Search results for "molecular evolution"

showing 10 items of 117 documents

Essentiality Is a Strong Determinant of Protein Rates of Evolution during Mutation Accumulation Experiments in Escherichia coli

2016

[EN] The Neutral Theory of Molecular Evolution is considered the most powerful theory to understand the evolutionary behavior of proteins. One of the main predictions of this theory is that essential proteins should evolve slower than dispensable ones owing to increased selective constraints. Comparison of genomes of different species, however, has revealed only small differences between the rates of evolution ofessential and nonessential proteins. In some analyses, these differences vanish once confounding factors are controlled for, whereas in other cases essentiality seems to have an independent, albeit small, effect. It has been argued that comparing relatively distant genomes may entai…

0106 biological sciences0301 basic medicineBiologymedicine.disease_cause010603 evolutionary biology01 natural sciencesGenomeProtein evolutionEvolution Molecular03 medical and health sciencesGeneticsmedicineEscherichia colidN/dSProtein lengthEscherichia coliGeneEcology Evolution Behavior and Systematics2. Zero hungerGeneticsExperimental evolutionGenes EssentialModels GeneticEscherichia coli ProteinsGene Expression Regulation BacterialRates of evolutionMutation AccumulationNeutral theoryEssentiality030104 developmental biologyExperimental evolutionMutationNeutral theory of molecular evolutionGenome BacterialResearch Article
researchProduct

Chloroplast genomes of Rubiaceae: Comparative genomics and molecular phylogeny in subfamily Ixoroideae.

2020

In Rubiaceae phylogenetics, the number of markers often proved a limitation with authors failing to provide well-supported trees at tribal and generic levels. A robust phylogeny is a prerequisite to study the evolutionary patterns of traits at different taxonomic levels. Advances in next-generation sequencing technologies have revolutionized biology by providing, at reduced cost, huge amounts of data for an increased number of species. Due to their highly conserved structure, generally recombination-free, and mostly uniparental inheritance, chloroplast DNA sequences have long been used as choice markers for plant phylogeny reconstruction. The main objectives of this study are: 1) to gain in…

0106 biological sciences0301 basic medicineChloroplastsPlant GenomesCoffeaRubiaceaePlant SciencePlant Genetics01 natural sciencesGenomePlant GenomicsPlastidsGenome EvolutionPhylogenyData ManagementMultidisciplinaryIxoroideaeQDNA ChloroplastRHigh-Throughput Nucleotide Sequencingfood and beveragesPhylogenetic AnalysisGenomicsPhylogeneticsChloroplast DNAEngineering and TechnologyMedicineGenome PlantResearch ArticleBiotechnologyGenome evolutionComputer and Information SciencesNuclear genePlant Cell BiologyScienceGenomicsBioengineeringBiology010603 evolutionary biologyPolymorphism Single NucleotideMolecular EvolutionEvolution Molecular03 medical and health sciencesChloroplast GenomeGeneticsEvolutionary SystematicsGenome ChloroplastTaxonomyComparative genomicsEvolutionary BiologyBiology and Life SciencesComputational BiologyCell BiologySequence Analysis DNAComparative Genomicsbiology.organism_classificationGenome AnalysisGenomic Libraries030104 developmental biologyEvolutionary biologyPlant BiotechnologyReference genomePLoS ONE
researchProduct

The nucleotide sequence of a recombinant tomato yellow leaf curl virus strain frequently detected in Sicily isolated from tomato plants carrying the …

2017

In July 2016, an aggressive syndrome of tomato yellow leaf curl disease was reported in Sicily in tomato plants carrying the Ty-1 resistance gene. A total of 34 samples were collected and analyzed. Twenty-seven out of the 34 samples analyzed appeared to contain only recombinant molecules. One full sequence was obtained after cloning. Alignments and plot similarity analysis showed that the genome of the recombinant, named TYLCV-IL[IT:Sic23:16], was mostly derived from tomato yellow leaf curl virus (TYLCV), with a small region of 132 nucleotides in the non-coding region between the stem-loop and the start of the V2 ORF replaced by 124 nucleotides derived from a virus of a different species, t…

0106 biological sciences0301 basic medicineGenes ViralSequence analysisvirusesBiology01 natural sciencesViruslaw.invention03 medical and health sciencesSolanum lycopersicumlawVirologyPlant ImmunityCultivarTomato yellow leaf curl virusGeneSicilyDisease ResistancePlant DiseasesRecombination GeneticBase SequencefungiNucleic acid sequencefood and beveragesHigh-Throughput Nucleotide SequencingSettore AGR/12 - Patologia VegetaleGeneral MedicineSequence Analysis DNAbiology.organism_classificationPlants Genetically ModifiedVirologyPlant LeavesHorticulture030104 developmental biologyBegomovirusRecombinant DNALeaf curlDisease Susceptibility010606 plant biology & botanyGeminivirus molecular evolution recombination
researchProduct

