Search results for "MULT"

showing 10 items of 17528 documents

Genome-Wide Profiling and Phylogenetic Analysis of the SWEET Sugar Transporter Gene Family in Walnut and Their Lack of Responsiveness to Xanthomonas …

2020

Following photosynthesis, sucrose is translocated to sink organs, where it provides the primary source of carbon and energy to sustain plant growth and development. Sugar transporters from the SWEET (sugar will eventually be exported transporter) family are rate-limiting factors that mediate sucrose transport across concentration gradients, sustain yields, and participate in reproductive development, plant senescence, stress responses, as well as support plant&ndash

0106 biological sciences0301 basic medicinephylogeny01 natural scienceslcsh:Chemistrywalnut blightTAL effectorType III Secretion Systems2.1 Biological and endogenous factorsAetiologylcsh:QH301-705.5SpectroscopyPlant Proteins<i>Xanthomonas</i>GeneticsGenomebiologyfood and beveragesSWEET sugar transportersGeneral MedicineSucrose transportComputer Science ApplicationsInfectious DiseasesMultigene Familygene familyJuglansXanthomonasPlant DevelopmentJuglansCatalysisInorganic Chemistry03 medical and health sciencesTAL effectorXanthomonasGeneticsGene familySugar transporterPhysical and Theoretical ChemistryMolecular BiologyGenePlant DiseasesChemical PhysicsOrganic ChemistryfungiMembrane Transport ProteinsBiological TransportXanthomonas arboricolaPlantbiology.organism_classification030104 developmental biologylcsh:Biology (General)lcsh:QD1-999Gene Expression Regulationgene expressionOther Biological SciencesOther Chemical Sciences010606 plant biology & botanyInternational Journal of Molecular Sciences
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Genomic stability through time despite decades of exploitation in cod on both sides of the Atlantic

2021

Significance Both theory and experiments suggest that fishing can drive the evolution of an earlier maturation age. However, determining whether changes in the wild are the result of fisheries-induced evolution has been difficult. Temporal, genome-wide datasets can directly reveal responses to selection. Here, we investigate the genomes of two wild Atlantic cod populations from samples that pre- and postdate periods of intensive fishing. Although phenotypic changes suggest fisheries-induced evolution, we do not find evidence for any strong genomic change or loss of genetic diversity. While evolution could have occurred through undetectable frequency changes at many loci, the irreversible lo…

0106 biological sciences0301 basic medicinepopulation genomicsFishing430010603 evolutionary biology01 natural sciencesGenomeGenomic InstabilityPopulation genomicsEvolution Molecular03 medical and health sciencesselective sweepsEffective population sizeGadusAnimalsBiomassAtlantic OceanGenetic diversityMultidisciplinaryPolymorphism GeneticbiologyPopulation Biologyfisheries-induced evolutiongenetic diversityBiological Sciencesbiology.organism_classification030104 developmental biologyArcticGadus morhuaEvolutionary biologysense organsAtlantic codhistorical DNA
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Experimental evidence suggests that specular reflectance and glossy appearance help amplify warning signals

2017

AbstractSpecular reflection appears as a bright spot or highlight on any smooth glossy convex surface and is caused by a near mirror-like reflectance off the surface. Convex shapes always provide the ideal geometry for highlights, areas of very strong reflectance, regardless of the orientation of the surface or position of the receiver. Despite highlights and glossy appearance being common in chemically defended insects, their potential signalling function is unknown. We tested the role of highlights in warning colouration of a chemically defended, alpine leaf beetle, Oreina cacaliae. We reduced the beetles’ glossiness, hence their highlights, by applying a clear matt finish varnish on thei…

0106 biological sciences0301 basic medicinewarning colourationScience010603 evolutionary biology01 natural sciencesArticle03 medical and health sciencesglossinessleaf beetlesOreina cacaliaeAvoidance learningGeneralization (learning)specular reflectionComputer visionSpecular reflectionMultidisciplinarybiologyEcologybusiness.industryQRbiology.organism_classificationReflectivityOther Physical Sciences030104 developmental biologyMedicineArtificial intelligenceBiochemistry and Cell BiologybusinessLeaf beetleOreina cacaliaeScientific Reports
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How do organisms adapt to climate change? : chromosomal inversions in 'Drosophila subobscura': The case of Serbian populations

2015

It is well known that chromosomal inversions in natural populations of the species Drosophila subobscura are adaptations to changes in the environment. It has been observed that inversions change in frequency over time and that they are so far following the pattern expected given the global warming of our planet. These results have been brought to light by our research on Serbian populations of D. subobscura. We found that inversion-related changes in chromosomal polymorphisms depended on the season of the year and in the long term (10-15 year periods) they followed what we would expect given global warming. Therefore, chromosomal inversions in this species are good indicators of climate ch…

0106 biological sciences0303 health sciencesMultidisciplinaryEcologyClimate changeBiology010603 evolutionary biology01 natural scienceslanguage.human_languageDrosophila subobscura03 medical and health sciencesHistory and Philosophy of Science13. Climate actionlanguagesense organsSerbianskin and connective tissue diseases030304 developmental biology
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2019

