique, we assessed how in situ ocean acidification (ambient, versus end-of-century CO 2 levels) can affect somatic and otolith growth, and their relationship in a coastal fish. Somatic and otolith growth rates of juveniles of the ocellated wrasse Symphodus ocellatus living off a Mediterranean CO 2 seep increased at the high- p CO 2 site. Also, we detected that slower-growing individuals living at ambient p C…

0106 biological sciencesIn situ010504 meteorology & atmospheric sciencesSomatic cellCoastal fishPCO2Marine BiologyBiology01 natural sciencesOtolithCoastal fishOtolithic MembranemedicineCO2 seepAnimalsSeawaterEcosystem0105 earth and related environmental sciencesOtolithvariability010604 marine biology & hydrobiologyOcean acidificationOcean acidificationCarbon DioxideHydrogen-Ion ConcentrationAgricultural and Biological Sciences (miscellaneous)Oceanographymedicine.anatomical_structureSomatic growthFish <Actinopterygii>sense organsGeneral Agricultural and Biological SciencesIn situ study
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Fishery-induced selection for slow somatic growth in European eel

2012

International audience; Both theoretical and experimental studies have shown that fishing mortality can induce adaptive responses in body growth rates of fishes in the opposite direction of natural selection. We compared body growth rates in European eel (Anguilla anguilla) from three Mediterranean stocks subject to different fishing pressure. Results are consistent with the hypotheses that i) fast-growing individuals are more likely to survive until sexual maturity than slow-growing ones under natural conditions (no fishing) and ii) fishing can select for slow-growing individuals by removing fast-growing ones. Although the possibility of human-induced evolution seems remote for a panmictic…

0106 biological sciencesMale[SDV]Life Sciences [q-bio]lcsh:MedicineMarine and Aquatic Sciences01 natural sciencesKeyWords Plus:FRESH-WATER ENVIRONMENTS; ANGUILLA-ANGUILLA L; SEX-DIFFERENTIATION; MORTALITY; LAGOONS; POPULATION; MATURATION; JUVENILE; BRACKISH; TRAITSCritically endangeredAUTMorphogenesisNatural SelectionSexual maturityBody SizeScopus Indexed keywords EMTREE medical terms: Anguilla (fish)article body growth controlled study eel endangered species experimental study fishery fishing growth rate mortality natural selection nonhuman theoretical study Anguilla (fish)animal body size female food industry growth development and aging male physiology reproduction Species Index: Anguilla anguilla Pisces MeSH: Anguilla Animals Body Size Female Fisheries Male Reproductionlcsh:ScienceJUVENILEPOPULATIONmedia_commonFreshwater EcologyPanmixiaMultidisciplinaryNatural selectionEcologyEcologyReproduction[SDE]Environmental SciencesFish <Actinopterygii>FemaleReproductionCoastal EcologyTRAITSResearch ArticleKeyWords Plus:FRESH-WATER ENVIRONMENTSEvolutionary ProcessesFRESH-WATER ENVIRONMENTSSettore BIO/07media_common.quotation_subjectFishingFisheriesMarine BiologyLAGOONSBiology010603 evolutionary biologyMATURATIONBRACKISHANGUILLA-ANGUILLA LAnimals14. Life underwaterBiologySelection (genetic algorithm)Growth ControlEvolutionary BiologySEX-DIFFERENTIATION010604 marine biology & hydrobiologyMORTALITYlcsh:RFisheries ScienceAnguillaFisheryEvolutionary EcologyEarth SciencesFRESH-WATER ENVIRONMENTS;ANGUILLA-ANGUILLA L;SEX-DIFFERENTIATION;MORTALITY;LAGOONS;POPULATION;MATURATION;JUVENILE;BRACKISH;TRAITSlcsh:QZoologyDevelopmental Biology
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Effectiveness of European Atlanto-Mediterranean MPAs: Do they accomplish the expected effects on populations, communities and ecosystems?

2008

The success of MPAs in conserving fishing resources and protecting marine biodiversity relies strongly on how well they meet their planned (or implicit) management goals. From a review of empirical studies aiming at assessing the ecological effects of Mediterranean and Macaronesian MPAs, we conclude that establishing an MPA is successful for (i) increasing the abundance/biomass, (ii) increasing the proportion of larger/older individuals, and (iii) enhancing the fecundity of commercially harvested populations; also, MPAs demonstrated to be effective for (iv) augmenting local fishery yields through biomass exportation from the protected area, and (v) inducing shifts in fish assemblage structu…

