Search results for "Genetic drift"

showing 10 items of 73 documents

Transmission bottlenecks and the evolution of fitness in rapidly evolving RNA viruses

2003

We explored the evolutionary importance of two factors in the adaptation of RNA viruses to their cellular hosts, size of viral inoculum used to initiate a new infection, and mode of transmission (horizontal versus vertical). Transmission bottlenecks should occur in natural populations of viruses and their profound effects on viral adaptation have been previously documented. However, the role of transmission mode has not received the same attention. Here we used a factorial experimental design to test the combined effects of inoculum (bottleneck) size and mode of transmission in evolution of vesicular stomatitis virus (VSV) in tissue culture, and compared our results to the predictions of a …

Microbiology (medical)virusesKidneyMicrobiologyVesicular stomatitis Indiana virusBottlenecklaw.inventionEvolution MolecularGenetic driftlawCricetinaeRhabdoviridae InfectionsDisease Transmission InfectiousGeneticsAnimalsMolecular BiologyCells CulturedEcology Evolution Behavior and SystematicsGeneticsExperimental evolutionbiologyGenetic Variationbiology.organism_classificationInfectious Disease Transmission VerticalInfectious DiseasesTransmission (mechanics)Vesicular stomatitis virusMutation (genetic algorithm)AdaptationHorizontal transmissionInfection, Genetics and Evolution
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Fitness and life-history traits of the two major mitochondrial DNA haplotypes of Drosophila subobscura

2004

Mitochondrial DNA restriction site analyses on natural populations of Drosophila subobscura have proved the existence of two common, coexisting haplotypes (I and II), as well as a set of less frequent ones derived from them. To explain this distribution, experiments to date point practically to all possible genetic mechanisms being involved in the changes of gene frequencies (cytonuclear coadaptation, direct natural selection on mtDNA and genetic drift). In an attempt to find differences that help to understand the dynamics of these haplotypes and to detect the effect of selection, we measured certain fitness components and life-history traits (egg-larva and larva-adult viabilities and deve…

Mitochondrial DNAmedia_common.quotation_subjectLongevityRestriction MappingPopulationBiologyDNA MitochondrialPolymerase Chain ReactionQuantitative Trait HeritableGenetic driftGeneticsAnimalsSelection GeneticeducationGenetics (clinical)Selection (genetic algorithm)media_commonTissue SurvivalGeneticseducation.field_of_studyNatural selectionHaplotypeLongevityDrosophila subobscuraHaplotypesEvolutionary biologyLarvaDrosophilaWolbachiaHeredity
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Ancient DNA Reveals Key Stages in the Formation of Central European Mitochondrial Genetic Diversity

2013

The Origins of Europeans To investigate the genetic origins of modern Europeans, Brandt et al. (p. 257 ) examined ancient mitochondrial DNA (mtDNA) and were able to identify genetic differences in 364 Central Europeans spanning the early Neolithic to the Early Bronze Age. Observed changes in mitochondrial haplotypes corresponded with hypothesized human migration across Eurasia and revealed the complexity of the demographic changes and evidence of a Late Neolithic origin for the European mtDNA gene pool. This transect through time reveals four key population events associated with well-known archaeological cultures, which involved genetic influx into Central Europe from various directions at…

Mitochondrial DNAmedia_common.quotation_subjectMolecular Sequence DataPopulationPopulationBiologyDNA MitochondrialArticleGenetic driftBronze AgeGenetic variationHumanseducationHistory Ancientmedia_commonTransients and MigrantsGeneticseducation.field_of_studyGenetic diversityMultidisciplinaryBase SequenceGenetic DriftGenetic VariationAgricultureEuropeAncient DNAEvolutionary biologyDiversity (politics)Science
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Experimental Evolution in Viruses

