Search results for "oceanic"

showing 10 items of 642 documents

Detection and mapping of Posidonia oceanica dead matte by high-resolution acoustic imaging

2009

A high-resolution echosounder was used to acquire seismo-acoustic records of P. oceanica dead matte patches in the Gulf of Palermo. Seismo-acoustic profiling enabled detection of dead matte structures that are invisible to visual inspection, being hidden by variable layers of sandy sediment. The thickness of the dead matte measured reaches a maximum of 2.2 m. The mean volume of the matte per unit area of seabed surface (MEIx) varies from 0.2 to 2.2 m 3 /m 2 , with an average value of 1.6 m 3 /m 2 and a total volume estimated at 73,000 m 3 . From literature data and from the volume of dead matte calculated in the present work we estimated that total carbon accumulated in the matte is about 2…

Settore BIO/07 - EcologiaAtmospheric SciencebiologyApplied MathematicsMineralogyHigh resolutionbiology.organism_classificationGeographyEcho soundingPosidonia oceanica dead matte sub-bottom profiler remote sensing carbon sinkPosidonia oceanicaComputers in Earth SciencesSeabedOptoacoustic imagingGeneral Environmental ScienceItalian Journal of Remote Sensing
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Leaf vs. epiphyte nitrogen uptake in a nutrient enriched Mediterranean seagrass (Posidonia oceanica) meadow

2012

Abstract In situ nitrogen uptake by leaves and epiphytes was studied in a Mediterranean seagrass (Posidonia oceanica) meadow impacted from a fish farm and a pristine meadow, using 15NH4 and 15NO3 as tracers. In the impacted meadow both leaves and epiphytes yielded higher N concentrations and showed higher specific N uptake, suggesting a linkage between N uptake and its accumulation. Epiphytes took up N faster than leaves in relation to their corresponding biomass, but when assessed per unit area, N uptake was higher in leaves. Leaf N uptake was negatively correlated with epiphyte N uptake. With increasing epiphyte load on leaves, N leaf uptake decreased while N epiphyte uptake increased, in…

Settore BIO/07 - EcologiaBiomass (ecology)biologyNitrogen cycling Nutrient uptake Eutrophication Fish farm impact 15N tracer Stable isotopePlant ScienceAquatic Sciencebiology.organism_classificationWater columnNutrientSeagrassPosidonia oceanicaBotanyEpiphyteEutrophicationNitrogen cycleAquatic Botany
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Multibeam Sonar System for Detecting Seabed Features

2010

Settore BIO/07 - EcologiaBottom classification mapping Multibeam Sonar System Posidonia oceanica sand
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Discriminating between Posidonia oceanica meadows and sand substratum using multibeam sonar

2010

Abstract Di Maida, G., Tomasello, A., Luzzu, F., Scannavino, A., Pirrotta, M., Orestano, C., and Calvo, S. 2011. Discriminating between Posidonia oceanica meadows and sand substratum using multibeam sonar. – ICES Journal of Marine Science, 68: 12–19. High-resolution, multibeam sonar (MBS) (455 kHz) was used to identify two typologies of seabed 8 m deep: Posidonia oceanica meadow and sandy substratum. The results showed that the heterogeneity of the architecture of the P. oceanica canopy and the relatively simple morphology of a sandy substratum can be detected easily by statistical indices such as standard deviation or range-of-beam depth. Based on these indices, an automated classification…

Settore BIO/07 - EcologiaCanopyEcologybiologyStatistical indexSoil scienceAquatic Sciencebottom classification mapping multibeam sonar Posidonia oceanica sand SicilyOceanographybiology.organism_classificationSonarOceanographySeagrassPosidonia oceanicaEcology Evolution Behavior and SystematicsGeologySeabedICES Journal of Marine Science
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The detrimental consequences for seagrass of ineffective marine park management related to boat anchoring.

2014

Posidonia oceanica (L.) Delile meadows are recognized as priority habitat for conservation by the EU Habitats Directive. The La Maddalena Archipelago National Park (Mediterranean Sea) P. oceanica meadow. , the dominant coastal habitat of the area, is mostly threatened by boat anchoring. 12. years after the establishment of mooring fields and anchoring restrictions, a study was conducted to measure their effectiveness on the conservation of seagrass and the mitigation of anchoring damage. We found that: (i) the condition of P. oceanica was disturbed, both in the mooring fields and in control locations; (ii) mooring fields and anchoring restrictions did not show to be an efficient system for …

