Search results for "Quasispecies"

showing 10 items of 27 documents

Contribution of insertions and deletions to the variability of hepatitis C virus populations

2007

Little is known about the potential effects of insertions and deletions (indels) on the evolutionary dynamics of hepatitis C virus (HCV). In fact, the consequences of indels on antiviral treatment response are a field of investigation completely unexplored. Here, an extensive sequencing project was undertaken by cloning and sequencing serum samples from 25 patients infected with HCV subtype 1a and 48 patients with subtype 1b. For 23 patients, samples obtained after treatment with alpha interferon plus ribavirin were also available. Two genome fragments containing the hypervariable regions in the envelope 2 glycoprotein and the PKR-BD domain in NS5A were sequenced, yielding almost 16 000 seq…

Genes ViralHepatitis C virusMolecular Sequence DataAlpha interferonHepacivirusViral quasispeciesViral Nonstructural ProteinsBiologymedicine.disease_causeAntiviral AgentsGenomeVirusSpecies SpecificityViral Envelope ProteinsVirologyRibavirinmedicineHumansAmino Acid SequenceNS5AIndelGeneticsInterferon-alphavirus diseasesHepatitis CVirologyHypervariable regionMutagenesis InsertionalSpainDrug Therapy CombinationSequence AlignmentGene DeletionJournal of General Virology
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Fixation of mutations at the VP1 gene of foot-and-mouth disease virus. Can quasispecies define a transient molecular clock?

1991

The number of nucleotide (nt) substitutions found in the VP1 gene (encoding viral capsid protein) between any two of 16 closely related isolates of foot-and-mouth disease virus (FMDV) has been quantified as a function of the time interval between isolations [Villaverde et al.,J. Mol. Biol. 204(1988)771-776]. One of them (isolate C-S12) includes some replacements found in isolates that preceded it and other replacements found in later isolates. The study has revealed alternating periods of rapid evolution and of relative genetic stability of VP1. During a defined period of acute disease, the rate of fixation of replacements at the VP1 coding segment was 6 × 10-3 substitutions per nt per year…

GeneticsAphthovirusbiologyBase SequencevirusesMolecular Sequence DataGeneral MedicineViral quasispeciesbiology.organism_classificationVirologyBiological EvolutionVirusFixation (population genetics)KineticsAphthovirusCapsidMolecular evolutionViral evolutionMutationGeneticsRate of evolutionCapsid ProteinsAmino Acid SequenceFoot-and-mouth disease virusSequence AlignmentGene
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Is group selection a factor modulating the virulence of RNA viruses?

1997

RNA viruses consist of populations of extremely high genetic heterogeneity called quasispecies. Based on theoretical considerations, it has been suggested that the unit of selection in such complex genetic populations is not the single viral particle but a set of genetically related particles which form the quasispecies. In the present study we carried out a set of experiments with the vesicular stomatitis virus (VSV) dealing with the evolution of life-history characters under selection acting at two factors either in the same or in opposite directions. The two factors at which selective pressure is applied are the individual and the group. We show evidence that group selection modulates th…

GeneticsModels GeneticVirulenceGenetic heterogeneityRNAVirulenceUnit of selectionGeneral MedicineViral quasispeciesBiologybiology.organism_classificationVesicular stomatitis Indiana virusGroup selectionGenetics PopulationVesicular stomatitis virusMultivariate AnalysisGeneticsRNA VirusesSelection GeneticSelection (genetic algorithm)Genetical research
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2005

In this report we re-examine some recent experiments with digital organisms to test some predictions of quasispecies theory. These experiments revealed that under high mutation rates populations of less fit organisms previously adapted to such high mutation rates were able to outcompete organisms with higher average fitness but adapted to low mutation rates. We have verified that these results do hold in the original conditions and, by extending the set of initial parameters, we have also detected that the critical mutation rate was independent of population size, a result that we have found to be dependent on a different, contingent factor, the initial fitness vector. Furthermore, in all b…

