Search results for "MULT"

showing 10 items of 17528 documents

Long-Distance Travellers: Phylogeography of a Generalist Parasite, Pholeter gastrophilus, from Cetaceans

2017

We studied the phylogeography and historical demography of the most generalist digenean from cetaceans, Pholeter gastrophilus, exploring the effects of isolation by distance, ecological barriers and hosts' dispersal ability on the population structure of this parasite. The ITS2 rDNA, and the mitochondrial COI and ND1 from 68 individual parasites were analysed. Worms were collected from seven oceanic and coastal cetacean species from the south western Atlantic (SWA), central eastern Atlantic, north eastern Atlantic (NEA), and Mediterranean Sea. Pholeter gastrophilus was considered a single lineage because reciprocal monophyly was not detected in the ML cladogram of all individuals, and seque…

0106 biological sciences0301 basic medicineHeredityTroglotrematidaePopulation Dynamicslcsh:MedicinePopulation geneticsMarine and Aquatic SciencesPathogenesisGeneralist and specialist speciesPathology and Laboratory Medicine01 natural sciencesMonophylyDatabase and Informatics MethodsOceansMedicine and Health Scienceslcsh:ScienceAtlantic OceanMammalseducation.field_of_studyLikelihood FunctionsMultidisciplinaryGeographyReproductive isolationDNA HelminthPhylogeographyGenetic MappingBiogeographyVertebratesHost-Pathogen InteractionsSequence AnalysisResearch ArticleReproductive IsolationBioinformaticsGenetic SpeciationDolphinsPopulationZoologyMarine BiologyBiologyResearch and Analysis Methods010603 evolutionary biology03 medical and health sciencesBodies of waterGeneticsMediterranean SeaAnimalseducationMarine MammalsIsolation by distanceDemographyEvolutionary BiologyAnalysis of VariancePopulation BiologyPilot Whaleslcsh:REcology and Environmental SciencesOrganismsWhalesBiology and Life SciencesGenetic VariationSequence Analysis DNAPhylogeography030104 developmental biologyHaplotypesAmniotesEarth SciencesBiological dispersallcsh:QCetaceaPopulation GeneticsPLoS ONE
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High and uneven levels of 45S rDNA site-number variation across wild populations of a diploid plant genus (Anacyclus, Asteraceae)

2017

The nuclear genome harbours hundreds to several thousand copies of ribosomal DNA. Despite their essential role in cellular ribogenesis few studies have addressed intrapopulation, interpopulation and interspecific levels of rDNA variability in wild plants. Some studies have assessed the extent of rDNA variation at the sequence and copy-number level with large sampling in several species. However, comparable studies on rDNA site number variation in plants, assessed with extensive hierarchical sampling at several levels (individuals, populations, species) are lacking. In exploring the possible causes for ribosomal loci dynamism, we have used the diploid genus Anacyclus (Asteraceae) as a suitab…

0106 biological sciences0301 basic medicineHereditylcsh:MedicineAsteraceae01 natural sciencesGenuslcsh:ScienceAnacyclusIn Situ Hybridization FluorescenceFlowering PlantsHeterozygosityMultidisciplinarybiologyChromosome BiologyEukaryotaPlantsKaryotypesPloidyResearch ArticleChromosome Structure and FunctionEvolutionary ProcessesContext (language use)DNA RibosomalChromosomes PlantChromosomesPolyploidyAnacyclusCytogenetics03 medical and health sciencesPolyploidBotanyGenetic variationGeneticsHybridizationRibosomal DNAEvolutionary Biologylcsh:ROrganismsGenetic VariationBiology and Life SciencesCell BiologyRibosomal RNAbiology.organism_classificationDiploidy030104 developmental biologyRNA RibosomalGenetic LociEvolutionary biologyKaryotypinglcsh:QDepartures from Diploidy010606 plant biology & botanyPLOS ONE
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Using metabarcoding to reveal and quantify plant-pollinator interactions.

2016

AbstractGiven the ongoing decline of both pollinators and plants, it is crucial to implement effective methods to describe complex pollination networks across time and space in a comprehensive and high-throughput way. Here we tested if metabarcoding may circumvent the limits of conventional methodologies in detecting and quantifying plant-pollinator interactions. Metabarcoding experiments on pollen DNA mixtures described a positive relationship between the amounts of DNA from focal species and the number of trnL and ITS1 sequences yielded. The study of pollen loads of insects captured in plant communities revealed that as compared to the observation of visits, metabarcoding revealed 2.5 tim…

0106 biological sciences0301 basic medicineInsectaDNA PlantPollinationmedia_common.quotation_subjectInsectBiologymedicine.disease_cause010603 evolutionary biology01 natural sciencesArticle03 medical and health sciencesSpecies SpecificityPollinatorPollenmedicine[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisAnimalsDNA Barcoding TaxonomicPollinationPlant Physiological Phenomenamedia_common[SDV.GEN]Life Sciences [q-bio]/Genetics[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyMultidisciplinaryCommunityEcologyPlant communitySequence Analysis DNAPlants15. Life on landEcological genetics030104 developmental biologyTaxonPollen[SDE.BE]Environmental Sciences/Biodiversity and Ecology[ SDV.GEN ] Life Sciences [q-bio]/Genetics[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Insect societies fight back: the evolution of defensive traits against social parasites

