Search results for "POLYMER"

showing 10 items of 10504 documents

The role of the Strait of Gibraltar in shaping the genetic structure of the Mediterranean Grenadier, Coryphaenoides mediterraneus, between the Atlant…

2017

24 pages, 4 figures, 4 tables, supplementary information https://dx.doi.org/10.1371/journal.pone.0174988.-- Data Availability: The mtDNA COI sequences can be accessed at BOLD systems through the sample ID: ME-9911; ME-11972; ME-13727; GLF011. New mtDNA COI sequences can be accessed at GenBank by the accession numbers KY345206 - KY345398. GenBank accession numbers for close related species of C. mediterraneus are: Coryphaenoides striaturus - KX656427.1, KX656428.1; Coryphaenoides murray - KX656411.1, KX656410.1; Coryphaenoides carapinus - KX656382.1, KX656381.1; Coryphaenoides brevibarbis - KX656377.1, KX656376.1, KX656375.1. An alignment in fasta with all the haplotypes and respective frequ…

0106 biological sciences0301 basic medicineMediterranean climateLife CyclesHeredityPopulation geneticslcsh:MedicineArtificial Gene Amplification and ExtensionBiochemistryPolymerase Chain Reaction01 natural sciencesBathyal zoneLarvaeMediterranean sealcsh:ScienceAtlantic OceanPrincipal Component Analysiseducation.field_of_studyMultidisciplinaryGeographyMitochondrial DNANucleic acidsGenetic MappingGenetic structureResearch ArticleFish ProteinsGene FlowForms of DNAPopulationZoologyBiologyResearch and Analysis MethodsModels Biological010603 evolutionary biologyElectron Transport Complex IVEvolution Molecular03 medical and health sciencesMediterranean SeaGeneticsAnimalsComputer Simulation14. Life underwaterMolecular Biology TechniqueseducationMolecular BiologyGibraltarEvolutionary BiologyPopulation Biologylcsh:RGenetic VariationBiology and Life SciencesPaleontologyBayes TheoremDNAGenetic divergenceGadiformes030104 developmental biologyHaplotypesGenetic LociEarth SciencesBiological dispersallcsh:QPaleogeneticsPopulation GeneticsMicrosatellite RepeatsDevelopmental BiologyPLoS ONE
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Tonoplast aquaporins facilitate lateral root emergence\ud

2016

Pôle SPE IPM UB; International audience; Aquaporins (AQPs) are water channels allowing fast and passive diffusion of water across cell membranes. It was hypothesized that AQPs contribute to cell elongation processes by allowing water influx across the plasma membrane and the tonoplast to maintain adequate turgor pressure. Here, we report that, in Arabidopsis (Arabidopsis thaliana), the highly abundant tonoplast AQP isoforms AtTIP1;1, AtTIP1;2, and AtTIP2;1 facilitate the emergence of new lateral root primordia (LRPs). The number of lateral roots was strongly reduced in the triple tip mutant, whereas the single, double, and triple tip mutants showed no or minor reduction in growth of the mai…

0106 biological sciences0301 basic medicinePhysiology[SDV]Life Sciences [q-bio]MeristemPopulationArabidopsisMorphogenesisAquaporinPlant ScienceAquaporinsPlant Roots01 natural sciences03 medical and health sciencesGene Expression Regulation PlantArabidopsisGeneticsProtein IsoformsArabidopsis thaliana[SDV.BV]Life Sciences [q-bio]/Vegetal Biologyeducationeducation.field_of_studyMicroscopy ConfocalWater transportbiologyurogenital systemArabidopsis ProteinsReverse Transcriptase Polymerase Chain ReactionGene Expression ProfilingLateral rootQKGene Expression Regulation DevelopmentalWaterBiological TransportArticlesMeristemPlants Genetically Modifiedbiology.organism_classificationMolecular biologyCell biology030104 developmental biologyMutationVacuoles[SDE]Environmental Sciences010606 plant biology & botany
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Sugar exchanges in arbuscular mycorrhiza: RiMST5 and RiMST6, two novel Rhizophagus irregularis monosaccharide transporters, are involved in both suga…

