Search results for " geographical distribution"

showing 10 items of 65 documents

Greater mitochondrial energy production provides resistance to ocean acidification in "winning" hermatypic corals

2021

Coral communities around the world are projected to be negatively affected by ocean acidification. Not all coral species will respond in the same manner to rising CO2 levels. Evidence from naturally acidified areas such as CO2 seeps have shown that although a few species are resistant to elevated CO2, most lack sufficient resistance resulting in their decline. This has led to the simple grouping of coral species into “winners” and “losers,” but the physiological traits supporting this ecological assessment are yet to be fully understood. Here using CO2 seeps, in two biogeographically distinct regions, we investigated whether physiological traits related to energy production [mitochondrial e…

mitochondrial electron transport010504 meteorology & atmospheric scienceslcsh:QH1-199.5Coralmitochondrial electron transport activityHermatypic coralOcean Engineeringocean acidificationBiologyAquatic Sciencelcsh:General. Including nature conservation geographical distributionOceanography01 natural sciencesMitochondrial electron transportAcclimatizationresistance03 medical and health scienceshermatypic corals14. Life underwaterlcsh:Science030304 developmental biology0105 earth and related environmental sciencesWater Science and Technology0303 health sciencesBiomass (ecology)Global and Planetary ChangeResistance (ecology)biomassEcologyactivityOcean acidificationCoral specieslcsh:Q
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Influence of Riverine Input on Norwegian Coastal Systems

2020

Coastal ecosystems are of high ecological and socioeconomic importance and are strongly influenced by processes from land, sea, and human activities. In this study, we present physical, chemical, and biological observations over two consecutive years from three study regions along the Norwegian coast that represent a broad latitudinal gradient in catchment and oceanographic conditions (∼59–69°N): outer Oslofjord/southern Norway, Runde/western Norway, and Malangen/northern Norway. The observations included river monitoring, coastal monitoring, and sensor-equipped ships of opportunity (“FerryBox”). The riverine discharge and transports were an order of magnitude higher, and the spatiotemporal…

0106 biological sciencesWater masschromophoric DOC (cDOM)010504 meteorology & atmospheric scienceslcsh:QH1-199.5Drainage basinOcean Engineeringdissolved organic carbon (DOC)Aquatic Sciencelcsh:General. Including nature conservation geographical distributionOceanography01 natural sciencesAlgal bloomriverine run-offcoastal systemsDissolved organic carbonEcosystem14. Life underwaterlcsh:ScienceVDP::Landbruks- og Fiskerifag: 900::Fiskerifag: 9200105 earth and related environmental sciencesWater Science and TechnologyGlobal and Planetary Changegeographygeography.geographical_feature_category010604 marine biology & hydrobiology15. Life on landSpring bloomColored dissolved organic matterOceanographycoastal darkening13. Climate actionEnvironmental scienceNorwegian Coastal Currentlcsh:QBloomFrontiers in Marine Science
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Current and Future Influence of Environmental Factors on Small Pelagic Fish Distributions in the Northwestern Mediterranean Sea

2020

Managing for the Future: Understanding the Relative Roles of Climate and Fishing on Structure and Dynamics of Marine Ecosystems.-- 20 pages, 15 figures, supplementary material https://www.frontiersin.org/articles/10.3389/fmars.2020.00622/full#supplementary-material

0106 biological sciences010504 meteorology & atmospheric sciencesEnvironmental changeclimate changeslcsh:QH1-199.5Species distributionClimate changeOcean EngineeringAquatic Sciencelcsh:General. Including nature conservation geographical distributionOceanography01 natural sciencesClimate changesMediterranean seaFutures scenariosAnchovyClimate refugesEuropean anchovylcsh:Science0105 earth and related environmental sciencesWater Science and TechnologyGlobal and Planetary ChangeBiomass (ecology)biologyspecies distribution model010604 marine biology & hydrobiologyPelagic zoneSpecies distribution modelsmall pelagic fishesclimate refugesbiology.organism_classificationFisherySmall pelagic fishesNW MediterraneanEnvironmental sciencelcsh:Qfutures scenariosFrontiers in Marine Science
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Molecular Systematics of the Long-Snouted Deep Water Dogfish (Centrophoridae, Deania) With Implications for Identification, Taxonomy, and Conservation

2021

According to the most recent taxonomical revision, the deep-sea dogfish genus Deania encompasses four species. Three of them, D. calcea, D. profundorum, and D. hystricosa, occur in the North Atlantic. Whilst D. profundorum can be identified by the presence of a subcaudal keel, the other two species are not easily visually distinguished. Uncertainties over identification raises concerns over stock units and whether management plans are adequate. In this study we compared onboard visual identification of Deania specimens, with morphological inspection of skin denticles under stereo microscope and with independent molecular taxonomical assignment using two molecular markers. Particular emphasi…