2018

Insect societies face many social parasites that exploit their altruistic behaviours or their resources. Due to the fitness costs these social parasites incur, hosts have evolved various behavioural, chemical, architectural and morphological defence traits. Similar to bacteria infecting multicellular hosts, social parasites have to successfully go through several steps to exploit their hosts. Here, we review how social insects try to interrupt this sequence of events. They can avoid parasite contact by choosing to nest in parasite-free locales or evade attacks by adapting their colony structure. Once social parasites attack, hosts attempt to detect them, which can be facilitated by adjustme…

0106 biological sciences0301 basic medicineInsectaExploitmedia_common.quotation_subjectInsectBiology010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyHost-Parasite Interactions03 medical and health sciencesNestAnimalsSocial BehaviorCoevolutionmedia_commonEcologyHost (biology)ReproductionfungiMultiple traitsfood and beveragesArticlesBiological EvolutionBroodAggressionMulticellular organism030104 developmental biologyGeneral Agricultural and Biological Sciences
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Novel mutations in the voltage-gated sodium channel of pyrethroid-resistant Varroa destructor populations from the Southeastern USA

2016

The parasitic mite Varroa destructor has a significant worldwide impact on bee colony health. In the absence of control measures, parasitized colonies invariably collapse within 3 years. The synthetic pyrethroids tau-fluvalinate and flumethrin have proven very effective at managing this mite within apiaries, but intensive control programs based mainly on one active ingredient have led to many reports of pyrethroid resistance. In Europe, a modification of leucine to valine at position 925 (L925V) of the V. destructor voltage-gated sodium channel was correlated with resistance, the mutation being found at high frequency exclusively in hives with a recent history of pyrethroid treatment. Here,…

0106 biological sciences0301 basic medicineInsecticidesVeterinary medicineGene Identification and Analysislcsh:MedicineMicrobiologiaVoltage-Gated Sodium ChannelsFlumethrinmedicine.disease_causeBiochemistry01 natural sciencesAbellesInsecticide Resistancechemistry.chemical_compoundMethioninePyrethrinsÀcarsDestructorAmino Acidslcsh:ScienceMitesMutationMultidisciplinaryPyrethroidbiologyOrganic CompoundsGeneral MedicineBeesSoutheastern United StatesInsectsChemistryPhysical SciencesInsect ProteinsGeneral Agricultural and Biological SciencesResearch ArticleArthropodaApiaryParàsitsVarroidaeGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesLeucineparasitic diseasesGeneticsMitemedicineAnimalsPoint MutationSulfur Containing Amino AcidsIsoleucineMutation DetectionAllelesbusiness.industryPoint mutationOrganic Chemistrylcsh:ROrganismsChemical CompoundsBiology and Life SciencesProteinsbiology.organism_classificationInvertebratesHymenopteraBiotechnology010602 entomology030104 developmental biologyAliphatic Amino AcidschemistryGenetic LociVarroa destructorMutationlcsh:Qbusiness
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The long journey of Orthotrichum shevockii (Orthotrichaceae, Bryopsida): From California to Macaronesia

2019

Biogeography, systematics and taxonomy are complementary scientific disciplines. To understand a species' origin, migration routes, distribution and evolutionary history, it is first necessary to establish its taxonomic boundaries. Here, we use an integrative approach that takes advantage of complementary disciplines to resolve an intriguing scientific question. Populations of an unknown moss found in the Canary Islands (Tenerife Island) resembled two different Californian endemic species: Orthotrichum shevockii and O. kellmanii. To determine whether this moss belongs to either of these species and, if so, to explain its presence on this distant oceanic island, we combined the evaluation of…

0106 biological sciences0301 basic medicineLeavesPlant ScienceBryology01 natural sciencesGeographical locationsCaliforniaNonvascular PlantsPhylogenyData ManagementMultidisciplinaryPhylogenetic analysisbiologyPlant AnatomyQREukaryotaPhylogenetic AnalysisPlantsClassification3. Good healthPhylogeneticsPhylogeographyGeographyMedicineTaxonomy (biology)Research ArticleSystematicsComputer and Information SciencesScienceBiogeographyCanary Islands010603 evolutionary biologyEvolution Molecular03 medical and health sciencesOrthotrichumMossesEvolutionary SystematicsNonvascular plantsOrthotrichaceaeEndemismTaxonomyEvolutionary BiologyBotánicaOrganismsBiology and Life SciencesSequence Analysis DNA15. Life on landbiology.organism_classificationBryopsidaUnited States030104 developmental biologyTaxonSpainEvolutionary biologyAfricaNorth AmericaBiological dispersalPeople and places
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Co-infection with iflaviruses influences the insecticidal properties of Spodoptera exigua multiple nucleopolyhedrovirus occlusion bodies: Implication…

