Search results for "mediterranean sea."

showing 10 items of 830 documents

Calcification is not the Achilles' heel of cold-water corals in an acidifying ocean

2015

Ocean acidification is thought to be a major threat to coral reefs: laboratory evidence and CO2 seep research has shown adverse effects on many coral species, although a few are resilient. There are concerns that cold-water corals are even more vulnerable as they live in areas where aragonite saturation (?ara) is lower than in the tropics and is falling rapidly due to CO2 emissions. Here, we provide laboratory evidence that net (gross calcification minus dissolution) and gross calcification rates of three common cold-water corals, Caryophyllia smithii, Dendrophyllia cornigera, and Desmophyllum dianthus, are not affected by pCO2 levels expected for 2100 (pCO2 1058 ?atm, ?ara 1.29), and nor a…

CnidariaSettore BIO/07 - EcologiaCaryophyllia smithiiCoralcold-water coralsocean acidificationengineering.materialCaryophyllia smithiiDendrophyllia cornigeraCold-water coralcalcification and dissolutionCalcification PhysiologicAnthozoaTheoryofComputation_ANALYSISOFALGORITHMSANDPROBLEMCOMPLEXITYComputingMethodologies_SYMBOLICANDALGEBRAICMANIPULATIONMediterranean SeaAnimalsEnvironmental ChemistrySeawaterGlobal ChangeReefDesmophyllum dianthuGeneral Environmental ScienceGlobal and Planetary ChangegeographyDesmophyllum dianthusgeography.geographical_feature_categorybiologyEcology2300EcologyAragoniteOcean acidificationfungiCalcification and dissolutionOcean acidificationCoral reefbiochemical phenomena metabolism and nutritionCarbon DioxideHydrogen-Ion Concentrationbiology.organism_classificationAnthozoaOceanographyengineeringCold-water coralsgeographic locationsMathematicsofComputing_DISCRETEMATHEMATICS
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MIS 5.5 highstand and future sea level flooding at 2100 and 2300 in tectonically stable areas of central mediterranean sea: Sardinia and the pontina …

2021

Areas of the Mediterranean Sea are dynamic habitats in which human activities have been conducted for centuries and which feature micro-tidal environments with about 0.40 m of range. For this reason, human settlements are still concentrated along a narrow coastline strip, where any change in the sea level and coastal dynamics may impact anthropic activities. We analyzed light detection and ranging (LiDAR) and Copernicus Earth observation data. The aim of this research is to provide estimates and detailed maps (in three coastal plain of Sardinia (Italy) and in the Pontina Plain (southern Latium, Italy) of: (i) the past marine transgression occurred during MIS 5.5 highstand 119 kyrss BP

Coastal plainGeography Planning and DevelopmentSubmersion (coastal management)Aquatic ScienceSardiniaBiochemistryMediterranean seaPast (MIS 5.5) and future sea level at 2100 and 2300TD201-500Sea levelWater Science and Technologygeographygeography.geographical_feature_categoryWater supply for domestic and industrial purposesFlooding (psychology)Last Glacial MaximumFuture sea levelHydraulic engineeringCentral Mediterranean coastal plainspast (MIS 5.5) and future sea level at 2100 and 2300 Sardinia Pontina Plain central Mediterranean coastal plainsPhysical geographyTC1-978Central Mediterranean coastal plains; Past (MIS 5.5) and future sea level at 2100 and 2300; Pontina Plain; SardiniaGeologyMarine transgressionPontina Plain
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Relative sea-level rise and potential submersion risk for 2100 on 16 coastal plains of the mediterranean sea

2020

The coasts of the Mediterranean Sea are dynamic habitats in which human activities have been conducted for centuries and which feature micro-tidal environments with about 0.40 m of range. For this reason, human settlements are still concentrated along a narrow coastline strip, where any change in the sea level and coastal dynamics may impact anthropic activities. In the frame of the RITMARE and the Copernicus Projects, we analyzed light detection and ranging (LiDAR) and Copernicus Earth Observation data to provide estimates of potential marine submersion for 2100 for 16 small-sized coastal plains located in the Italian peninsula and four Mediterranean countries (France, Spain, Tunisia, Cypr…

