Search results for " 4"

showing 10 items of 3131 documents

Demographic history has shaped the strongly differentiated corkwing wrasse populations in Northern Europe

2019

Understanding the biological processes involved in genetic differentiation and divergence between populations within species is a pivotal aim in evolutionary biology. One particular phenomenon that requires clarification is the maintenance of genetic barriers despite the high potential for gene flow in the marine environment. Such patterns have been attributed to limited dispersal or local adaptation, and to a lesser extent to the demographic history of the species. The corkwing wrasse (Symphodus melops) is an example of a marine fish species where regions of particular strong divergence are observed. One such genetic break occurred at a surprisingly small spatial scale (FST ~0.1), over a s…

0106 biological sciences0301 basic medicineGene FlowMaleReproductive IsolationDemographic historyphylogeography010603 evolutionary biology01 natural sciencesGene flow03 medical and health sciencesGenetic driftGeneticsAnimals14. Life underwaterEcology Evolution Behavior and Systematicspopulation genetics—empiricalLocal adaptationDemographyfishGenomebiologyEcologyGenetic DriftFisheslandscape geneticsVDP::Matematikk og Naturvitenskap: 400Reproductive isolationVDP::Mathematics and natural science: 400::Zoology and botany: 480::Zoogeography: 486VDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Zoogeografi: 486biology.organism_classificationEuropePhylogeography030104 developmental biologyaquacultureEvolutionary biologyBiological dispersalFemaleCorkwing wrasse
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Three chromosomal rearrangements promote genomic divergence between migratory and stationary ecotypes of Atlantic cod

2016

AbstractIdentification of genome-wide patterns of divergence provides insight on how genomes are influenced by selection and can reveal the potential for local adaptation in spatially structured populations. In Atlantic cod – historically a major marine resource – Northeast-Arctic- and Norwegian coastal cod are recognized by fundamental differences in migratory and non-migratory behavior, respectively. However, the genomic architecture underlying such behavioral ecotypes is unclear. Here, we have analyzed more than 8.000 polymorphic SNPs distributed throughout all 23 linkage groups and show that loci putatively under selection are localized within three distinct genomic regions, each of sev…

0106 biological sciences0301 basic medicineLinkage disequilibriumHeterozygoteGenotypePopulation010603 evolutionary biology01 natural sciencesGenomePolymorphism Single NucleotideArticleLinkage Disequilibrium03 medical and health sciencesVDP::Matematikk og naturvitenskap: 400::Basale biofag: 470::Genetikk og genomikk: 474Genetic variationAnimals14. Life underwatereducationLocal adaptationGeneticsEcotypeGene Rearrangementeducation.field_of_studyMultidisciplinaryGenomeEcotypebiologyGenetic VariationBayes TheoremGene rearrangementbiology.organism_classificationVDP::Mathematics and natural scienses: 400::Basic biosciences: 470::Genetics and genomics: 474030104 developmental biologyGadus morhuaEvolutionary biologyAnimal MigrationAtlantic codScientific Reports
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Flashing light emitting diodes (LEDs) induce proteins, polyunsaturated fatty acids and pigments in three microalgae

2020

As the periodic emission of light pulses by light emitting diodes (LEDs) is known to stimulate growth or induce high value biocompounds in microalgae, this flashing light regime was tested on growth and biochemical composition of the microalgae Nannochloropsis gaditana, Koliella antarctica and Tetraselmis chui. At low flashing light frequencies (e.g., 5 and 50 Hz, Duty cycle = 0.05), a strain-dependent growth inhibition and an accumulation of protein, polyunsaturated fatty acids, chlorophyll or carotenoids (lutein, β-carotene, violaxanthin and neoxanthin) was observed. In addition, a 4-day application of low-frequency flashing light to concentrated cultures increased productivities of eicos…