Honeybees use the waggle dance to share information about food-site locations with nestmates. However, the importance of this behavior in colony foraging success remains unclear. We tested whether spatial dance information affects colony foraging success in a human-modified temperate environment by comparing colonies with oriented and disoriented dances. Notably, colonies with disoriented dances had greater foraging success. Over time, bees exposed to disoriented dances showed reduced interest in dancing nestmates. This may explain why disoriented colonies had a higher foraging rate than oriented colonies, as bees did not waste time waiting for information. This change in information-use st…

0106 biological sciences0303 health sciencesMultidisciplinaryForage (honey bee)DanceTemperate environmentEcologyForagingWaggle dance010603 evolutionary biology01 natural sciences03 medical and health sciencesGeographySocial information030304 developmental biologyScience Advances
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2020

Thorny-headed worms (Acanthocephala) are endoparasites exploiting Mandibulata (Arthropoda) and Gnathostomata (Vertebrata). Despite their world-wide occurrence and economic relevance as a pest, genome and transcriptome assemblies have not been published before. However, such data might hold clues for a sustainable control of acanthocephalans in animal production. For this reason, we present the first draft of an acanthocephalan nuclear genome, besides the mitochondrial one, using the fish parasite Pomphorhynchus laevis (Palaeacanthocephala) as a model. Additionally, we have assembled and annotated the transcriptome of this species and the proteins encoded. A hybrid assembly of long and short…

0106 biological sciences0303 health sciencesMultidisciplinaryNuclear geneGenomicsBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesGenomeTranscriptome03 medical and health sciencesEvolutionary biologyProteomePomphorhynchus laevisAcanthocephalaGene030304 developmental biologyPLOS ONE
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2013

Parasitized individuals are often expected to be poor competitors because they are weakened by infections. Many trematode species, however, although extensively exploiting their mollusc hosts, also induce gigantism (increased host size) by diverting host resources towards growth instead of reproduction. In such systems, alternatively to reduced competitive ability due to negative effects of parasitism on host performance, larger size could allow more efficient resource acquisition and thus increase the relative competitive ability of host individuals. We addressed this hypothesis by testing the effect of a trematode parasite Diplostomum pseudospathaceum on the competitive ability of its sna…

0106 biological sciences0303 health sciencesMultidisciplinarybiologyEcologyHost (biology)media_common.quotation_subjectZoologyParasitismLymnaea stagnalisSnailbiology.organism_classification010603 evolutionary biology01 natural sciencesCompetition (biology)Intraspecific competitionLymnaea03 medical and health sciencesbiology.animalGastropoda030304 developmental biologymedia_commonPLOS ONE
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Debating Sexual Selection and Mating Strategies

2006

Published at full length with the title 'Reproductive behaviour: sexual selection remains the best explanation' in Science E-letters, 6 April 2006

0106 biological sciences0303 health sciencesMultidisciplinarymedia_common.quotation_subject010603 evolutionary biology01 natural sciences03 medical and health sciencesConceptual frameworkSexual behaviorCompetitive behaviorSexual selectionCooperative behaviorReproductionMatingPsychologySocial psychologyGame theory030304 developmental biologymedia_commonScience
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2019

Aposematic organisms couple conspicuous warning signals with a secondary defense to deter predators from attacking. Novel signals of aposematic prey are expected to be selected against due to positive frequency-dependent selection. How, then, can novel phenotypes persist after they arise, and why do so many aposematic species exhibit intrapopulation signal variability? Using a polytypic poison frog ( Dendrobates tinctorius ), we explored the forces of selection on variable aposematic signals using 2 phenotypically distinct (white, yellow) populations. Contrary to expectations, local phenotype was not always better protected compared to novel phenotypes in either population; in the white po…

0106 biological sciences0303 health scienceseducation.field_of_studyMultidisciplinaryDendrobatesFrequency-dependent selectionPopulationZoologyAposematismBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesPredationGene flowWhite (mutation)03 medical and health sciencesSignal variabilityeducation030304 developmental biologyProceedings of the National Academy of Sciences
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A Tale of Big Game and Small Bugs

1999

Animal populations undergo repetitive cycles of rising and falling numbers. In a Perspective, [Ranta and colleagues][1] discuss the value of time-series analyses for examining the changing dynamics of animal populations. A large time series gathered by the Hudson Bay Company based on the fur trade has provided invaluable data on the rise and fall of the Canadian lynx population from 1821 to the present. Analysis of this time series reveals that climate as well as factors influencing birth and death rates are important in regulating the lynx population ([ Stenseth et al .][2]). In a separate study, mathematical modeling combined with fieldwork revealed the importance of predators in determin…

0106 biological sciences0303 health scienceseducation.field_of_studyMultidisciplinarybiologyFur tradePopulationCanadian lynxbiology.organism_classification010603 evolutionary biology01 natural sciencesGenealogy03 medical and health sciencesGeographyBig gameeducation030304 developmental biologyScience
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