0106 biological scienceslcsh:QH1-199.5Lineage (evolution)deep-sea dogfishdeep-sea sharksOcean Engineeringlcsh:General. Including nature conservation geographical distributionAquatic SciencephylogenyOceanography010603 evolutionary biology01 natural sciencesCoalescent theoryskin denticles03 medical and health sciencesGenusVicariance14. Life underwaterlcsh:ScienceAtlantic Ocean030304 developmental biologyWater Science and Technology0303 health sciencesGlobal and Planetary Changebiologyfishery by-catchVDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Marinbiologi: 497biology.organism_classificationCentrophoridaeEvolutionary biologyMolecular phylogeneticslcsh:QTaxonomy (biology)DeaniaFrontiers in Marine Science
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Moving Toward a Strategy for Addressing Climate Displacement of Marine Resources: A Proof-of-Concept

2020

Realistic predictions of climate change effects on natural resources are central to adaptation policies that try to reduce these impacts. However, most current forecasting approaches do not incorporate species-specific, process-based biological information, which limits their ability to inform actionable strategies. Mechanistic approaches, incorporating quantitative information on functional traits, can potentially predict species- and population-specific responses that result from the cumulative impacts of small-scale processes acting at the organismal level, and can be used to infer population-level dynamics and inform natural resources management. Here we present a proof-of-concept study…

0106 biological sciencesMarine conservationSettore BIO/07 - Ecologia010504 meteorology & atmospheric scienceslcsh:QH1-199.5Engraulis encrasicolusProcess (engineering)Computer scienceClimate changeOcean EngineeringAquatic Sciencelcsh:General. Including nature conservation geographical distributionclimate-informed management; Dynamic Energy Budget model; Engraulis encrasicolus; life-history traits; scenarios; temperature increaseOceanography01 natural sciencesEnvironmental dataDynamic Energy Budget model14. Life underwaterNatural resource managementlcsh:Scienceclimate-informed management0105 earth and related environmental sciencesWater Science and TechnologyGlobal and Planetary Changebusiness.industry010604 marine biology & hydrobiologyEnvironmental resource managementscenariosNatural resourcelife-history traitsAdaptive management13. Climate actionSettore BIO/03 - Botanica Ambientale E Applicatatemperature increaselcsh:QFisheries managementbusiness
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A New Network for the Advancement of Marine Biotechnology in Europe and Beyond

2020

Marine organisms produce a vast diversity of metabolites with biological activities useful for humans, e.g., cytotoxic, antioxidant, anti-microbial, insecticidal, herbicidal, anticancer, pro-osteogenic and pro-regenerative, analgesic, anti-inflammatory, anticoagulant, cholesterol-lowering, nutritional, photoprotective, horticultural or other beneficial properties. These metabolites could help satisfy the increasing demand for alternative sources of nutraceuticals, pharmaceuticals, cosmeceuticals, food, feed, and novel bio-based products. in addition, marine biomass itself can serve as the source material for the production of various bulk commodities (e.g., biofuels, bioplastics, biomateria…

010504 meteorology & atmospheric scienceslcsh:QH1-199.5Best practiceblue growthStakeholder engagementresponsible research and innovationOcean Engineeringlcsh:General. Including nature conservation geographical distributionAquatic ScienceEnvironmental Science (miscellaneous)Oceanography01 natural sciences03 medical and health sciencesScience communication14. Life underwaterSDG 14 - Life Below Waterlcsh:Scienceblue growth ; marine biodiversity and chemodiversity ; marine biotechnology ; marine natural products ; responsible research and innovation ; science communication ; stakeholder engagement ; sustainability030304 developmental biology0105 earth and related environmental sciencesWater Science and Technology0303 health sciencesGlobal and Planetary ChangeResponsible Research and Innovationbusiness.industrymarine biodiversity and chemodiversitystakeholder engagementmarine natural productsChemical EngineeringCosmeceuticalsscience communicationsustainabilitymarine biotechnology ; marine natural products ; blue growth ; marine biodiversity and chemodiversity ; responsible research and innovation ; stakeholder engagement ; science communication ; sustainabilityblue growth; marine biodiversity and chemodiversity; marine biotechnology; marine natural products; responsible research and innovation; science communication; stakeholder engagement; sustainabilityBiotechnologyInterdisciplinary Natural Sciences13. Climate actionSustainabilityEngineering and TechnologyIdentification (biology)lcsh:Qbusinessmarine biotechnologyKnowledge transfer
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Long-Term Data Reveal the Associations of the Egg Quality With Abiotic Factors and Female Traits in the Baltic Herring Under Variable Environmental C…

2021

In fish, the lipid resources of the female form a link between the environment and progeny, contributing to the contents of the egg yolk. Variation of the environmental conditions is therefore expected to affect the egg quality via maternal pathways, reflecting the female’s response to the environmental factors before spawning. We investigated the content of lipids and thyroid hormones in the ovary and eggs of the Baltic herring during 1988–2019, when salinity of the Baltic Sea first declined and then stabilized to a lower level, and winters varied between severe and mild. The total lipid resources of spawning females decreased by 40–50% during the study, and the ovarian lipid concentration…

thyroid hormonesympäristötekijätSciencesilakkaQtemperatureGeneral. Including nature conservation geographical distributionlipiditQH1-199.5lisääntyminensalinitylipidsmunatsuolaisuuslämpötilaovaryeggBaltic herringFrontiers in Marine Science
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Retention forestry and biodiversity conservation: a parallel with agroforestry