0106 biological sciences0301 basic medicinePigmentsLuteinBio Process EngineeringTotal lipidsSettore ING-IND/25 - Impianti ChimiciBioengineering01 natural sciencesApplied Microbiology and Biotechnology03 medical and health scienceschemistry.chemical_compoundPigment:Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Plantefysiologi: 492 [VDP]NeoxanthinPulsed lightChlorophytaVDP::Teknologi: 500::Bioteknologi: 590010608 biotechnologyVDP::Technology: 500::Biotechnology: 590MicroalgaeFood scienceBiomassCarotenoidVLAGchemistry.chemical_classificationDuty cycleDuty cycle Pigments PUFA Pulsed light Total lipidsFatty Acidsfood and beveragesGeneral Medicine:Matematikk og Naturvitenskap: 400::Basale biofag: 470::Molekylærbiologi: 473 [VDP]Flashing030104 developmental biologychemistryChlorophyllvisual_artvisual_art.visual_art_mediumFatty Acids Unsaturated:Teknologi: 500::Bioteknologi: 590 [VDP]StramenopilesPUFABiotechnologyPolyunsaturated fatty acidViolaxanthin
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Genetic structuring in Atlantic haddock contrasts with current management regimes

2020

AbstractThe advent of novel genetic methods has made it possible to investigate population structure and connectivity in mobile marine fish species: knowledge of which is essential to ensure a sustainable fishery. Haddock (Melanogrammus aeglefinus) is a highly exploited marine teleost distributed along the coast and continental shelf on both sides of the North Atlantic Ocean. However, little is known about its population structure. Here, we present the first study using single-nucleotide polymorphism (SNP) markers to assess the genetic population structure of haddock at multiple geographic scales, from the trans-Atlantic to the local (fjord) level. Genotyping 138 SNP loci in 1329 individual…

0106 biological sciences0301 basic medicinePopulation geneticsAquatic ScienceOceanography010603 evolutionary biology01 natural sciencesStructuringGenetic population structure of fish in the North AtlanticFiskeriforvaltningGenetic diversity03 medical and health sciencesVDP::Genetikk og genomikk: 474Fisheries ManagementGenetisk populasjonsstruktur hos fisk i NordatlanterenEcology Evolution Behavior and SystematicsEcologybiologyHaddockbiology.organism_classificationFishery030104 developmental biologyGeographyCurrent managementHyseGenetisk diversitetPopulasjonsgenetikkHaddock
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Thioredoxin (Trxo1) interacts with proliferating cell nuclear antigen (PCNA) and its overexpression affects the growth of tobacco cell culture.

2017

Thioredoxins (Trxs), key components of cellular redox regulation, act by controlling the redox status of many target proteins, and have been shown to play an essential role in cell survival and growth. The presence of a Trx system in the nucleus has received little attention in plants, and the nuclear targets of plant Trxs have not been conclusively identified. Thus, very little is known about the function of Trxs in this cellular compartment. Previously, we studied the intracellular localization of PsTrxo1 and confirmed its presence in mitochondria and, interestingly, in the nucleus under standard growth conditions. In investigating the nuclear function of PsTrxo1 we identified proliferati…

0106 biological sciences0301 basic medicineTFs transcription factorsOverexpressionBiologíaBiFC bimolecular fluorescence complementationClinical BiochemistryCell Culture TechniquesTobacco BY-2 cells01 natural sciencesBiochemistryTBY-2 tobacco bright yellow-2DTT 14-dithiothreitolBimolecular fluorescence complementationThioredoxinsGene Expression Regulation PlantTrx thioredoxinlcsh:QH301-705.5GFP green fluorescent proteinlcsh:R5-920biologyProliferating cell nuclear antigen (PCNA)Cell cycleGlutathione3. Good healthCell biologyMitochondriaNTR NADPH thioredoxin reductaseProtein TransportDEM diethyl maleateRT-qPCR Reverse transcription quantitative polymerase chain reactionThioredoxinlcsh:Medicine (General)Oxidation-ReductionAMS 4-acetamido-4-maleimidylstilbene-22-disulfonic acidResearch PaperPCNA proliferating cell nuclear antigenOex overexpressingCell cycleNucleusThioredoxin o103 medical and health sciencesROS reactive oxygen speciesDownregulation and upregulationProliferating Cell Nuclear AntigenTobaccoDAPI 46-diamidine-2-phenylindolmCBM monochlorobimaneCellular compartmentCell NucleusCell growthOrganic ChemistryBotánicaPeasMolecular biologyYFP yellow fluorescent proteinProliferating cell nuclear antigenTBS Tris-buffered salineOD optical density030104 developmental biologylcsh:Biology (General)Cell cultureRNA reactive nitrogen speciesbiology.proteinPrx peroxiredoxinBSA bovine serum albumin010606 plant biology & botanyRedox biology
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Migratory passage structures at hydropower plants as potential physiological and behavioural selective agents

