Search results for "Oceans"

showing 8 items of 78 documents

Decreasing Phanerozoic extinction intensity as a consequence of Earth surface oxygenation and metazoan ecophysiology

2021

The decline in background extinction rates of marine animals through geologic time is an established but unexplained feature of the Phanerozoic fossil record. There is also growing consensus that the ocean and atmosphere did not become oxygenated to near-modern levels until the mid-Paleozoic, coinciding with the onset of generally lower extinction rates. Physiological theory provides us with a possible causal link between these two observations-predicting that the synergistic impacts of oxygen and temperature on aerobic respiration would have made marine animals more vulnerable to ocean warming events during periods of limited surface oxygenation. Here, we evaluate the hypothesis that chang…

[SDE] Environmental SciencesAquatic OrganismsHot Temperature010504 meteorology & atmospheric sciencesPaleozoicEarth system evolutionecophysiologyEarth PlanetClimateOceans and SeasEffects of global warming on oceansBiodiversityExtinction BiologicalAtmospheric sciences01 natural sciencesCarbon Cycletemperature-dependent hypoxia03 medical and health sciencesPhanerozoicAnimalsSeawaterBackground extinction rate14. Life underwaterEcosystemComputingMilieux_MISCELLANEOUS030304 developmental biology0105 earth and related environmental sciencesExtinction event0303 health sciencesMultidisciplinaryExtinctionextinctionAtmosphereFossilsHypoxia (environmental)EarthBiodiversity15. Life on landBiologicalBiological EvolutionOxygen13. Climate actionPhysical Sciences[SDE]Environmental SciencesEnvironmental sciencePlanetgeographic locations
researchProduct

Global-Scale Environmental Niche and Habitat of Blue Shark (Prionace glauca) by Size and Sex: A Pivotal Step to Improving Stock Management

2022

25 pages, 10 figures, 2 tables, supplementary material https://www.frontiersin.org/articles/10.3389/fmars.2022.828412/full#supplementary-material.-- Data Availability Statement: The blue shark habitat data are available on the JRC Data Catalogue (https://data.jrc.ec.europa.eu/dataset?q=fish%20habitat) (or upon request) and habitat maps are available online (https://fishreg.jrc.ec.europa.eu/web/fish-habitat/habitatmapping). Chlorophyll-a data are available online (https://oceancolor.gsfc.nasa.gov/cgi/l3). The abiotic environmental and mesopelagic micronekton data are available online (https://marine.copernicus.eu/access-data).

foraging habitat habitat niche chlorophyll-a gradient marine productivity mesotrophic oligotrophic mesopelagic micronekton water temperatureGlobal and Planetary ChangeMesotrophic[SDE.MCG]Environmental Sciences/Global ChangesChlorophyll-a gradientMarine productivityOcean EngineeringAquatic ScienceOceanographyForaging habitatOligotrophicHabitat nicheWater temperature[SDE.BE]Environmental Sciences/Biodiversity and EcologyConserve and sustainably use the oceans seas and marine resources for sustainable developmentMesopelagic micronektonWater Science and TechnologyFrontiers in Marine Science
researchProduct

Temporal genetic structure in a poecilogonous polychaete: the interplay of developmental mode and environmental stochasticity

2014

Background: Temporal variation in the genetic structure of populations can be caused by multiple factors, including natural selection, stochastic environmental variation, migration, or genetic drift. In benthic marine species, the developmental mode of larvae may indicate a possibility for temporal genetic variation: species with dispersive planktonic larvae are expected to be more likely to show temporal genetic variation than species with benthic or brooded non-dispersive larvae, due to differences in larval mortality and dispersal ability. We examined temporal genetic structure in populations of Pygospio elegans, a poecilogonous polychaete with within-species variation in developmental m…

full-sibsPopulation geneticsOceans and SeasPopulationPopulation geneticsZoologyEnvironmentBiologyTemporalpoecilogonypygospio eleganssweepstakes reproductive successGenetic driftGenetic variationAnimalseducationEcosystemEcology Evolution Behavior and Systematicseducation.field_of_studyNatural selectionPygospio elegansEcologyGenetic DriftfungiGenetic VariationPolychaetaSweepstakes reproductive successDevelopmental modeGenetics PopulationFull-sibspopulaatiogenetiikkaBenthic zoneLarvaGenetic structureBiological dispersalPoecilogonyGenetic driftResearch ArticleMicrosatellite RepeatsBMC Evolutionary Biology
researchProduct