2017

Biological insecticides based on Spodoptera exigua multiple nucleopolyhedrovirus (SeMNPV) can efficiently control S. exigua larvae on field and greenhouse crops in many parts of the world. Spanish wild populations and laboratory colonies of S. exigua are infected by two iflaviruses (SeIV-1 and SeIV-2). Here we evaluated the effect of iflavirus co-infection on the insecticidal characteristics of SeMNPV occlusion bodies (OBs). Overall, iflavirus co-inoculation consistently reduced median lethal concentrations (LC50) for SeMNPV OBs compared to larvae infected with SeMNPV alone. However, the speed of kill of SeMNPV was similar in the presence or absence of the iflaviruses. A reduction of the we…

0106 biological sciences0301 basic medicineLife CyclesInsecticidesPhysiologyBiosecuritySeMNPV occlusion bodieslcsh:MedicineInsectPathogenesisPathology and Laboratory MedicineWeight Gain01 natural sciencesIflavirus co-infectionLarvaeInvertebrate GenomicsMedicine and Health Scienceslcsh:Sciencemedia_commonLarvaMultidisciplinaryCoinfectionAgricultureGenomicsInsectsPhysiological ParametersAgrochemicalsResearch ArticleArthropodamedia_common.quotation_subjectBiologySpodopteraSpodopteraMicrobiologyLepidoptera genitalia03 medical and health sciencesExtraction techniquesExiguaGeneticsAnimalsPest Control BiologicalBiological InsecticidesInoculationlcsh:RfungiBody WeightOrganismsBiology and Life SciencesPesticidebiology.organism_classificationInvertebratesRNA extractionNucleopolyhedrovirusesResearch and analysis methods010602 entomology030104 developmental biologyBiological insecticidesAnimal Genomicslcsh:QDevelopmental BiologyPLoS ONE
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Jumping on the Edge—First Evidence for a 2 × 6-meric Hemocyanin in Springtails

2019

Hemocyanins are respiratory dioxygen carrier proteins found in many arthropods including ancient terrestrial species such as spiders and scorpions as well as marine horseshoe crabs. As hemocyanins are highly conserved in this lineage, it is possible to observe an evolutionary descent through its subunits and their overall structure. Unfortunately, little is known about the structure and function of hexapod hemocyanins. Using recent springtail taxa (Collembola) as models for basal hexapods, and the help of electron microscopy, light scattering, SDS PAGE, and Western blot, we could demonstrate for the first time the presence of 2 × 6-meric hemocyanins in the hemolymph of hexapods. The quatern…

0106 biological sciences0301 basic medicineLineage (evolution)medicine.medical_treatmentlcsh:QR1-502Zoologychemical and pharmacologic phenomenaSpringtail010603 evolutionary biology01 natural sciencesBiochemistrycomplex mixtureslcsh:MicrobiologyArthropod Proteins03 medical and health sciencesCrustaceaHemolymphmedicineterrestrializationAnimalsProtein Structure QuaternaryMolecular BiologyArthropodsbiologyspringtailsCommunicationHemocyaninbiology.organism_classificationhexapodsCrustaceanHorseshoe crabRespiratory protein030104 developmental biologyHemocyaninsCollembolaProtein quaternary structurehemocyaninProtein MultimerizationBiomolecules
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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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Unravelling the biosynthesis of pyriculol in the rice blast fungus Magnaporthe oryzae

2017

Pyriculol was isolated from the rice blast fungus Magnaporthe oryzae and found to induce lesion formation on rice leaves. These findings suggest that it could be involved in virulence. The gene MoPKS19 was identified to encode a polyketide synthase essential for the production of the polyketide pyriculol in the rice blast fungus M. oryzae. The transcript abundance of MoPKS19 correlates with the biosynthesis rate of pyriculol in a time-dependent manner. Furthermore, gene inactivation of MoPKS19 resulted in a mutant unable to produce pyriculol, pyriculariol and their dihydro derivatives. Inactivation of a putative oxidase-encoding gene MoC19OXR1, which was found to be located in the genome cl…

0106 biological sciences0301 basic medicineMagnaportheMutantSecondary Metabolism01 natural sciencesMicrobiologyMicrobiology03 medical and health sciencesPolyketideGene Expression Regulation FungalPolyketide synthaseAxenicGenePlant DiseasesRegulation of gene expressionbiologyFungal geneticsfood and beveragesOryzabiology.organism_classificationPlant LeavesMagnaporthe030104 developmental biologyBenzaldehydesMultigene FamilyPolyketidesbiology.proteinFatty AlcoholsPolyketide SynthasesTranscription FactorsResearch Article010606 plant biology & botanyMicrobiology
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