Coastal plainMediterranean climateMediterranean Sea coastal plains relative sea-level rise 2100 marine submersionlcsh:Hydraulic engineering010504 meteorology & atmospheric sciencesCoastal plainRelative sea-level riseGeography Planning and DevelopmentSubmersion (coastal management)Aquatic Science010502 geochemistry & geophysics01 natural sciencesBiochemistryMediterranean sealcsh:Water supply for domestic and industrial purposesPeninsulalcsh:TC1-978Human settlementSea level0105 earth and related environmental sciencesWater Science and Technologygeographylcsh:TD201-5002100geography.geographical_feature_categoryCoastal plainsMarine submersion2100; Coastal plains; Marine submersion; Mediterranean sea; Relative sea-level riseTectonicsMediterranean seaPhysical geographyMediterranean Sea; coastal plains; relative sea-level rise; 2100; marine submersion
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Uniqueness of Planktonic Ecosystems in the Mediterranean Sea: The Response to Orbital- and Suborbital-Climatic Forcing over the Last 130,000 Years

2016

The Mediterranean Sea is an ideal location to test the response of organisms to hydrological transformations driven by climate change. Here we review studies carried out on planktonic foraminifera and coccolithophores during the late Quaternary and attempt the comparison of data scattered in time and space. We highlight the prompt response of surface water ecosystems to both orbital- and suborbital-climatic variations. A markedly different spatial response was observed in calcareous plankton assemblages, possibly due to the influence of the North Atlantic climatic system in the western, central and northern areas and of the monsoon system in the easternmost and southern sites. Orbital-induc…

CoccolithophorePlanktonic Foraminifera; Coccolithophores; Mediterranean Sea; Late QuaternaryMediterranean SeaPlanktonic ForaminiferaLate Quaternary
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The impact of the Little ice age on coccolithophores in the central Mediterranea Sea

2010

The Little Ice Age (LIA) is the last episode of a series of Holocene climatic anomalies. There is still little knowledge on the response of the marine environment to the pronounced cooling of the LIA and to the transition towards the 20th century global warming. Here we present decadal-scale coccolithophore data from four short cores recovered from the central Mediterranean Sea (northern Sicily Channel and Tyrrhenian Sea), which on the basis of <sup>210</sup>Pb activity span the last 200–350 years. The lowermost part of the record of one of the cores from the Sicily Channel, Station 407, which extends down to 1650 AD, is characterized by drastic changes in productivity. Specific…

Coccolithophorelcsh:Environmental protectionStratigraphyAntarctic sea iceLittle ice ageMediterranean seaWater columnlcsh:Environmental pollutionMediterranean SeaCoccolithophoreslcsh:TD169-171.8lcsh:Environmental sciencesHoloceneLIAlcsh:GE1-350Global and Planetary ChangebiologyCoccolithophores trace elements geochemistryGlobal warmingPaleontologybiology.organism_classificationOceanographyProductivity (ecology)lcsh:TD172-193.5Little Ice AgeHydrographyGeology
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Causes of cetacean stranding and death on the Catalonian coast (western Mediterranean Sea), 2012-2019

2020

The causes of cetacean stranding and death along the Catalan coast between 2012 and 2019 were systematically investigated. Necropsies and detailed pathological investigations were performed on 89 well-preserved stranded cetaceans, including 72 striped dolphins Stenella coeruleoalba, 9 Risso’s dolphins Grampus griseus, 5 bottlenose dolphins Tursiops truncatus, 1 common dolphin Delphinus delphis, 1 Cuvier’s beaked whale Ziphius cavirostris and 1 fin whale Balaenoptera physalus. The cause of death was determined for 89.9% of the stranded cetaceans. Fisheries interaction was the most frequent cause of death in striped dolphins (27.8%) and bottlenose dolphins (60%). Cetacean morbillivirus (CeMV)…