Major loss of coralline algal diversity in response to ocean acidification

2021

[Abstract] Calcified coralline algae are ecologically important in rocky habitats in the marine photic zone worldwide and there is growing concern that ocean acidification will severely impact them. Laboratory studies of these algae in simulated ocean acidification conditions have revealed wide variability in growth, photosynthesis and calcification responses, making it difficult to assess their future biodiversity, abundance and contribution to ecosystem function. Here, we apply molecular systematic tools to assess the impact of natural gradients in seawater carbonate chemistry on the biodiversity of coralline algae in the Mediterranean and the NW Pacific, link this to their evolutionary h…

macroalgae0106 biological sciencesecosystem engineersOceans and SeasBiodiversityadaptation010603 evolutionary biology01 natural sciencesEcosystem engineerEvolutionary historyMacroalgaeAlgaeClimate changeEnvironmental ChemistrySeawaterPhotic zoneEcosystem14. Life underwaterAdaptation[SDU.STU.OC]Sciences of the Universe [physics]/Earth Sciences/OceanographyEcosystembiodiversityGeneral Environmental ScienceGlobal and Planetary ChangeEcologybiologyEcology010604 marine biology & hydrobiologyOcean chemistryfungiCoralline algaeOcean acidificationBiodiversitySeaweedsHydrogen-Ion Concentration15. Life on landbiology.organism_classificationpsbAseaweedsclimate change13. Climate actionRhodophytaEcosystem engineers[SDV.EE.BIO]Life Sciences [q-bio]/Ecology environment/Bioclimatology[SDE.BE]Environmental Sciences/Biodiversity and Ecologyevolutionary historyGlobal Change Biology
researchProduct

Bright spots in the darkness of cancer: A review of starfishes-derived compounds and their anti-tumor action

2019

The fight against cancer represents a great challenge for researchers and, for this reason, the search for new promising drugs to improve cancer treatments has become inevitable. Oceans, due to their wide diversity of marine species and environmental conditions have proven to be precious sources of potential natural drugs with active properties. As an example, in this context several studies performed on sponges, tunicates, mollusks, and soft corals have brought evidence of the interesting biological activities of the molecules derived from these species. Also, echinoderms constitute an important phylum, whose members produce a huge number of compounds with diverse biological activities. In…

marine invertebratesOceans and SeasStarfishSea-starPharmaceutical ScienceContext (language use)Antineoplastic AgentsReviewNatural compoundMarine species03 medical and health sciencesStarfish0302 clinical medicineAnti-cancer activitymolecular drugsNeoplasmsDrug Discoverymedicinenatural compoundsAnimalsHumansGlycosidesPharmacology Toxicology and Pharmaceutics (miscellaneous)lcsh:QH301-705.5Molecular drug030304 developmental biologyAntitumor activity0303 health sciencesBiological ProductsbiologyPhylumMarine invertebrateCancerMarine invertebratesmedicine.diseasebiology.organism_classificationInvertebratesHuman tumorlcsh:Biology (General)Evolutionary biology030220 oncology & carcinogenesis
researchProduct

Isolation and confirmation of viral nervous necrosis (VNN) disease in golden grey mullet (Liza aurata) and leaping mullet (Liza saliens) in the Irani…

2016

The present study was conducted on 428 moribund mullet fish samples to isolate and identify the causative agent of a mysterious acute mortality which recently occurred in wild mullets in Iranian waters of Caspian Sea, suspected to be due to viral nervous necrosis (VNN) disease. Disease investigation was carried out employing various diagnostic procedures such as virology, bacteriology, parasitology, haematology, histopathology, IFAT, IHC and nested RT-PCR. Brain and eye samples of affected fishes were collected in sterile conditions and then kept at -80 °C for cell culture isolation and nested RT-PCR detection of the causative agent. Other tissue samples were also collected and fixed for hi…

