Search results for "virus evolution"

showing 10 items of 22 documents

Local adaptation of plant viruses: lessons from experimental evolution.

2016

[EN] For multihost pathogens, adaptation to multiple hosts has important implications for both applied and basic research. At the applied level, it is one of the main factors determining the probability and severity of emerging disease outbreaks. At the basic level, it is thought to be a key mechanism for the maintenance of genetic diversity both in host and pathogen species. In recent years, a number of evolution experiments have assessed the fate of plant virus populations replicating within and adapting to one single or to multiple hosts species. A first group of these experiments tackled the existence of trade-offs in fitness and virulence for viruses evolving either within a single hos…

0106 biological sciences0301 basic medicineGeneralistsGenotypeLocal adaptationAcclimatizationGenetic FitnessBiology010603 evolutionary biology01 natural sciencesHost SpecificityPlant VirusesEvolution Molecular03 medical and health sciencesPathosystemGeneticsGenetic PleiotropyEcology Evolution Behavior and SystematicsLocal adaptationGenetic diversityExperimental evolutionVirulenceGenetic VariationGenetic PleiotropyVirus evolutionSpecialists030104 developmental biologyExperimental evolutionEvolutionary biologyViral evolutionHost rangeAntagonistic pleiotropyGenetic FitnessAdaptationMolecular ecology
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Adaptation of turnip mosaic potyvirus to a specific niche reduces its genetic and environmental robustness

2020

Robustness is the preservation of the phenotype in the face of genetic and environmental perturbations. It has been argued that robustness must be an essential fitness component of RNA viruses owed to their small and compacted genomes, high mutation rates and living in ever-changing environmental conditions. Given that genetic robustness might hamper possible beneficial mutations, it has been suggested that genetic robustness can only evolve as a side-effect of the evolution of robustness mechanisms specific to cope with environmental perturbations, a theory known as plastogenetic congruence. However, empirical evidences from different viral systems are contradictory. To test how adaptation…

0106 biological sciencesMutation rateNicherobustness010603 evolutionary biology01 natural sciencesMicrobiologyGenome03 medical and health sciencesplant virusVirologythermal fluctuationsAcademicSubjects/MED00860experimental evolutionplastogenetic congruence030304 developmental biologyvirus evolution0303 health sciencesExperimental evolutionbiologyAcademicSubjects/SCI01130AcademicSubjects/SCI02285PotyvirusRobustness (evolution)biology.organism_classificationPhenotypeEvolutionary biologyViral evolutionmutagenesisResearch Article
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Role of host genetic diversity for susceptibility-to-infection in the evolution of virulence of a plant virus

2019

Predicting viral emergence is difficult due to the stochastic nature of the underlying processes and the many factors that govern pathogen evolution. Environmental factors affecting the host, the pathogen and the interaction between both are key in emergence. In particular, infectious disease dynamics are affected by spatiotemporal heterogeneity in their environments. A broad knowledge of these factors will allow better estimating where and when viral emergence is more likely to occur. Here, we investigate how the population structure for susceptibility-to-infection genes of the plant Arabidopsis thaliana shapes the evolution of Turnip mosaic virus (TuMV). For doing so we have evolved TuMV …

0106 biological sciencesinfection matrixPopulationPotyvirusVirulenceMetapopulation010603 evolutionary biology01 natural sciencesMicrobiology03 medical and health sciencesVirologyPlant virusTurnip mosaic virusResistance to infectionexperimental evolutioneducationPathogenhost population structure030304 developmental biologyvirus evolution0303 health sciencesExperimental evolutioneducation.field_of_studyGenetic diversitybiologyEcotypeGenetic heterogeneityEvolution of virulenceHost population structureresistance to infectionbiology.organism_classificationInfection matrixVirus evolutionExperimental evolutionInfectious disease (medical specialty)Evolutionary biologyViral evolutionResearch Articleevolution of virulence
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Effect of Host Species on Topography of the Fitness Landscape for a Plant RNA Virus

2016

[EN] Adaptive fitness landscapes are a fundamental concept in evolutionary biology that relate the genotype of individuals with their fitness. At the end, the evolutionary fate of evolving populations depends on the topography of the landscape, that is, the number of accessible mutational pathways and of possible fitness peaks (i.e, adaptive solutions). For long time, fitness landscapes were only theoretical constructions due to a lack of precise information on the mapping between genotypes and phenotypes. In recent years, however, efforts have been devoted to characterize the properties of empirical fitness landscapes for individual proteins or for microbes adapting to artificial environme…