Common dolphin040301 veterinary sciencesZoologyDelphinus delphisStenella coeruleoalbaAquatic Science0403 veterinary science03 medical and health sciencesBeaked whale619biology.animalMediterranean SeaAnimalsGrampus griseusEcology Evolution Behavior and Systematics030304 developmental biology0303 health sciencesbiologyMaternal Deprivation04 agricultural and veterinary sciencesbiology.organism_classificationBottlenose dolphinBrucellaCetacean morbillivirusSpainCetacean strandinghuman activitiesMorbillivirus Infections
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Functional consequences of prey acclimation to ocean acidification for the prey and its predator

2016

Ocean acidification is the suite of chemical changes to the carbonate system of seawater as a consequence of anthropogenic carbon dioxide (CO2) emissions. Despite a growing body of evidences demonstrating the negative effects of ocean acidification on marine species, the consequences at the ecosystem level are still unclear. One factor limiting our ability to upscale from species to ecosystem is the poor mechanistic understanding of the functional consequences of the observed effects on organisms. This is particularly true in the context of species interactions. The aim of this work was to investigate the functional consequence of the exposure of a prey (the mussel Brachidontes pharaonis) t…

Condition indexRegistration number of speciesSalinityTemperateBottles or small containers/Aquaria (<20 L)inorganicAlkalinityBrachidontes pharaonisIncubation durationExperimentTemperature waterCarbon inorganic dissolvedAssimilation efficiencyEriphia verrucosaBreaking loadCalculated using seacarb after Nisumaa et al 2010Aragonite saturation stateAlkalinity totalBottles or small containers Aquaria 20 LtotalpHTemperaturePartial pressure of carbon dioxide (water) at sea surface temperature (wet air) standard errordissolvedCarbonate ionLaboratory experimentPartial pressure of carbon dioxide (water) at sea surface temperature (wet air)standard errorEarth System ResearchUniform resource locator link to referenceanimal structuresCalcite saturation stateArthropodaLengthwaterGrowth MorphologyFigureBenthosUniform resource locator/link to referenceMediterranean SeaAnimaliaBehaviourBicarbonate ionTime in secondsTypeTemperature water standard errorCalculated using seacarb after Nisumaa et al. (2010)SpeciespH standard errorCalcite saturation state standard errorGrowth rateBottles or small containers/Aquaria (&lt;20 L)Calculated using CO2SYSfungiCarbonate system computation flagFugacity of carbon dioxide (water) at sea surface temperature (wet air)CarbonTreatmentAragonite saturation state standard errorPartial pressure of carbon dioxide water at sea surface temperature wet airCarbon dioxideMolluscaGrowth/MorphologyBenthic animalsFugacity of carbon dioxide water at sea surface temperature wet airCoast and continental shelfSpecies interaction
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Mediterranean bioconstructions along the Italian coast

2018

Marine bioconstructions are biodiversity-rich, three-dimensional biogenic structures, regulating key ecological functions of benthic ecosystems worldwide. Tropical coral reefs are outstanding for their beauty, diversity and complexity, but analogous types of bioconstructions are also present in temperate seas. The main bioconstructions in the Mediterranean Sea are represented by coralligenous formations, vermetid reefs, deep-sea cold-water corals, Lithophyllum byssoides trottoirs, coral banks formed by the shallow-water corals Cladocora caespitosa or Astroides calycularis, and sabellariid or serpulid worm reefs. Bioconstructions change the morphological and chemicophysical features of prima…