2019

Anthropogenic activities affect fish populations worldwide. River dams have profound impacts on ecosystems by changing habitats and hindering migration. In an effort to counteract such effects, a range of mitigation measures have been installed at hydroelectric power plants. However, not all individuals in a population use these measures, potentially creating strong selection processes at hydroelectric power plants. This may be especially true during migration; fish can get heavily delayed or pass through a hydropower turbine, thus facing increased mortality compared with those using a safe bypass route. In this study, we quantify migration route choices of descending wild passive integrate…

0106 biological sciences1001Atlantic salmonsmoltRange (biology)Population60selectionmigration010603 evolutionary biology01 natural sciencesTurbinesurvivalHydroelectricityEcosystemlcsh:ScienceeducationHydropowerVDP::Landbruks- og Fiskerifag: 900::Fiskerifag: 920education.field_of_studyMultidisciplinarybusiness.industry010604 marine biology & hydrobiology70Biology (Whole Organism)14VDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Marinbiologi: 497FisheryhydropowerHabitatFish <Actinopterygii>Environmental sciencelcsh:QbusinessResearch Article
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Coastal Research Seen Through an Early Career Lens—A Perspective on Barriers to Interdisciplinarity in Norway

2021

The value of interdisciplinarity for solving complex coastal problems is widely recognized. Many early career researchers (ECRs) therefore actively seek this type of collaboration through choice or necessity, for professional development or project funding. However, establishing and conducting interdisciplinary research collaborations as an ECR has many challenges. Here, we identify these challenges through the lens of ECRs working in different disciplines on a common ecosystem, the Norwegian Skagerrak coast. The most densely populated coastline in Norway, the Skagerrak coast, is experiencing a multitude of anthropogenic stressors including fishing, aquaculture, eutrophication, climate chan…

0106 biological sciences2019-20 coronavirus outbreak010504 meteorology & atmospheric sciencesScienceFishingClimate changeOcean EngineeringFunding MechanismAquatic ScienceQH1-199.5Oceanography01 natural sciencesSkagerrakinterdisciplinarityVDP::Matematikk og Naturvitenskap: 400::Geofag: 450Early careerearly career researchersEnvironmental planning0105 earth and related environmental sciencesWater Science and TechnologyGlobal and Planetary ChangeNorway010604 marine biology & hydrobiologyMultitudePerspective (graphical)Professional developmentQGeneral. Including nature conservation geographical distributionoceanmarine science and technology
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Advancing Through the Pandemic From the Perspective of Marine Graduate Researchers: Challenges, Solutions, and Opportunities

2020

The ongoing COVID-19 pandemic has brought about a new social and academic reality to researchers worldwide. The field of marine science, our own topic of interest, has also been impacted in multiple ways, from cancelation of laboratory and field activities to postponement of onboard research. As graduate researchers, we have a time-sensitive academic path, and our current situation may constrain our academic future. At the same time, the pandemic demands revised strategies to deal with the ongoing difficulties and tackle similar future situations. In this perspective, we have gathered information on the challenges, solutions and opportunities for graduate researchers in the field of marine …