2013

In forested landscapes two general management systems – retention forestry and agroforestry – have been proposed as potentially efficient components of landscape approaches to ease the conflict between biodiversity objectives and human needs. In two recent reviews, Gustafsson et al. (2012) and Lindenmayer et al. (2012) provide a global overview of current knowledge about the practice and ecological roles of retention forestry. A few years ago, Bhagwat et al. (2008) produced a similar review addressing the role of agroforestry in biodiversity conservation. Here we draw a parallel between research on the ecological effects of retention forestry and agroforestry. We argue that conservation sci…

lcsh:QH1-199.5noneForest managementBiodiversitylcsh:General. Including nature conservation geographical distributionforestBiodiversity conservationcost-effective biodiversity conservationlcsh:QH540-549.5Temperate climateNature and Landscape ConservationEcologybusiness.industryAgroforestryTaigaTropicskustannustehokkuusForestryluonnon monimuotoisuusmetsätGeographyAgricultureManagement systemta1181lcsh:EcologyluonnonsuojelubusinessNature Conservation
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Ocean Circulation Model Applications for the Estuary-Coastal-Open Sea Continuum

2021

Coastal zones are among the most variable environments. As such, they require adaptive water management to ensure the balance of economic and social interests with environmental concerns. High quality marine data of hydrographic conditions e.g., sea level, temperature, salinity, and currents are needed to provide a sound foundation for the decision making process. Operational models with sufficiently high forecasting quality and resolution can be used for a further extension of the marine service toward the coastal-estuary areas. The Limfjord is a large and shallow water body in Northern Jutland, connecting the North Sea in the West and the Kattegat in the East. It is currently not covered …

0106 biological sciences010504 meteorology & atmospheric sciencesScienceStorm surgedown-stream servicesOcean EngineeringFjordForcing (mathematics)Aquatic ScienceQH1-199.5Oceanography01 natural sciencescoastal managementHBMBathymetry14. Life underwaterCMEMSSea level0105 earth and related environmental sciencesWater Science and TechnologyGlobal and Planetary Changegeographygeography.geographical_feature_category010604 marine biology & hydrobiologyQGeneral. Including nature conservation geographical distributionEstuaryseamless ocean modeling estuary-coastal-open sea interaction coastal management CMEMS HBM down-stream services Limfjordestuary-coastal-open sea interactionOceanographyseamless ocean modeling13. Climate actionEnvironmental scienceHydrographyThermoclineFrontiers in Marine Science
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The essentials of marine biotechnology

2021

Coastal countries have traditionally relied on the existing marine resources (e.g., fishing, food, transport, recreation, and tourism) as well as tried to support new economic endeavors (ocean energy, desalination for water supply, and seabed mining). Modern societies and lifestyle resulted in an increased demand for dietary diversity, better health and well-being, new biomedicines, natural cosmeceuticals, environmental conservation, and sustainable energy sources. These societal needs stimulated the interest of researchers on the diverse and underexplored marine environments as promising and sustainable sources of biomolecules and biomass, and they are addressed by the emerging field of ma…

0301 basic medicine[SDV.BIO]Life Sciences [q-bio]/Biotechnologylcsh:QH1-199.5Stakeholder engagementOceanographyResponsible research and innovation (RRI)challangesNatural-productsResponsible research and innovation0302 clinical medicineMarine bioeconomyIn-silico predictionlcsh:SciencevalorizationMarine biodiversityWater Science and TechnologybiodiversityHeavy-metal detoxificationBioprospectingGlobal and Planetary ChangeBioprospectingLead-like moleculesconservationBiological SciencesSustainabilityMarine natural products[SDE]Environmental SciencesSolid-phase microextractionDeep-sea sedimentsNatural Sciencesmarine biotechnologymarine bioeconomyMarine conservationmarine biotechnology valorization biodiversity conservation challangesOcean EngineeringAquatic Sciencelcsh:General. Including nature conservation geographical distributionBioactive compoundsBlue growthWaste-water treatment03 medical and health sciencesbioprospecting ; blue growth ; marine biodiversity ; marine natural products ; sustainability ; ethics ; responsible research and innovation (RRI) ; marine bioeconomy14. Life underwaterRecreation[SDU.STU.OC]Sciences of the Universe [physics]/Earth Sciences/OceanographyEthicsResponsible Research and Innovationbusiness.industrySecondary metabolitesParticulate organic-carbonBiotechnology030104 developmental biology13. Climate actionAgricultureSustainabilitymarine biotechnology ; Blue growth ; Marine Biodiversity ; marine natural product ; sustainability ; Ethics ; Responsible research & innovationlcsh:Qbusiness030217 neurology & neurosurgeryTourism
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