Search results for "experimental evolution"

showing 10 items of 87 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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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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Effect of population patchiness and migration rates on the adaptation and divergence of vesicular stomatitis virus quasispecies populations

1999

The effect of migration among different isolated virus quasispecies populations on their adaptation and diversity was analysed through experimental evolution. Anin vitrocell system was employed to simulate migration of vesicular stomatitis virus between isolated homogeneous host cell populations. The results clearly demonstrated a positive correlation between the migration rate and the magnitude of the mean fitness reached by the virus quasispecies populations. The results also showed, although less clearly, that fitness differences among quasispecies decreased with the magnitude of migration. These results are in close agreement with predictions of standard population genetics theory. Thes…

PopulationAdaptation BiologicalViral quasispeciesBiologyVesicular stomatitis Indiana virusVirusCell LineDivergenceViral Envelope ProteinsCricetinaeVirologyTumor Cells CulturedAnimalsHumanseducationGeneticseducation.field_of_studyExperimental evolutionMembrane GlycoproteinsModels GeneticGenetic Variationbiology.organism_classificationVirologyHomogeneousVesicular stomatitis virusDirected Molecular EvolutionAdaptationJournal of General Virology
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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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Evolution of oncolytic viruses.

2015

Owing to their replicative capacity, oncolytic viruses (OVs) can evolve under the action of natural selection. Reversion to virulence and recombination with wild-type strains may compromise OV safety, therefore requiring evolutionary risk assessment studies. On the other hand, evolution can be directed in the laboratory to create more potent and safer OVs. Previous work in the experimental evolution field provides a background for OV directed evolution, and has identified interesting exploitable features. While genetic engineering has greatly advanced the field of oncolytic virotherapy, this approach is sometimes curtailed by the complexity and diversity of virus-host interactions. Directed…

Replicative capacityGeneticsOncolytic VirotherapyExperimental evolutionNatural selectionExtramuralNeoplasms therapyComputational biologyBiologyDirected evolutionOncolytic virusEvolution MolecularOncolytic VirusesVirologyNeoplasmsAnimalsHumansCurrent opinion in virology
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Rapid evolutionary adaptation to elevated salt concentrations in pathogenic freshwater bacteria Serratia marcescens.

2014

Rapid evolutionary adaptions to new and previously detrimental environmental conditions can increase the risk of invasion by novel pathogens. We tested this hypothesis with a 133-day-long evolutionary experiment studying the evolution of the pathogenic Serratia marcescens bacterium at salinity niche boundary and in fluctuating conditions. We found that S. marcescens evolved at harsh (80 g/L) and extreme (100 g/L) salt conditions had clearly improved salt tolerance than those evolved in the other three treatments (ancestral conditions, nonsaline conditions, and fluctuating salt conditions). Evolutionary theories suggest that fastest evolutionary changes could be observed in intermediate sele…

SELECTIONVARIABLE ENVIRONMENTSPREVENT EXTINCTIONniche expansionPopulationNicheGeneralist and specialist speciespathogen invasionstolerance curve14. Life underwaterexperimental evolutioneducationTEMPERATUREEcology Evolution Behavior and SystematicsNature and Landscape ConservationOriginal ResearchExperimental evolutioneducation.field_of_studyEcologybiologyEcologyfluctuating environmentharsh environmentbiology.organism_classificationTEMPORALLY VARYING ENVIRONMENT6. Clean waterSalinityDROSOPHILAExperimental evolutionESCHERICHIA-COLISerratia marcescens1181 Ecology evolutionary biologyPOPULATIONSVIRULENCEta1181AdaptationGENERALISTSBacteriaEcology and evolution
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Evolved high aerobic capacity has context-specific effects on gut microbiota

2022

Publisher Copyright: Copyright © 2022 Hanhimäki, Watts, Koskela, Koteja, Mappes and Hämäläinen. Gut microbiota is expected to coevolve with the host's physiology and may play a role in adjusting the host's energy metabolism to suit the host's environment. To evaluate the effects of both evolved host metabolism and the environmental context in shaping the gut microbiota, we used a unique combination of (1) experimental evolution to create selection lines for a fast metabolism and (2) a laboratory-to-field translocation study. Mature bank voles Myodes glareolus from lines selected for high aerobic capacity (A lines) and from unselected control (C lines) were released into large (0.2 ha) outdo…