GeneticsMutation rateEvolutionary biologyPopulation sizeError thresholdGenetic variationMutation (genetic algorithm)Quasispecies theoryViral quasispeciesBiological evolutionBiologyEcology Evolution Behavior and SystematicsBMC Evolutionary Biology
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Gene encoding capsid protein VP1 of foot-and-mouth disease virus A quasispecies model of molecular evolution

1988

A phylogenetic tree relating the VP1 gene of 15 isolates of foot-and-mouth disease virus (FMDV) of serotypes A, C, and O has been constructed. The most parsimonious tree shows that FMDV subtypes and isolates within subtypes constitute sets of related, nonidentical genomes, in agreement with a quasispecies mode of evolution of this virus. The average number of nucleotide replacements per site for all possible pairs of VP1 coding segments is higher among representatives of serotype A than serotype C or O. In comparing amino acid sequences, the values of dispersion index (variance/mean value) are greater than 1, with the highest values scored when all sequences are considered. This indicates a…

Geneticseducation.field_of_studyMultidisciplinaryPhylogenetic treebiologyNucleotidesvirusesPopulationQuasispecies modelViral quasispeciesbiology.organism_classificationViral ProteinsAphthovirusCapsidPhylogeneticsMolecular evolutionMutationAmino AcidsFoot-and-mouth disease viruseducationGenePhylogenyResearch Article
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Following the very initial growth of biological RNA viral clones

2005

Due to their extremely high genetic diversity, which is a direct consequence of high mutation rates, RNA viruses are often described as molecular quasispecies. According to this theory, RNA virus populations cannot be understood in terms of individual viral clones, as they are clouds of interconnected mutants, but this prediction has not yet been demonstrated experimentally. The goal of this study was to determine the fitness of individual clones sampled from a given RNA virus population, a necessary previous step to test the above prediction. To do so, limiting dilutions of a vesicular stomatitis virus population were employed to isolate single viral clones and their initial growth dynamic…

Geneticseducation.field_of_studyMutation rateGenetic diversitybiologyPopulationMutantRNARNA virusViral quasispeciesbiology.organism_classificationBiological EvolutionModels BiologicalVirologyVesicular stomatitis Indiana virusCell LineSpecies SpecificityVesicular stomatitis virusVirologyMutationAnimalsRNA ViralSelection GeneticeducationJournal of General Virology
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Repeated transfer of small RNA virus populations leading to balanced fitness with infrequent stochastic drift

1996

The population dynamics of RNA viruses have an important influence on fitness variation and, in consequence, on the adaptative potential and virulence of this ubiquitous group of pathogens. Earlier work with vesicular stomatitis virus showed that large population transfers were reproducibly associated with fitness increases, whereas repeated transfers from plaque to plaque (genetic bottlenecks) lead to losses in fitness. We demonstrate here that repeated five-plaque to five-plaque passage series yield long-term fitness stability, except for occasional stochastic fitness jumps. Repeated five-plaque passages regularly alternating with two consecutive large population transmissions did not cau…

Geneticseducation.field_of_studyVirulencebiologyPopulation DynamicsPopulationVirulenceViral Plaque AssayViral quasispeciesVesicular stomatitis Indiana virusbiology.organism_classificationVesicular stomatitis Indiana virusVirusCell LinePopulation bottleneckVesicular stomatitis virusViral evolutionGeneticsAnimalseducationMolecular BiologyMolecular and General Genetics MGG
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Identification and validation of quasispecies models for biological systems

2009

An identification procedure for biological systems cast as quasi-species models is proposed. Their identification is a challenging problem because of the bilinear dependence on the parameters and their physical constraints. The proposed solution is within the framework of set-membership identification. %The bilinear dependence on parameters of the model and their physical constraints make the present issue challenging. We determine an estimate of the model parameters together with their interval of variability (Uncertainty Intervals), taking into account all the physical constraints. Invalidation/validation is performed on the basis of the predictive capability of the estimated models. The …