Settore BIO/07 - EcologiaConservation of Natural ResourcesAquatic ScienceOceanographyMediterranean SeaConservation of Natural ResourceShipEcosystemShipsgeography.geographical_feature_categoryMooring systemAlismatalesbiologyEcologyNational parkMedicine (all)Boat anchoringSeagraMooringbiology.organism_classificationPollutionManagementFisheryGeographySeagrassHabitatPosidonia oceanicaArchipelagoThreatened speciesHabitats DirectiveAlismatidaeMarine pollution bulletin
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Curve di crescita di riferimento nel monitoraggio di Posidonia oceanica: alcune stime preliminari

2011

Settore BIO/07 - EcologiaCurve di crescita Posidonia oceanica Monitoraggio
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Seagrass response to high CO2 in volcanic vents

2012

Settore BIO/07 - EcologiaCymodocea nodosa Posidonia oceanica ocean acidification CO2 vents
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The role and contribution of the seagrass Posidonia oceanica (L.) Delile organic matter for secondary consumers as revealed by carbon and nitrogen st…

2002

The δ13C and δ15N values of primary producers and consumers were studied to obtain information on the trophic role of Posidonia oceanica L. Delile, the dominant primary producer, in a Mediterranean shallow environment (the Stagnone di Marsala, western Sicily). δ13C strongly discriminated between pelagic and benthic pathways, with the former based on phytoplankton and the latter on a mixed pool of seagrass detritus, epiphytes and benthic algae as carbon sources. A particularly important trophic role appears to be performed by the vegetal epiphytic community on seagrass leaves (δ13C = -14.9 ± 0.1‰), which supports most of the faunal seagrass community (i.e. Amphipoda, Isopoda, Tanaidacea; δ13…

Settore BIO/07 - EcologiaDetritusbiologyEcologyEcologyDetritivorePosidonia oceanicaPelagic zoneFood webMediterraneanbiology.organism_classificationStable isotopeEcology Evolution Behavior and SystematicFood webBenthic zonePosidonia oceanicaEcology Evolution Behavior and SystematicsIsotope analysisTrophic levelNature and Landscape Conservation
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Transplantation assessment of degraded Posidonia oceanica habitats: site selection and long-term monitoring

2014

A model developed for Zostera marina was adapted and used to select suitable areas for Posidonia oceanica transplantation in the Gulf of Palermo, where recent rehabilitation programmes have reduced human pressure. This model consists of three steps: (1) habitat selection, by calculation of the Preliminary Transplant Suitability Index (PTSI); (2) field assessments and test-transplanting, to evaluate the site suitability and to estimate the effects of tearing on transplant units (about 50%); (3) identification of suitable restoration sites, by calculation of the Transplant Suitability Index (TSI). A new parameter was added to the literature model: the number of grids detached, which is linked…

Settore BIO/07 - EcologiaEnvironmental EngineeringrestorationSite selectionAquatic ScienceOceanographylcsh:Aquaculture. Fisheries. AnglingCuttingMediterranean SeaTransplantingtransplantEcology Evolution Behavior and SystematicsSeagrasslcsh:SH1-691biologyEcologySeagraPosidonia oceanicabiology.organism_classificationsite selectionTransplantationSeagrasssurgical procedures operativeHabitatAgronomyPosidonia oceanicaZostera marinaMediterranean Marine Science
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Genetic structure in the Mediterranean seagrass Posidonia oceanica: disentangling past vicariance events from contemporary patterns of gene flow

2010

The Mediterranean Sea is a two-basin system, with the boundary zone restricted to the Strait of Sicily and the narrow Strait of Messina. Two main population groups are recognized in the Mediterranean endemic seagrass Posidonia oceanica, corresponding to the Western and the Eastern basins. To address the nature of the East-West cleavage in P. oceanica, the main aims of this study were: (i) to define the genetic structure within the potential contact zone (i.e. the Strait of Sicily) and clarify the extent of gene flow between the two population groups, and (ii) to investigate the role of present water circulation patterns vs. past evolutionary events on the observed genetic pattern. To achiev…

Settore BIO/07 - EcologiaGene Flow0106 biological sciencesMediterranean climatePosidoniaDNA PlantGenotypePopulationVicarianceMediterranean010603 evolutionary biology01 natural sciencesEvolution MolecularMediterranean seaMediterranean SeaWater MovementsGeneticsVicarianceComputer Simulation14. Life underwaterdispersal simulation Mediterranean Posidonia oceanica simple sequence repeat transition zone vicarianceeducationEcology Evolution Behavior and SystematicsPrincipal Component Analysiseducation.field_of_studyAlismatalesPolymorphism GeneticGeographybiologyEcology010604 marine biology & hydrobiologyTransition zoneDispersal simulationPosidonia oceanicaSequence Analysis DNAbiology.organism_classificationSettore BIO/18 - GeneticaGenetics PopulationPosidonia oceanicaGenetic structureBiological dispersalSimple sequence repeatMicrosatellite Repeats
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