2016

SPE IPM INRA UB CT1; International audience; Arbuscular mycorrhizal (AM) fungi are associated with about 80% of land plants. AM fungi provide inorganic nutrients to plants and in return up to 20% of the plant-fixed CO2 is transferred to the fungal symbionts. Since AM fungi are obligate biotrophs, unraveling how sugars are provided to the fungus partner is a key for understanding the functioning of the symbiosis. In this study, we identified two new monosaccharide transporters from Rhizophagus irregularis (RiMST5 and RiMST6) that we characterized as functional high affinity monosaccharide transporters. RiMST6 was characterized as a glucose specific, high affinity H(+) co-transporter. We prov…

0106 biological sciences0301 basic medicineRhizophagus irregularisLightPhysiology[SDV]Life Sciences [q-bio]Plant Sciencearbuscular mycorrhizal fungus01 natural sciencesrhizophagus irregularisGlomeromycotaSoilGene Expression Regulation PlantMycorrhizaeMedicagoPhylogeny2. Zero hungerMutualism (biology)Fungal proteinReverse Transcriptase Polymerase Chain Reactionglucose specificMonosaccharidesfood and beverageshigh affinity H+ co-transporterhigh affinity transporterArbuscular mycorrhizaBiochemistry[SDE]Environmental SciencesFungusSaccharomyces cerevisiaeBiologyFungal Proteins03 medical and health sciencesSymbiosisStress PhysiologicalBotanyGenetics[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyRNA MessengerGlomeromycotaObligateCell MembraneGenetic Complementation TestfungiMST5MST6Membrane Transport Proteins15. Life on landmonosaccharide transporterbiology.organism_classification030104 developmental biologyGlucose010606 plant biology & botany
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Arbuscular mycorrhizal symbiosis mitigates the negative effects of salinity on durum wheat

2017

Arbuscular mycorrhizal (AM) symbiosis is generally considered to be effective in ameliorating the plant tolerance to salt stress. Unfortunately, the comprehension of the mechanisms implicated in salinity stress alleviation by AM symbiosis is far from being complete. Thus, an experiment was performed by growing durum wheat (Triticum durum Desf.) plants under salt-stress conditions to evaluate the influence of AM symbiosis on both the plant growth and the regulation of a number of genes related to salt stress and nutrient uptake. Durum wheat plants were grown outdoors in pots in absence or in presence of salt stress and with or without AM fungi inoculation. The inoculum consisted of a mixture…

0106 biological sciences0301 basic medicineRhizophagus irregularisSalinityLeavesGene Expressionlcsh:MedicinePlant SciencePlant RootsPolymerase Chain ReactionPhysical Chemistry01 natural sciencesNutrientMycorrhizaePlant Resistance to Abiotic Stresslcsh:ScienceTriticumBiomass (ecology)MultidisciplinaryEcologyPlant Anatomyfood and beveragesSalt TolerancePlantsSettore AGR/02 - Agronomia E Coltivazioni ErbaceeChemistryPlant PhysiologyPhysical SciencesWheatSymbiosiResearch ArticleBiology03 medical and health sciencesSymbiosisSettore AGR/07 - Genetica AgrariaPlant-Environment InteractionsBotanyGeneticsPlant DefensesGene RegulationGrassesSymbiosisBiochemistry Genetics and Molecular Biology (all)InoculationGene Expression ProfilingPlant EcologyEcology and Environmental Scienceslcsh:RfungiOrganismsFungiBiology and Life SciencesPlant RootPlant Pathologybiology.organism_classificationSporeSalinitySpecies Interactions030104 developmental biologyAgricultural and Biological Sciences (all)Chemical PropertiesArbuscular mycorrhizal symbiosislcsh:QSalt-Tolerance010606 plant biology & botanyPLOS ONE
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RNA uridylation and decay in plants