0301 basic medicine2. Zero hungerbiologyFitness landscapeEcologyHost (biology)ImmunologyRNA virusbiology.organism_classificationMicrobiology03 medical and health sciences030104 developmental biologyGenetic Diversity and EvolutionVirologyInsect ScienceRegional scienceEuropean commissionChristian ministryadaptive fitness landscapes ; experimental evolution ; virus evolutionJournal of Virology
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Half a Century of Research on Membrane-Containing Bacteriophages: Bringing New Concepts to Modern Virology

2019

Half a century of research on membrane-containing phages has had a major impact on virology, providing new insights into virus diversity, evolution and ecological importance. The recent revolutionary technical advances in imaging, sequencing and lipid analysis have significantly boosted the depth and volume of knowledge on these viruses. This has resulted in new concepts of virus assembly, understanding of virion stability and dynamics, and the description of novel processes for viral genome packaging and membrane-driven genome delivery to the host. The detailed analyses of such processes have given novel insights into DNA transport across the protein-rich lipid bilayer and the transformati…

0301 basic medicineArchaeal VirusesModels Molecularcorticoviridaeviruksetviruses030106 microbiologyPopulationlcsh:QR1-502lipid-containing bacteriophagevirus–host interactionReviewGenomeViruslcsh:MicrobiologybakteriofagitEvolution Molecular03 medical and health sciencesViral genome packagingplasmaviridaetectiviridaeVirologyBacteriophage PRD1Bacteriophageseducationvirus evolutioneducation.field_of_studyMembranesbiologyvirus-host interactionVirus Assemblyta1183Virionta1182Archaeal Virusescystoviridaebiology.organism_classificationVirology030104 developmental biologyInfectious DiseasesPlasmaviridaeCapsidViral evolutionDNA ViralCapsid ProteinsViruses
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Engineered Functional Redundancy Relaxes Selective Constraints upon Endogenous Genes in Viral RNA Genomes

2018

Functional redundancy, understood as the functional overlap of different genes, is a double-edge sword. At the one side, it is thought to serve as a robustness mechanism that buffers the deleterious effect of mutations hitting one of the redundant copies, thus resulting in pseudogenization. At the other side, it is considered as a source of genetic and functional innovation. In any case, genetically redundant genes are expected to show an acceleration in the rate of molecular evolution. Here, we tackle the role of functional redundancy in viral RNA genomes. To this end, we have evaluated the rates of compensatory evolution for deleterious mutations affecting an essential function, the suppr…

0301 basic medicinePotyvirusEndogenyComputational biologyGenome ViralGenomeExperimental virus evolutionViral suppressors of RNA silencingEvolution Molecular03 medical and health sciencesGeneticsRNA VirusesViral rnaGeneEcology Evolution Behavior and SystematicsCompensatory evolutionPlant DiseasesbiologyTobacco etch virusFunctional redundancyMultifunctional proteinsPlantsbiology.organism_classificationGenetic redundancyTobacco etch virus030104 developmental biologyMutationGenetic redundancyRNA ViralRNA InterferencePseudogenesResearch Article
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Viral fitness correlates with the magnitude and direction of the perturbation induced in the host’s transcriptome: the tobacco etch Potyvirus—tobacco…

2018

Determining the fitness of viral genotypes has become a standard practice in virology as it is essential to evaluate their evolutionary potential. Darwinian fitness, defined as the advantage of a given genotype with respect to a reference one, is a complex property that captures, in a single figure, differences in performance at every stage of viral infection. To what extent does viral fitness result from specific molecular interactions with host factors and regulatory networks during infection? Can we identify host genes in functional classes whose expression depends on viral fitness? Here, we compared the transcriptomes of tobacco plants infected with seven genotypes of tobacco etch potyv…

0301 basic medicinePotyvirusViral fitnessGene ExpressionBiologyReal-Time Polymerase Chain ReactionHost-virus interactionModels BiologicalTranscriptome03 medical and health sciencesDarwinian FitnessTobaccoGene expressionGeneticsTranscriptomicsGeneMolecular BiologyDiscoveriesEcology Evolution Behavior and SystematicsPlant DiseasesNicotiana tabacum PotyvirusGeneticsNicotiana tabacumPotyvirusresponse to infection Systems biologyPotyvirusRNAMicroarray Analysisbiology.organism_classificationResponse to infectionVirus evolutionRNA silencing030104 developmental biologyViral evolutionHost-Pathogen InteractionsTEVGenetic FitnessTranscriptomeSystems biologyHost–virus interaction
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Ortervirales: New Virus Order Unifying Five Families of Reverse-Transcribing Viruses

2018

International audience; Reverse-transcribing viruses, which synthesize a copy of genomic DNA from an RNA template, are widespread in animals, plants, algae, and fungi (1, 2). This broad distribution suggests the ancient origin(s) of these viruses, possibly [...]