0106 biological sciencesMarine conservationCoastal zone managementSettore BIO/07 - EcologiaMacaronesia.Marine conservation[SDE.MCG]Environmental Sciences/Global ChangesMarine protected areaMediterranean010603 evolutionary biology01 natural sciencesCentro Oceanográfico de BalearesEnvironmental protectionMarine resources conservation -- Mediterranean SeaMacaronesiaMarine protected areasDominance (ecology)EcosystemCoastal ecologyMeta-analysi14. Life underwaterCoastal ecosystem healthMedio MarinoTrophic cascadeComputingMilieux_MISCELLANEOUSNature and Landscape ConservationEcological stabilityEcologyCoastal populations and communities010604 marine biology & hydrobiologyCoastal habitats Meta-analysisMarine reserveCoastal habitatMarine resources conservation -- MacaronesiaMarine reserve15. Life on landCoastal populations and communitieGeography13. Climate actionMarine protected areaProtected areaCoastal habitats
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Extending full protection inside existing marine protected areas, or reducing fishing effort outside, can reconcile conservation and fisheries goals

2020

Most fish stocks world-wide are fished at maximum sustainable yield (MSY) or overfished, as many fisheries management strategies have failed to achieve sustainable fishing. Identifying effective fisheries management strategies has now become urgent. Here, we developed a spatially explicit metapopulation model accounting for population connectivity in the north-western Mediterranean Sea, and parameterized it for three ecologically and economically important coastal fish species: the white seabream Diplodus sargus, the two-banded seabream Diplodus vulgaris and the dusky grouper Epinephelus marginatus. We used the model to assess how stock biomass and catches respond to changes in fishing mort…

0106 biological sciencesMarine conservationStock assessmentEcology010604 marine biology & hydrobiologyFishingCoastal fish010603 evolutionary biology01 natural sciencesFisheryMediterranean seaGeographyAUTMarine protected area14. Life underwaterFisheries management[SDE.BE]Environmental Sciences/Biodiversity and Ecologycoastal fish fisheries management fishing effort regulation marine conservation marine protected areas Mediterranean Sea metapopulation models
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Environmental factors influencing the spatio-temporal distribution of Carybdea marsupialis (Lineo, 1978, Cubozoa) in South-Western Mediterranean coas…

2017

21 pages, 5 figures, 2 tables, supporting information 10.1371/journal.pone.0181611.s001, 10.1371/journal.pone.0181611.s002, 10.1371/journal.pone.0181611.s003, 10.1371/journal.pone.0181611.s004, 10.1371/journal.pone.0181611.s005, 10.1371/journal.pone.0181611.s006

0106 biological sciencesMediterranean climateJellyfishAtmospheric ScienceTopographySalinityBeachesved/biology.organism_classification_rank.speciesPopulation Dynamicslcsh:MedicineMarine and Aquatic SciencesFresh WaterWind01 natural sciencesPhysical ChemistryMediterranean seaAbundance (ecology)Carybdea marsupialisSouth-Western Mediterranean coastsOceansZoologíaSpatio-temporal distributionlcsh:ScienceMultidisciplinarybiologyGeographyEcologyTemperatureChemistryGeographyProductivity (ecology)Physical SciencesCarybdeidaeSeasonsResearch ArticleFreshwater EnvironmentsSettore BIO/07 - EcologiaSubtropics010603 evolutionary biologyPhosphatesCnidariaMeteorologySpatio-Temporal AnalysisBodies of waterbiology.animalEnvironmental factorsMediterranean SeaWater MovementsAnimalsHumansSeawaterEcosystemPopulation DensityLandformsNitratesved/biology010604 marine biology & hydrobiologylcsh:REcology and Environmental SciencesChemical CompoundsOrganismsAquatic EnvironmentsBiology and Life SciencesGeomorphologyEcologíaModels Theoreticalbiology.organism_classificationInvertebratesChemical PropertiesSpainEarth SciencesCubozoalcsh:QJellyfishCarybdea marsupialisAnimal DistributionPLoS ONE
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Use of Lagrangian simulations to hindcast the geographical position of propagule release zones in a Mediterranean coastal fish

2018

International audience; The study of organism dispersal is fundamental for elucidating patterns of connectivity between populations, thus crucial for the design of effective protection and management strategies. This is especially challenging in the case of coastal fish, for which information on egg release zones (i.e. spawning grounds) is often lacking. Here we assessed the putative location of egg release zones of the saddled sea bream (Oblada melanura) along the southeastern coast of Spain in 2013. To this aim, we hindcasted propagule (egg and larva) dispersal using Lagrangian simulations, fed with species-specific information on early life history traits (ELTs), with two approaches: 1) …

0106 biological sciencesMediterranean climateLagrangian simulation010504 meteorology & atmospheric sciences[SDE.MCG]Environmental Sciences/Global ChangesCoastal fishSea breamAquatic ScienceOceanography01 natural sciences[SDV.EE.ECO]Life Sciences [q-bio]/Ecology environment/EcosystemsMediterranean seaPropagulePropagule release zonesMediterranean SeamedicineAnimalsHindcastDispersal distance14. Life underwaterPropagule release zone0105 earth and related environmental sciencesOtolithLarvaGeographyAnimal010604 marine biology & hydrobiologyFishesGeneral MedicineModels TheoreticalLagrangian simulationsPollutionmedicine.anatomical_structureGeographyOceanographySpainLarvaBiological dispersal[SDE.BE]Environmental Sciences/Biodiversity and EcologyAnimal DistributionFisheMarine Environmental Research
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