2011

Experiments in which evolution takes place in real time can help us establish cause–effect relationships that are difficult to infer from the analysis of natural populations. The simplicity, rapid evolution and biomedical relevance of viruses make them a particularly interesting model system for experimental evolution. Bacterial, animal and plant viruses can be passaged under a variety of conditions, either in simple cell culture systems or in vivo to test population biology hypotheses, study the genetic basis of evolution, or predict evolutionary change in nature. Experimental evolution is a conceptually simple and flexible tool which allows us to address issues ranging from the molecular …

Mutation rateExperimental evolutionGenetic driftved/biologyViral evolutionved/biology.organism_classification_rank.speciesMutation (genetic algorithm)ZoologyPopulation geneticsComputational biologyBiologyAdaptationModel organismeLS
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Emergence and Phylodynamics of Citrus tristeza virus in Sicily, Italy

2013

Citrus tristeza virus (CTV) outbreaks were detected in Sicily island, Italy for the first time in 2002. To gain insight into the evolutionary forces driving the emergence and phylogeography of these CTV populations, we determined and analyzed the nucleotide sequences of the p20 gene from 108 CTV isolates collected from 2002 to 2009. Bayesian phylogenetic analysis revealed that mild and severe CTV isolates belonging to five different clades (lineages) were introduced in Sicily in 2002. Phylogeographic analysis showed that four lineages co-circulated in the main citrus growing area located in Eastern Sicily. However, only one lineage (composed of mild isolates) spread to distant areas of Sici…

Nonsynonymous substitutionCitrusGenetic-variationLineage (evolution)Population Dynamicslcsh:MedicinePopulation geneticsPlant Sciencelcsh:SciencePhylogenetic analysesPhylogenyGeneticsMultidisciplinarybiologyPhylogenetic treeGeographyCitrus tristeza virusAgriculturePhylogeneticsItalyRNA ViralEvolutionary dynamicsCross-protectionSequence AnalysisResearch ArticleClosterovirusDNA ComplementaryMolecular Sequence DataPlant PathogensCropsMicrobiologyViral EvolutionFruitsGenetic driftSpecies SpecificityVirologyMosaic-virusGenetic variationCTV Phylodynamics SicilyEvolutionary SystematicsPopulation-structureHost passageBiologyPlant DiseasesEvolutionary BiologyMaximum-likelihoodlcsh:RSettore AGR/12 - Patologia VegetaleComputational BiologyGenetic VariationBayes TheoremSequence Analysis DNAPlant Pathologybiology.organism_classificationAgronomyViral phylodynamicsDNA polymorphismEvolutionary biologyMolecular evolutionlcsh:Q
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Evolutionary dynamics of ‘the’ bdelloid and monogonont rotifer life-history patterns

2006

Substantial differences in both life-table characteristics and reproductive patterns distinguish bdelloid from monogonont rotifers. Bdelloids reproduce only asexually, whereas most monogononts are cyclical parthenogens. We explore some of the adaptive consequences of these life-history differences using a computer model to simulate the evolutionary acquisition of new beneficial mutations. A one-locus mutation-selection regime based on the life-history characteristics of bdelloids indicates that asexuals can maintain higher levels of both allelic and genotypic diversity over a longer time period than obligate sexuals. These results are produced by differences in the magnitude of random genet…

ObligatebiologyGenetic driftEvolutionary biologymedia_common.quotation_subjectRotiferParthenogenesisAlleleReproductionbiology.organism_classificationEvolutionary dynamicsSexual reproductionmedia_common
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Disentangling composite colour patterns in a poison frog species

2008

A phylogenetic approach was performed to infer whether variation in conspicuous colour-patterns of a poison frog (Dendrobatidae: Dendrobates tinctorius) has evolved neutrally or under selection. Colour and pattern were split into components that were separately analysed and subsequently re-grouped via principal component analysis. This revealed four different ‘displayed’ factors on the dorsal and lateral views versus one ‘concealed’ factor on the ventral view. Based on the assumption that current patterns of trait variation contain information about the evolutionary history of the phenotype, we correlated these trait components to a neutrally evolving gene fragment (cytochrome b). The conce…

Phylogenetic treeGenetic driftPhylogeneticsDendrobatesCytochrome bMolecular phylogeneticsZoologyDendrobatoideaAposematismBiologybiology.organism_classificationEcology Evolution Behavior and SystematicsBiological Journal of the Linnean Society
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The multiple directions of evolutionary change.

