Search results for "Rift"

showing 10 items of 526 documents

Random Genetic Drift and Selective Pressures Shaping the Blattabacterium Genome

2018

AbstractEstimates suggest that at least half of all extant insect genera harbor obligate bacterial mutualists. Whereas an endosymbiotic relationship imparts many benefits upon host and symbiont alike, the intracellular lifestyle has profound effects on the bacterial genome. The obligate endosymbiont genome is a product of opposing forces: genes important to host survival are maintained through physiological constraint, contrasted by the fixation of deleterious mutations and genome erosion through random genetic drift. The obligate cockroach endosymbiont, Blattabacterium – providing nutritional augmentation to its host in the form of amino acid synthesis – displays radical genome alterations…

0106 biological sciences0301 basic medicinelcsh:MedicineCockroachesBacterial genome size010603 evolutionary biology01 natural sciencesGenomeArticleEvolution Molecular03 medical and health sciencesBlattabacteriumGenetic driftAnimalslcsh:ScienceSymbiosisGeneMultidisciplinaryObligatebiologyHost (biology)lcsh:RGenetic Driftfungibiology.organism_classificationFixation (population genetics)030104 developmental biologyEvolutionary biologylcsh:QFlavobacteriaceaeGenome BacterialScientific Reports
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Effects of predation pressure and resource use on morphological divergence in omnivorous prey fish

2013

Background. Body shape is one of the most variable traits of organisms and responds to a broad array of local selective forces. In freshwater fish, divergent body shapes within single species have been repeatedly observed along the littoral-pelagic axes of lakes, where the structural complexity of near shore habitats provides a more diverse set of resources compared to the open-water zones. It remains poorly understood whether similar resource-driven polymorphism occurs among lakes that vary in structural complexity and predation pressure, and whether this variation is heritable. Here, we analyzed body shape in four populations of omnivorous roach (Rutilus rutilus) inhabiting shallow lakes.…

0106 biological sciencesAFLPStable isotope analysisGenotypeOutlier lociCyprinidaePredationZoology010603 evolutionary biology01 natural sciencesPredation03 medical and health sciencesAdaptive divergencemorfologiaGenetic driftvakaat isotoopitparasitic diseasesAnimals14. Life underwatersärkiAmplified Fragment Length Polymorphism AnalysisEcosystemEcology Evolution Behavior and Systematics030304 developmental biologyIsolation by distance0303 health sciencesGeometric morphometricsbiologyEcologyGenetic DriftShallow lakesbiology.organism_classificationBiological EvolutionGut content analysis6. Clean watersaalistusLakesPhenotypematalat järvetHabitatPredatory BehaviorPredator induced morphological defenseForage fishFreshwater fishpredaatioRutilus rutilusOmnivoreRutilusResearch ArticleBMC Evolutionary Biology
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2016

AbstractOcean acidification is predicted to have detrimental effects on many marine organisms and ecological processes. Despite growing evidence for direct impacts on specific species, few studies have simultaneously considered the effects of ocean acidification on individuals (e.g. consequences for energy budgets and resource partitioning) and population level demographic processes. Here we show that ocean acidification increases energetic demands on gastropods resulting in altered energy allocation, i.e. reduced shell size but increased body mass. When scaled up to the population level, long-term exposure to ocean acidification altered population demography, with evidence of a reduction i…

0106 biological sciencesEcophysiologyeducation.field_of_studyMultidisciplinaryPopulation levelReproductive successEcology010604 marine biology & hydrobiologyPopulationOcean acidificationBiology010603 evolutionary biology01 natural sciencesGene flowGenetic drift13. Climate action14. Life underwaterAdaptationeducationScientific Reports
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Assessing the influence of the amount of reachable habitat on genetic structure using landscape and genetic graphs.