Conservation of Natural ResourcesAnthropogenic pressures; Biodiversity; Ecosystem engineers; Habitat formers; Animals; Conservation of Natural Resources; Italy; Mediterranean Sea; Biodiversity; Coral Reefs; Environmental Monitoring; Ecology Evolution Behavior and Systematics; Aquatic ScienceLithophyllum byssoides trottoirEvolutioncoral banksAnthropogenic pressuresAquatic SciencebioconstructionAnthropogenic pressures; Biodiversity; Ecosystem engineers; Habitat formers; Ecology Evolution Behavior and Systematics; Aquatic ScienceHabitat formerssabellariidcoralligenous formationsCORAL CLADOCORA-CAESPITOSA; MACROALGAL CORALLIGENOUS ASSEMBLAGES; SABELLARIA-ALVEOLATA LINNAEUS; NORTHERN ADRIATIC SEA; BETA-DIVERSITY; ASTROIDES-CALYCULARIS; OCEAN ACIDIFICATION; SPATIAL VARIATION; MASS-MORTALITY; HABITAT CHARACTERIZATIONbioconstructionsBehavior and SystematicsAnthropogenic pressureMediterranean SeaAnimalscoralligenous formationcoral bankConservation of Natural Resourcebioconstructions; coralligenous formations; vermetid reefs; deep-sea cold-water coral; Lithophyllum byssoides trottoirs; coral banks; sabellariid; serpulid worm reefsLithophyllum byssoides trottoirsEcologydeep-sea cold-water coralAnimalCoral Reefsserpulid worm reefsBiodiversityvermetid reefsEcology Evolution Behavior and SystematicItalyEcosystem engineerEcosystem engineersHabitat formerCoral Reefvermetid reefEnvironmental Monitoring
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Mediterranean rocky reefs in the Anthropocene: Present status and future concerns

2021

Global change is striking harder and faster in the Mediterranean Sea than elsewhere, where high levels of human pressure and proneness to climate change interact in modifying the structure and disrupting regulative mechanisms of marine ecosystems. Rocky reefs are particularly exposed to such environmental changes with ongoing trends of degradation being impressive. Due to the variety of habitat types and associated marine biodiversity, rocky reefs are critical for the functioning of marine ecosystems, and their decline could profoundly affect the provision of essential goods and services which human populations in coastal areas rely upon. Here, we provide an up-to-date overview of the statu…

Conservation of Natural ResourcesBioconstructionFish assemblageCoral ReefsAlgal forests; Bioconstructions; Coastal ecosystems; Conservation; Fish assemblages; Global change; Marine biodiversityClimate ChangeBiodiversityConservationFish assemblagesCoastal ecosystemsAlgal forestMediterranean SeaBioconstructionsHumansAlgal forestsCoastal ecosystemMarine biodiversityGlobal changeAlgal forests; Bioconstructions; Coastal ecosystems; Conservation; Fish assemblages; Global change; Marine biodiversity; Climate Change; Conservation of Natural Resources; Coral Reefs; Humans; Mediterranean Sea; Biodiversity; EcosystemEcosystem
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Quotas regulation is necessary but not sufficient to mitigate the impact of SCUBA diving in a highly visited marine protected area.

2021

Abstract When effectively managed, Marine Protected Areas (MPAs) can produce wide ecosystem benefits that can foster, directly and indirectly, local economies. Tourism is one of the sectors mainly benefited by the effect of conservation. SCUBA diving represents an important tourism activity, especially in the context of MPAs, where it is one of the few activities often fostered rather than limited, for its capacity to integrate environmental and socio-economic sustainability. However, SCUBA diving can also produce negative impacts on the environment when tourism frequentation exceeds a sustainable threshold, these potentially generating negative effects on the sector itself. In this study, …

Conservation of Natural ResourcesEnvironmental EngineeringDivingMarine reserveContext (language use)General MedicineManagement Monitoring Policy and LawAnthozoaScuba divingFisheryGeographySustainabilityEcological indicator Human impact Recreational diving Sustainable tourism Tourism hotspotMediterranean SeaAnimalsMarine protected areaWaste Management and DisposalRecreationSustainable tourismTourismEcosystemJournal of environmental management
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