medicine.medical_specialtyVeterinary medicinePathology040301 veterinary sciencesCaspian sea; Golden grey mullet (Liza aurata); Iran; Leaping mullet (Liza saliens); Viral nervous necrosisOceans and SeasViral nervous necrosisBetanodavirusSettore BIO/05 - ZoologiaBiologyIranMicrobiologyPolymerase Chain ReactionMulletCell Line0403 veterinary scienceTissue cultureFish DiseasesRNA Virus InfectionsMicroscopy Electron TransmissionmedicineCaspian seaAnimalsNodaviridaeFluorescent Antibody Technique IndirectGeneral VeterinaryOutbreak04 agricultural and veterinary sciencesGeneral Medicinebiology.organism_classificationImmunohistochemistrySurvival AnalysisSmegmamorphaParasitology040102 fisheries0401 agriculture forestry and fisheriesHistopathologyGolden grey mullet (Liza aurata)Leaping mullet (Liza saliens)Golden grey mulletLeaping mulletVeterinary microbiology
researchProduct

Natural Halogen Emissions to the Atmosphere: Sources, Flux, and Environmental Impact

2022

Understanding the atmospheric geochemical cycle of both natural and anthropogenic halogens is important because of the detrimental effect halogens have on the environment, notably on tropospheric and stratospheric ozone. Oceans are the primary natural source for atmospheric Cl, F, Br, and I, but anthropogenic emissions are still important, especially for Cl. While emissions of human-made halocarbons (e.g., chlorofluorocarbons or CFCs) are expected to continue to decrease allowing progressive stratospheric ozone recovery, volcanic activity (e.g., clusters of mid-scale explosive eruptions or large-scale explosive eruptions) might disturb this recovery over the next decades. This review provid…

ozone depletionmethyl halidesvolcanic gasesGeochemistry and Petrologybrominevery-short lived substancesEarth and Planetary Sciences (miscellaneous)oceansElements
researchProduct

KOSMOS 2017 Peru Side Experiment: nutrients, phytoplankton abundances, enzyme rates, photophysiology

2022

This data was collected during an short-term incubation experiment in March 2017 that investigated the response of a surface plankton community to upwelling. This experiment was carried in the framework of the SFB754-funded KOSMOS mesocosm study that took place in La Punta, Callao, Peru between February-April 2017. A total of six different treatments were used to disentangle chemical and biological characteristics of deep water that influence surface plankton blooms: 2 different deep water sources with different nutrient concentrations; 3 treatments to distinguish the effects of inorganic nutrients, organic nutrients and deep water microbial populations. Measured variables include inorganic…

ratioDay of experimentSFB754colored dissolved organic matter at 325 nmNitriteChlorophyll aAbsorption coefficient colored dissolved organic matter at 254 nmClimate - Biogeochemistry Interactions in the Tropical Ocean (SFB754)colorimetric determinationFluorometerFluorometricNitrateNanoplanktonPhytoplankton cells phycocyanin-containing (FL-4)PicoeukaryotesFluorometer fast repetition rateCalculatedFlow cytometryNutrient consumption ratioforward scatterSynechococcusupwelling systemsMesocosm experimentSpectrophotometricClimate Biogeochemistry Interactions in the Tropical Ocean SFB754SilicateBiogeochemistryBiospheric SciencesMaximum photochemical quantum yield of photosystem IIenzyme activitycell sizeDissolved inorganic nitrogen/dissolved inorganic phosphorus ratioKOSMOS_2017chainsAbsorption coefficient colored dissolved organic matter 250 nm/365 nm ratioeastern tropical South Pacific OceanKOSMOSExcess phosphateAbsorption coefficient colored dissolved organic matter at 325 nmNatural SciencesGeosciencescolored dissolved organic matter at 254 nmphycocyanin containing FL 4Absorption coefficientPhosphateTank numberPhytoplankton cells chainsNetwork of Leading European AQUAtic MesoCOSM Facilities Connecting Mountains to Oceans from the ArctReplicatenutrientsfast repetition rateDATE TIMECryptophytesMicrophytoplanktonPhytoplankton cellsLeucine aminopeptidase activityDissolved inorganic nitrogen dissolved inorganic phosphorus ratiofungiEnzymatic assayContinuous flow analyserTreatmentDATE/TIMEcolored dissolved organic matter 250 nm 365 nmPhytoplanktonPhytoplankton cell size forward scatterNetwork of Leading European AQUAtic MesoCOSM Facilities Connecting Mountains to Oceans from the Arctic to the Mediterranean (AQUACOSM)CDOMContinuous flow analyser colorimetric determinationNitrate and Nitrite
researchProduct