2008

The theory of Punctuated Equilibria challenges the neo-Darwinian tenet that evolution is a uniform process. Recently, an article by Hunt1 has found that directional change during the evolution of a lineage is relatively small (occurring only in 5% of 250 analyzed traits). Of those traits that were shown to follow a trend, size was more likely to show gradual changes, whereas shape changes were more random. Here, we provide a short view of the nature of evolutionary trends, showing that directional change within lineages and among clades provides valuable evolutionary information about the processes involved in their generation. BioEssays 30:521–525, 2008. © 2008 Wiley Periodicals, Inc.

Population DensityModels GeneticPunctuated equilibriummedia_common.quotation_subjectLineage (evolution)Genetic DriftEvolutionary changeBiologyBiological EvolutionGeneral Biochemistry Genetics and Molecular BiologyEvolutionary biologyMorphogenesisAnimalsBody SizeEvolutionary informationSelection GeneticClademedia_commonBioEssays : news and reviews in molecular, cellular and developmental biology
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Evolution of fitness in experimental populations of vesicular stomatitis virus

1996

Abstract The evolution of fitness in experimental clonal populations of vesicular stomatitis virus (VSV) has been compared under different genetic (fitness of initial clone) and demographic (population dynamics) regimes. In spite of the high genetic heterogeneity among replicates within experiments, there is a clear effect of population dynamics on the evolution of fitness. Those populations that went through strong periodic bottlenecks showed a decreased fitness in competition experiments with wild type. Conversely, mutant populations that were transferred under the dynamics of continuous population expansions increased their fitness when compared with the same wild type. The magnitude of …

Population fragmentationmedia_common.quotation_subjectPopulationClone (cell biology)BiologyInvestigationsGenetic analysisCompetition (biology)Vesicular stomatitis Indiana virusCell LineGenetic driftCricetinaeGenetic variationGeneticsAnimalsHumanseducationMathematical Computingmedia_commonGeneticseducation.field_of_studyModels GeneticGenetic heterogeneityAdaptation PhysiologicalBiological EvolutionHeLa Cells
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Fitness Trade-Offs Determine the Role of the Molecular Chaperonin GroEL in Buffering Mutations

2015

Molecular chaperones fold many proteins and their mutated versions in a cell and can sometimes buffer the phenotypic effect of mutations that affect protein folding. Unanswered questions about this buffering include the nature of its mechanism, its influence on the genetic variation of a population, the fitness trade-offs constraining this mechanism, and its role in expediting evolution. Answering these questions is fundamental to understand the contribution of buffering to increase genetic variation and ecological diversification. Here, we performed experimental evolution, genome resequencing, and computational analyses to determine the trade-offs and evolutionary trajectories of Escherich…

PopulationGenetic FitnessBiologyGroELCell LineChaperonin10127 Institute of Evolutionary Biology and Environmental StudiesGenetic drift1311 Geneticsmutational bufferingOperonGenetic variationGenetics1312 Molecular BiologyEscherichia coliexperimental evolutioneducationMolecular BiologyDiscoveriesEcology Evolution Behavior and Systematics2. Zero hungerGeneticseducation.field_of_studyExperimental evolutionGenetic DriftChaperonin 60Gene Expression Regulation BacterialGroEL1105 Ecology Evolution Behavior and SystematicsGenes BacterialMutation570 Life sciences; biology590 Animals (Zoology)bacteriaProtein foldingGenetic FitnessDirected Molecular EvolutionSubcellular Fractions
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