SELECTIONevoluutiobiologiasekvensointilongitudinalFITNESSmetsämyyräsuolistomikrobistoDIETHOST GENETICSBANK VOLESelinympäristömikrobitexperimental evolutionbank voleaineenvaihduntaEcology Evolution Behavior and Systematicsmetabolic rateEcologygut microbiotaRESILIENCE16S rRNA sequencingSIZEsuolistofield experimentselection linesMETABOLIC-RATE1181 Ecology evolutionary biologyBACTERIAaerobinen suorituskyky
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RNA viruses as complex adaptive systems

2004

RNA viruses have high mutation rates and so their populations exist as dynamic and complex mutant distributions. It has been consistently observed that when challenged with a new environment, viral populations adapt following hyperbolic-like kinetics: adaptation is initially very rapid, but then slows down as fitness reaches an asymptotic value. These adaptive dynamics have been explained in terms of populations moving towards the top of peaks on rugged fitness landscapes. Fitness fluctuations of varying magnitude are observed during adaptation. Often the presence of fluctuations in the evolution of physical systems indicates some form of self-organization, or where many components of the s…

Statistics and ProbabilityMutation rateTime FactorsFitness landscapePhysical systemSystems TheoryProbability density functionBiologyVesicular stomatitis Indiana virusGeneral Biochemistry Genetics and Molecular BiologyEvolution MolecularRNA VirusesWeibull distributionGeneticsExperimental evolutionModels StatisticalModels GeneticComputersSystems BiologyApplied MathematicsGeneral MedicineBiological EvolutionSelf-organized criticalityEvolutionary biologyModeling and SimulationMutationAdaptationBiosystems
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Adaptation to fluctuations in temperature by nine species of bacteria

2018

Rapid environmental fluctuations are ubiquitous in the wild, yet majority of experimental studies mostly consider effects of slow fluctuations on organism. To test the evolutionary consequences of fast fluctuations, we conducted nine independent experimental evolution experiments with bacteria. Experimental conditions were same for all species, and we allowed them to evolve either in fluctuating temperature alternating rapidly between 20°C and 40°C or at constant 30°C temperature. After experimental evolution, we tested the performance of the clones in both rapid fluctuation and in constant environments (20°C, 30°C and 40°C). Results from experiments on these nine species were combined meta…

TEMPERATURE FLUCTUATIONympäristöevoluutiobiologiavaikutukseteliöttemperature fluctuationSPECIALISTSTHERMAL PERFORMANCE CURVESbakteerittolerance curveexperimental evolutionsopeutuminenCLIMATE-CHANGEolosuhteetEXPERIMENTAL EVOLUTIONTOLERANCE CURVETEMPORALLY VARYING ENVIRONMENTREACTION NORMDROSOPHILAreaction normESCHERICHIA-COLI1181 Ecology evolutionary biologyPOPULATIONStoleranssitlämpötilaSENSITIVITYGENERALISTS
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Transcriptional Rewiring, Adaptation, and the Role of Gene Duplication in the Metabolism of Ethanol of Saccharomyces cerevisiae

2020

Ethanol is the main by-product of yeast sugar fermentation that affects microbial growth parameters, being considered a dual molecule, a nutrient and a stressor. Previous works demonstrated that the budding yeast arose after an ancient hybridization process resulted in a tier of duplicated genes within its genome, many of them with implications in this ethanol “produce-accumulate-consume” strategy. The evolutionary link between ethanol production, consumption, and tolerance versus ploidy and stability of the hybrids is an ongoing debatable issue. The implication of ancestral duplicates in this metabolic rewiring, and how these duplicates differ transcriptionally, remains unsolved. Here, we …

ethanol stressPhysiologySaccharomyces cerevisiaelcsh:QR1-502MicrobiologiaEcological and Evolutionary ScienceTranscriptional divergenceBiochemistryGenomeMicrobiologylcsh:MicrobiologyTranscriptome03 medical and health sciences0302 clinical medicinetranscriptional divergenceGene duplicationadaptive laboratory experimental evolutionGeneticsGenomesClonal populationsEthanol stressMolecular BiologyAdaptive laboratory experimental evolutionEcology Evolution Behavior and Systematics030304 developmental biologyGenetics0303 health sciencesExperimental evolutionbiologybiology.organism_classificationRNAseqYeastQR1-502Computer Science ApplicationsEvolvabilityclonal populationsModeling and SimulationrnaseqAdaptation030217 neurology & neurosurgeryResearch ArticlemSystems
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