IdentificationGeneral Computer ScienceBasis (linear algebra)Systems Biology; Identification; Validation; Set MembershipComputer scienceSystems BiologyMechanical EngineeringSystems biologySystem identificationBilinear interpolationViral quasispeciesInterval (mathematics)Set MembershipSystems Biology Identification Validation Set MembershipSet (abstract data type)Identification (information)Settore ING-INF/04 - AutomaticaControl and Systems EngineeringValidationElectrical and Electronic EngineeringAlgorithm
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NS5A gene analysis by next generation sequencing in HCV nosocomial transmission clusters of HCV genotype 1b infected patients

2019

Background: The aim of the study was to investigate the intra-host variability through next-generation-sequencing (NGS) of the NS5A-gene in nosocomial transmission-clusters observed in two Italian hospitals among hepatitis C virus (HCV)-genotype-1b infected patients. Methods: HCV-sequencing was performed by Sanger-sequencing (NS3 + NS5A + NS5B) and by NGS (NS5A, MiSeq-Illumina) in 15 HCV-1b infected patients [five acute with onco-hematologic-disease and 10 (4/6 acute/chronic) with &beta

Male0301 basic medicinevirusesDrug ResistanceHepacivirusViral Nonstructural Proteinsmedicine.disease_causeSettore MED/42 - Igiene Generale E ApplicataGastroenterologySettore MED/07chemistry.chemical_compound0302 clinical medicineGenotype 1bMedicineVirallcsh:QH301-705.5PhylogenyCross Infectionnosocomial transmissionGastroenterologyHigh-Throughput Nucleotide Sequencingvirus diseasesHCV; NGS; acute infection; chronic infection; nosocomial transmission; sequencing; Acute Disease; Adult; Amino Acid Substitution; Antiviral Agents; Blood Transfusion; Chronic Disease; Cross Infection; Drug Resistance Viral; Female; Genotype; Hepacivirus; Hepatitis C; High-Throughput Nucleotide Sequencing; Host-Pathogen Interactions; Humans; Interferons; Male; Middle Aged; Phylogeny; Polymorphism Single Nucleotide; Viral Nonstructural Proteins; beta-ThalassemiaSingle NucleotideGeneral MedicinesequencingMiddle AgedHepatitis CNGSAcute DiseaseHost-Pathogen InteractionsHCVFemale030211 gastroenterology & hepatologyAdultmedicine.medical_specialtyGenotypeHepatitis C virusViral quasispeciesPolymorphism Single NucleotideAntiviral AgentsArticleDNA sequencing03 medical and health sciencesInternal medicineDrug Resistance ViralHumansBlood TransfusionPolymorphismNS5ANS5BGeneHepatologybusiness.industryNosocomial transmissionbeta-Thalassemiabiochemical phenomena metabolism and nutritionchronic infectionVirologydigestive system diseasesChronic infection030104 developmental biologyAmino Acid Substitutionchemistrylcsh:Biology (General)Chronic DiseaseHCV; NGS; acute infection; chronic infection; nosocomial transmission; sequencingInterferonsbusinessacute infectionDigestive and Liver Disease
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Genetic lesions associated with Muller's ratchet in an RNA virus

1996

The molecular basis of Muller's ratchet has been investigated using the important animal pathogen foot-and-mouth disease virus (FMDV). Clones from two FMDV populations were subjected to serial plaque transfers (repeated bottleneck events) on host BHK-21 cells. Relative fitness losses were documented in 11 out of 19 clones tested. Small fitness gains were observed in three clones. One viral clone attained an extremely low plating efficiency, suggesting that accumulation of deleterious mutations had driven the virus near extinction. Nucleotide sequence analysis revealed unique genetic lesions in multiply transferred clones that had never been seen in FMDVs isolated in nature or subjected to m…

Mutational hot spotvirusesViral quasispeciesViral Plaque AssayVirusOligoadenylate extensionCell LineExtinction PsychologicalAphthovirusStructural BiologyCricetinaePolyadenylateAnimalsFitness lossMolecular BiologyGeneticsbiologyFoot-and-mouth disease virusNucleic acid sequenceRNA virusMuller's ratchetbiology.organism_classificationVirologyQuasispeciesCapsidMutationNucleic Acid ConformationRNA ViralFoot-and-mouth disease virus
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