2018

RNA uridylation consists of the untemplated addition of uridines at the 3′ extremity of an RNA molecule. RNA uridylation is catalysed by terminal uridylyltransferases (TUTases), which form a subgroup of the terminal nucleotidyltransferase family, to which poly(A) polymerases also belong. The key role of RNA uridylation is to regulate RNA degradation in a variety of eukaryotes, including fission yeast, plants and animals. In plants, RNA uridylation has been mostly studied in two model species, the green algae Chlamydomonas reinhardtii and the flowering plant Arabidopsis thaliana . Plant TUTases target a variety of RNA substrates, differing in size and function. These RNA substrates include …

0106 biological sciences0301 basic medicineSmall interfering RNATerminal nucleotidyltransferaseRNA StabilitymRNAArabidopsisChlamydomonas reinhardtiiUridylationBiology01 natural sciencesRNA decayGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesRNA degradationSettore AGR/07 - Genetica AgrariamicroRNAGene silencing[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyUridineComputingMilieux_MISCELLANEOUSPolymerase2. Zero hungerMessenger RNABiochemistry Genetics and Molecular Biology (all)fungiRNAfood and beverages[SDV.BBM.BM]Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyArticlesPlantsRibosomal RNAbiology.organism_classificationCell biology030104 developmental biologyAgricultural and Biological Sciences (all)biology.proteinRNARNA InterferenceGeneral Agricultural and Biological SciencesChlamydomonas reinhardtii010606 plant biology & botany
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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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Survey of five major grapevine viruses infecting Blatina and Žilavka cultivars in Bosnia and Herzegovina

2021

The sanitary status of grapevines has not yet been considered sufficiently in vineyards throughout Bosnia and Herzegovina (BiH). An extensive survey of five major grapevine viruses in the country was carried out in 2019. A total of 630 samples from the two dominant autochthonous cultivars, named Žilavka and Blatina, were tested by DAS-ELISA for the presence of grapevine leafroll-associated viruses (GLRaV-1 and 3), grapevine fleck virus (GFkV), grapevine fanleaf virus (GFLV) and Arabis mosaic virus (ArMV). Eighty-eight % of the samples were positive for at least one virus, and all five viruses were detected, thought with different incidence, i.e. GLRaV-3 (84%), GFLV (43%), GLRaV-1 (14%), GFk…

0106 biological sciences0301 basic medicineVeterinary medicineArtificial Gene Amplification and ExtensionDisease VectorsPathology and Laboratory MedicinePolymerase Chain Reaction01 natural sciencesPlant VirusesMedical ConditionsXiphinemaMedicine and Health SciencesVitisCultivarNematode InfectionsFlowering PlantsPhylogenyData Managementeducation.field_of_studyMultidisciplinarybiologyPhylogenetic treeQREukaryotaPhylogenetic AnalysisGrapevine fanleaf virusPlantsPhylogeneticsInfectious DiseasesMedical MicrobiologyViral PathogensVirusesMedicineRNA ViralGrapevineViral VectorsPathogensPlant ViruseResearch ArticleComputer and Information SciencesSciencePopulationPlant DiseaseResearch and Analysis Methodsno key wordsMicrobiologyVirusArabis mosaic virus03 medical and health sciencesVirologyParasitic DiseasesEvolutionary SystematicsMolecular Biology TechniqueseducationMolecular BiologyMicrobial PathogensTaxonomyPlant DiseasesBosnia and HerzegovinaEvolutionary BiologyGenetic diversityOrganismsBiology and Life SciencesSettore AGR/12 - Patologia VegetaleReverse Transcriptase-Polymerase Chain Reactionbiology.organism_classificationVector-Borne DiseasesSpecies Interactions030104 developmental biologyViral Transmission and Infection010606 plant biology & botany
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Begomoviruses Infecting Tomato Crops in Panama

2015

The key regions in Panama involved in open field- and greenhouse-grown commercial tomato production, including the Chiriquí, Veraguas, Herrera, Los Santos, Coclé and Panama Oeste provinces, were surveyed for the incidence and distribution of begomoviruses in the growing seasons of 2011 and 2012. The surveys took place in 14 of the 51 districts of the above-mentioned provinces and comprised all relevant tomato production areas of the provinces. A total of 28 tomato plots were surveyed. The exact location of each plot was geo-referenced using a hand-held Global Positioning System unit. In total, 319 individual tomato plants (181 in 2011 and 138 in 2012) were sampled. Plants displayed diverse …