0106 biological sciences2019-20 coronavirus outbreaklcsh:QH1-199.5010504 meteorology & atmospheric sciencesCoronavirus disease 2019 (COVID-19)Ocean Engineeringlcsh:General. Including nature conservation geographical distributionAquatic ScienceOceanography01 natural sciencesopportunitiescareerPolitical sciencePandemicSocial mediaearly career researcherslcsh:Sciencecoronavirus pandemic0105 earth and related environmental sciencesWater Science and TechnologyAcademic careerGlobal and Planetary Change010604 marine biology & hydrobiologyField (Bourdieu)PostponementPerspective (graphical)VDP::Matematikk og Naturvitenskap: 400marine science and technologylcsh:QEngineering ethicsFrontiers in Marine Science
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50,000 years of ice and seals: Impacts of the Last Glacial Maximum on Antarctic fur seals

2021

Abstract Ice is one of the most important drivers of population dynamics in polar organisms, influencing the locations, sizes, and connectivity of populations. Antarctic fur seals, Arctocephalus gazella, are particularly interesting in this regard, as they are concomitantly reliant on both ice‐associated prey and ice‐free coastal breeding areas. We reconstructed the history of this species through the Last Glacial Maximum (LGM) using genomic sequence data from seals across their range. Population size trends and divergence events were investigated using continuous‐time size estimation analysis and divergence time estimation models. The combined results indicated that a panmictic population …

0106 biological sciences570Demographic historyRange (biology)Population590010603 evolutionary biology01 natural sciences03 medical and health sciencessingle nucleotide polymorphismsPeninsulaVDP::Matematikk og Naturvitenskap: 400::Basale biofag: 47014. Life underwaterglacial refugiaeducationEcology Evolution Behavior and SystematicsQH540-549.5030304 developmental biologyNature and Landscape ConservationOriginal Research0303 health sciencesPanmixiaeducation.field_of_studygeography.geographical_feature_categorybiologyEcologyPopulation sizeArctocephalus gazellaLast Glacial Maximumbiology.organism_classificationdemographic historyGeographyPhysical geographyArctocephalus gazella
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Activation of the plant plasma membrane H+ -ATPase. Is there a direct interaction between lysophosphatidylcholine and the C-terminal part of the enzy…

1996

The antagonistic effects of the fungal toxin beticolin-1 and of L-alpha-lysophosphatidylcholine (lysoPC) were investigated on the plasma membrane H+-ATPase of the plant Arabidopsis thaliana (isoform 2) expressed in yeast, using both wild-type enzyme (AHA2) and C-terminal truncated enzyme (aha2delta92). Phosphohydrolytic activities of both enzymes were inhibited by beticolin-1, with very similar 50% inhibitory concentrations, indicating that the toxin action does not involve the C-terminal located autoinhibitory domain of the proton pump. Egg lysoPC, a compound that activates the H+-ATPase by a mechanism involving the C-terminal part of the protein, was found to be able to reverse the inhibi…

0106 biological sciencesATPaseArabidopsismedicine.disease_cause01 natural sciencesBiochemistrychemistry.chemical_compoundStructural BiologyArabidopsis thalianaComputingMilieux_MISCELLANEOUSchemistry.chemical_classification0303 health sciencesbiologyPlantsRecombinant ProteinsIsoenzymesBeticolinProton-Translocating ATPasesLysophosphatidylcholineMembraneBiochemistryPlasma membrane H+-ATPase activationGene isoformAutoinhibitory domainDetergentsBiophysicsSaccharomyces cerevisiae[SDV.BC]Life Sciences [q-bio]/Cellular BiologyHeterocyclic Compounds 4 or More RingsStructure-Activity Relationship03 medical and health sciencesGeneticsmedicine[SDV.BC] Life Sciences [q-bio]/Cellular BiologyMolecular Biology030304 developmental biologyBinding SitesToxinCell MembraneLysophosphatidylcholinesCell BiologyMycotoxinsbiology.organism_classificationYeastEnzyme Activationl-α-LysophosphatidylcholineEnzymechemistryLiposomesbiology.protein010606 plant biology & botany
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