0301 basic medicineS1retrovirusesviruses[SDV]Life Sciences [q-bio]ImmunologyretroviridaeMESH: Reverse TranscriptionL73 - Maladies des animauxVirus Replication[SDV.BID.SPT]Life Sciences [q-bio]/Biodiversity/Systematics Phylogenetics and taxonomyMicrobiologyVirusbelpaoviridaeMESH: Viruses03 medical and health sciencesVirologyinternational committee on taxonomy of viruses (ICTV)Metaviridaevirus classificationLetter to the EditorVirus classificationGeneticsTy3/Gypsy and Ty1/Copia LTR retrotransposonscaulimoviridaevirus evolutionbiologyfungiMESH: Virus ReplicationRNAPseudoviridaeReverse Transcriptionbiology.organism_classificationMESH: Caulimoviridaegenomic DNA030104 developmental biologyMESH: RetroviridaeMESH: HepadnaviridaeInsect ScienceViral evolutionhepadnaviridaeBelpaoviridae; Caulimoviridae; Hepadnaviridae; International Committee on Taxonomy of Viruses (ICTV); Metaviridae; Pseudoviridae; Retroviridae; Ty3/Gypsy and Ty1/Copia LTR retrotransposons; retroviruses; virus classification; virus evolutionViruses[SDV.MP.VIR]Life Sciences [q-bio]/Microbiology and Parasitology/VirologymetaviridaeCaulimoviridaepseudoviridae
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A putative antiviral role of plant cytidine deaminases

2014

[Background]: A mechanism of innate antiviral immunity operating against viruses infecting mammalian cells has been described during the last decade. Host cytidine deaminases (e.g., APOBEC3 proteins) edit viral genomes, giving rise to hypermutated nonfunctional viruses; consequently, viral fitness is reduced through lethal mutagenesis. By contrast, sub-lethal hypermutagenesis may contribute to virus evolvability by increasing population diversity. To prevent genome editing, some viruses have evolved proteins that mediate APOBEC3 degradation. The model plant Arabidopsis thaliana genome encodes nine cytidine deaminases ( AtCDAs), raising the question of whether deamination is an antiviral mec…

0301 basic medicinevirusesPopulation030106 microbiologyDeaminationAntiviral innate immunityGenomeGeneral Biochemistry Genetics and Molecular BiologyVirusError catastrophePararetrovirusGene product03 medical and health scienceschemistry.chemical_compoundPlant-virus interactionGenome editingPlant-Environment InteractionsVirologyHypermutagenesisArabidopsis thalianaGeneral Pharmacology Toxicology and PharmaceuticseducationGeneGeneticseducation.field_of_studyCauliflower mosaic virusGeneral Immunology and MicrobiologybiologyHost (biology)fungifood and beveragesCytidineGeneral MedicineArticlesbiology.organism_classificationVirologyVirus evolution030104 developmental biologychemistryMutational spectrumPlant Genetics & Gene ExpressionViral evolutionCauliflower mosaic virusResearch Article
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Theoretical conditions for the coexistence of viral strains with differences in phenotypic traits : A bifurcation analysis

2019

We investigate the dynamics of a wild-type viral strain which generates mutant strains differing in phenotypic properties for infectivity, virulence and mutation rates. We study, by means of a mathematical model and bifurcation analysis, conditions under which the wild-type and mutant viruses, which compete for the same host cells, can coexist. The coexistence conditions are formulated in terms of the basic reproductive numbers of the strains, a maximum value of the mutation rate and the virulence of the pathogens. The analysis reveals that parameter space can be divided into five regions, each with distinct dynamics, that are organized around degenerate Bogdanov–Takens and zero-Hopf bifurc…

1001infection dynamicsMutation rate6EpidemiologyMutantVirulenceBiology01 natural sciences87010305 fluids & plasmas03 medical and health sciencesBifurcations1190103 physical sciences1008mathematical biologylcsh:Science51 - Matemàtiques030304 developmental biologyGeneticsInfectivityvirus evolution0303 health sciencesMathematical and theoretical biologyMultidisciplinaryStrain (chemistry)Infection dynamicsPhenotypic traitVirus evolutionViral evolutionMathematical biologyepidemiologylcsh:QMatemàtiquesbifurcationsMathematicsResearch Article
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