0106 biological sciences0301 basic medicineVeterinary medicinePhysiologyGrowing seasonTomato leaf curl Sinaloa viruPlant ScienceBiology01 natural scienceslaw.invention03 medical and health sciencesSolanum lycopersicumlawGenusBotanyTomato yellow mottle viruGeneticsLeaf sizePolymerase chain reactionPanamafungiBegomovirusSettore AGR/12 - Patologia Vegetalefood and beveragesbiology.organism_classificationPolymerase chain reactionTomato yellow mottle virus030104 developmental biologyKey (lock)Potato yellow mosaic Panama viruAgronomy and Crop Science010606 plant biology & botanyJournal of Phytopathology
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Granulation and microbial community dynamics in the chitosan-supplemented anaerobic treatment of wastewater polluted with organic solvents.

2018

Abstract The effect of chitosan on the development of granular sludge in upflow anaerobic sludge blanket reactors (UASB) when treating wastewater polluted with the organic solvents ethanol, ethyl acetate, and 1-ethoxy-2-propanol was evaluated. Three UASB reactors were operated for 219 days at ambient temperature with an organic loading rate (OLR) of between 0.3 kg COD m −3 d −1 and 20 kg COD m −3 d −1 . One reactor was operated without the addition of chitosan, while the other two were operated with the addition of chitosan doses of 2.4 mg gVSS −1 two times. The three reactors were all able to treat the OLR tested with COD removal efficiencies greater than 90%. However, the time required to…

0106 biological sciencesAigua ContaminacióEnvironmental EngineeringPolymersEthyl acetate010501 environmental sciencesWastewater01 natural sciencesWaste Disposal FluidMethanosaetaMethanomicrobialesChitosanchemistry.chemical_compoundGranulationExtracellular polymeric substanceBioreactors010608 biotechnologyAnaerobiosisParticle SizeWaste Management and Disposal0105 earth and related environmental sciencesWater Science and TechnologyCivil and Structural EngineeringBiological Oxygen Demand AnalysisChitosanbiologySewageEcological ModelingMicrobiotaGranule (cell biology)biology.organism_classificationPulp and paper industryPollutionMethanogenchemistryWastewaterSolventsAigua MicrobiologiaGeobacterWater Pollutants ChemicalWater research
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Insect Vectors (Hemiptera: Cixiidae) and Pathogens Associated with the Disease Syndrome “Basses Richesses” of Sugar Beet in France

2019

International audience; The syndrome “basses richesses” (SBR) is a disease of sugar beet in eastern France associated with two phloem-restricted, nonculturable plant pathogens: a stolbur phytoplasma and a γ-3 proteobacterium, here called SBR bacterium. Three planthopper (Hemiptera: Cixiidae) species were found to live near and within sugar beet fields in eastern France: Cixius wagneri, Hyalesthes obsoletus, and Pentastiridius leporinus. The role of these planthoppers in spreading the two pathogens to sugar beet was studied. Based on its abundance and high frequency of infection with the SBR bacterium, P. leporinus was considered to be the economic vector of SBR disease. C. wagneri, the prim…

0106 biological sciencesBASSES RICHESSES SYNDROME OF SUGAR BEETHomopteraEXPERIMENTAL TRANSMISSIONCIXIIDAEPlant Science01 natural sciencesHEMIPTERADETECTION03 medical and health sciencesPlanthopperBotanySugarPOLYMERASE CHAIN REACTION RESTRICTED FRAGMENT LENGH POLYMORPHISM030304 developmental biology2. Zero hunger0303 health sciencesbiologyPHLOEM LIMITED BACTERIAfungifood and beveragesLeporinusbiology.organism_classificationCixiidae[SDV.BV.PEP]Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacyHYALESTHES OBSOLETUSINSECTEGAMMA-3-PROTEOBACTERIAPhytoplasmaSTOLBUR PHYTOPLASMAVECTORSSugar beetCIXIUS WAGNERICHARACTERIZATIONAgronomy and Crop ScienceConvolvulusPENTASTIRIDIUS LEPORINUS010606 plant biology & botany
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