Analysis of heteroplasmy in bank voles inhabiting the Chernobyl exclusion zone : A commentary on Baker et al. (2017) "Elevated mitochondrial genome v…

2018

0106 biological sciences0301 basic medicineMitochondrial DNARodentmetsämyyräecological geneticsevoluutio010603 evolutionary biology01 natural sciences03 medical and health sciencesMolecular evolutionbiology.animalGeneticsExclusion zoneEcology Evolution Behavior and Systematicsbiologymolecular evolutionsäteilyPopulation ecologyEcological geneticsgeneettinen muunteluHeteroplasmypopulaatioekologia030104 developmental biologyVariation (linguistics)Evolutionary biologypopulation ecologyCommentaryta1181mutaatiotGeneral Agricultural and Biological SciencesEvolutionary Applications
researchProduct

Temperature-dependent mutational robustness can explain faster molecular evolution at warm temperatures, affecting speciation rate and global pattern…

2015

Distribution of species across the Earth shows strong latitudinal and altitudinal gradients with the number of species decreasing with declining temperatures. While these patterns have been recognized for well over a century, the mechanisms generating and maintaining them have remained elusive. Here, we propose a mechanistic explanation for temperature-dependent rates of molecular evolution that can influence speciation rates and global biodiversity gradients. Our hypothesis is based on the effects of temperature and temperature-adaptation on stability of proteins and other catalytic biomolecules. First, due to the nature of physical forces between biomolecules and water, stability of biomo…

0106 biological sciences0301 basic medicineMutation ratespecies diversityEcologymolecular evolutionta1182Species diversityRobustness (evolution)temperaturemutational robustnessBiologyIncipient speciation010603 evolutionary biology01 natural sciences03 medical and health sciences030104 developmental biologyspeciation13. Climate actionMolecular evolutionModels of DNA evolutionEpistasista1181Species richnessEcology Evolution Behavior and SystematicsEcography
researchProduct

Evolving by deleting: patterns of molecular evolution of Apple stem pitting virus isolates from Poland

2019

In this study, 267 coat protein gene (CP) sequences from 48 Polish isolates of Apple stem pitting virus (ASPV) were determined. The genetic structure of the virus population was analysed and possible mechanisms of molecular evolution explored. We found evidence of recombination within the ASPV population and the presence of 17 ASPV molecular variants that differ in the length, number and arrangement of deletions in the CP. Population genetic analyses showed significant variation among isolates from pear and apple trees, between isolates from the same host species and, more interestingly, within isolates, supporting the existence of significant levels of variability within individual hosts, …

0106 biological sciences0301 basic medicinePopulation geneticsPopulationPopulation geneticsViral quasispecies01 natural sciences03 medical and health sciencesMolecular evolutionVirologyDeletionsCladeeducationGeneticseducation.field_of_studyPhylogenetic analysisbiologyPhylogenetic treebiology.organism_classificationVirologyRecombinationApple stem pitting virusASPV030104 developmental biologyCP geneGenetic structure010606 plant biology & botany
researchProduct

Epigenetic and Genetic Contributions to Adaptation in Chlamydomonas

2017

Epigenetic modifications, such as DNA methylation or histone modifications, can be transmitted between cellular or organismal generations. However, there are no experiments measuring their role in adaptation, so here we use experimental evolution to investigate how epigenetic variation can contribute to adaptation. We manipulated DNA methylation and histone acetylation in the unicellular green alga Chlamydomonas reinhardtii both genetically and chemically to change the amount of epigenetic variation generated or transmitted in adapting populations in three different environments (salt stress, phosphate starvation, and high CO2) for two hundred asexual generations. We find that reducing the …

0106 biological sciences0301 basic medicinehiilidioksidiEpigenomicsAdaptation Biological01 natural sciencestolerance (physical)Epigenesis GeneticEpigenomicssietokyky2. Zero hungerGeneticsExperimental evolutionepigeneettinen periytyminenSalt Tolerancegreen algaeAdaptation PhysiologicalHistoneDNA methylationepigenetic inheritancephosphate starvationBiologyEnvironment010603 evolutionary biologysuolapitoisuus03 medical and health sciencesviherlevätGenetic variationGeneticsEpigeneticssalt contentexperimental evolutionravinnepitoisuusMolecular BiologyGeneEcology Evolution Behavior and Systematicssalt tolerancefosfaatitta1183ChlamydomonasGenetic Variationadaptive walkcarbon dioxideDNA Methylation030104 developmental biologyepigenetic mutationMutationbiology.proteinta1181methylationAdaptationDirected Molecular EvolutionChlamydomonas reinhardtii
researchProduct

Complete nucleotide sequence of the mitochondrial genome of a salamander, Mertensiella luschani

2003

The complete nucleotide sequence (16,650 bp) of the mitochondrial genome of the salamander Mertensiella luschani (Caudata, Amphibia) was determined. This molecule conforms to the consensus vertebrate mitochondrial gene order. However, it is characterized by a long non-coding intervening sequence with two 124-bp repeats between the tRNA Thr and tRNA Pro genes. The new sequence data were used to reconstruct a phylogeny of jawed vertebrates. Phylogenetic analyses of all mitochondrial protein-coding genes at the amino acid level recovered a robust vertebrate tree in which lungfishes are the closest living relatives of tetrapods, salamanders and frogs are grouped together to the exclusion of cae…

0106 biological sciencesAmphibianMitochondrial DNAMolecular Sequence DataDNA Mitochondrial010603 evolutionary biology01 natural sciencesAmphibians03 medical and health sciencesMolecular evolutionbiology.animalddc:570GeneticsAnimalsAmino Acid SequenceCloning MolecularPhylogeny030304 developmental biologyGenetics0303 health sciencesBase SequencebiologyNucleic acid sequenceVertebrateSequence Analysis DNAGeneral MedicineSalamandridaeMitochondrial DNASister groupMertensiellaVertebratesTransfer RNAMolecular evolutionBatrachia
researchProduct

The roles of whole-genome and small-scale duplications in the functional specialization of Saccharomyces cerevisiae genes

2013

Researchers have long been enthralled with the idea that gene duplication can generate novel functions, crediting this process with great evolutionary importance. Empirical data shows that whole-genome duplications (WGDs) are more likely to be retained than small-scale duplications (SSDs), though their relative contribution to the functional fate of duplicates remains unexplored. Using the map of genetic interactions and the re-sequencing of 27 Saccharomyces cerevisiae genomes evolving for 2,200 generations we show that SSD-duplicates lead to neo-functionalization while WGD-duplicates partition ancestral functions. This conclusion is supported by: (a) SSD-duplicates establish more genetic i…

0106 biological sciencesCancer ResearchGenome evolutionlcsh:QH426-470ArabidopsisSaccharomyces cerevisiaeBiology01 natural sciencesGenomeDivergenceEvolution Molecular03 medical and health sciencesMolecular evolutionPhylogeneticsGene DuplicationGene duplicationGeneticsMads-Box genesBiologyMolecular BiologyGenePhylogenyGenetics (clinical)Ecology Evolution Behavior and Systematics030304 developmental biologySmall-scale duplicationsGeneticsEvolutionary BiologyEvolutionary Theory0303 health sciencesAdaptive conflictHuman evolutionary geneticsNull mutationsSaccharomyces cerevisiae genomeProtein-Protein interactionslcsh:GeneticsEvolutionary biologyDiversificationEpistasisMolecular evolutionWhole-genome duplicationsGenome FungalYeast genomeInteractions revealResearch Article010606 plant biology & botany
researchProduct

Phylogeography and Molecular Evolution of Potato virus Y

2012

Potato virus Y (PVY) is an important plant pathogen, whose host range includes economically important crops such as potato, tobacco, tomato, and pepper. PVY presents three main strains (PVYO, PVYN and PVYC) and several recombinant forms. PVY has a worldwide distribution, yet the mechanisms that promote and maintain its population structure and genetic diversity are still unclear. In this study, we used a pool of 77 complete PVY genomes from isolates collected worldwide. After removing the effect of recombination in our data set, we used Bayesian techniques to study the influence of geography and host species in both PVY population structure and dynamics. We have also performed selection and…

0106 biological sciencesEvolutionary GeneticsAmino-acid sitesSelective constraintsPotyviruslcsh:Medicine01 natural sciencesAmino-Acid SitesRecombinant strainPlant RNA virusesNegative selectionMaximum-Likelihoodlcsh:Sciencepathologie végétaleSelective ConstraintsPhylogenyGenetics0303 health sciencesCoat proteinMultidisciplinaryNatural selectionVegetal BiologybiologyEcologyGenetic-structurePotyvirusfood and beveragesEuropePhylogeneticsVenous necrosisPhylogeographyPotato virus YBiogeographyVenous NecrosisSequence AnalysisResearch ArticlePlant RNA VirusesGenome ViralMicrobiologyEvolution Molecular03 medical and health sciencesGenetic-StructureMolecular evolutionVirologyMosaic-virus[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyEvolutionary SystematicsBiology030304 developmental biologySolanum tuberosumGenetic diversityEvolutionary BiologyMosaic virusHost (biology)Maximum-likelihoodlcsh:RComputational Biologyvirus à de la pomme de terreBayes Theoremlégumebiology.organism_classificationMutational analysisMosaic-VirusMutational AnalysisEvolutionary EcologyRecombinant StrainNorth Americalcsh:QBiologie végétalePopulation Genetics010606 plant biology & botany
researchProduct