2021

Genetic structure, i.e. intra-population genetic diversity and inter-population genetic differentiation, is influenced by the amount and spatial configuration of habitat. Measuring the amount of reachable habitat (ARH) makes it possible to describe habitat patterns by considering intra-patch and inter-patch connectivity, dispersal capacities and matrix resistance. Complementary ARH metrics computed under various resistance scenarios are expected to reflect both drift and gene flow influence on genetic structure. Using an empirical genetic dataset concerning the large marsh grasshopper (Stethophyma grossum), we tested whether ARH metrics are good predictors of genetic structure. We further i…

0106 biological sciencesGene Flow0303 health sciencesgraph theoryGenetic DriftGenetic Variationlandscape geneticsGrasshoppers010603 evolutionary biology01 natural sciencesArticle[SDE.BE] Environmental Sciences/Biodiversity and Ecology03 medical and health sciencesGeneticsgenetic structureAnimalsamount of reachable habitatGenetics (clinical)Ecosystem030304 developmental biologyMicrosatellite RepeatsHeredity
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Patterns of genetic variability and habitat occupancy in Crepis triasii (Asteraceae) at different spatial scales: insights on evolutionary processes …

2012

International audience; Background and Aims Archipelagos are unique systems for studying evolutionary processes promoting diversification and speciation. The islands of the Mediterranean basin are major areas of plant richness, including a high proportion of narrow endemics. Many endemic plants are currently found in rocky habitats, showing varying patterns of habitat occupancy at different spatial scales throughout their range. The aim of the present study was to understand the impact of varying patterns of population distribution on genetic diversity and structure to shed light on demographic and evolutionary processes leading to population diversification in Crepis triasii, an endemic pl…

0106 biological sciencesGene FlowGenetic MarkersGenetic Speciation[SDV]Life Sciences [q-bio]PopulationAllozymesBalearic floraPlant ScienceBiology010603 evolutionary biology01 natural sciencesCrepisQuaternaryEvolution Molecular03 medical and health sciencesGenetic driftfragmentation14. Life underwatereducationGenetic erosionEcosystem030304 developmental biologyPlant evolution0303 health scienceseducation.field_of_studyGenetic diversityCrepis triasiiEcologycontinental islandsPopulation sizeGenetic Variationspatially structured populationsgenetic diversityOriginal Articles15. Life on landBiological EvolutionSGSGenetic SpeciationGenetics PopulationSpainGenetic structurechloroplast microsatellitesgenetic drift
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Interspecific interactions influence contrasting spatial genetic structures in two closely related damselfly species

2014

Spatial genetic structure (SGS) is largely determined by colonization history, landscape and ecological characteristics of the species. Therefore, sympatric and ecologically similar species are expected to exhibit similar SGSs, potentially enabling prediction of the SGS of one species from that of another. On the other hand, due to interspecific interactions, ecologically similar species could have different SGSs. We explored the SGSs of the closely related Calopteryx splendens and Calopteryx virgo within Finland and related the genetic patterns to characteristics of the sampling localities. We observed different SGSs for the two species. Genetic differentiation even within short distances …

0106 biological sciencesGene FlowInsectaRange (biology)Population geneticsBiology010603 evolutionary biology01 natural sciencesGene flow03 medical and health sciencesGenetic driftSpecies SpecificityGeneticsAnimalsCluster AnalysisEcology Evolution Behavior and SystematicsFinland030304 developmental biology0303 health sciencesGenetic diversityGeographyEcologyGenetic DriftGenetic VariationBayes TheoremInterspecific competitionSequence Analysis DNA15. Life on landSympatryGenetics PopulationSympatric speciationGenetic structureta1181Molecular Ecology
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Revision of the tropical African genus Tetraconcha (Orthoptera: Tettigoniidae: Phaneropterinae) with the description of ten new species.

2017

Only five species of the genus Tetraconcha Karsch, 1890 have been previously known; they inhabit tropical forests of central and western Africa. Generally, specimens belonging to this genus are scarcely represented in museum collections, probably due to the difficulty in finding them, but also for the fragility of their body and legs. During some recent expeditions in the Central African Republic and Ivory Coast it was possible to put together an abundant amount of specimens. This allowed the present author to revise the genus and to find valid characters to distinguish different species. On the whole, ten new species were discovered and the total number now amounts to fifteen species. Inte…

0106 biological sciencesInsectaEvolutionary radiationArthropodaOrthopteraTettigoniidae010607 zoologyZoologyDistribution010603 evolutionary biology01 natural sciencestaxonomyGenetic driftlcsh:ZoologyTettigoniidaedistributionAnimaliastridulatory filelcsh:QL1-991TetraconchaTaxonomyTegmenbiologyNational parkbiology.organism_classificationEvolutionary radiationTettigonioideadistribution evolutionary radiation stridulatory file taxonomySettore AGR/11 - Entomologia Generale E ApplicataInsect ScienceOrthopteraTaxonomy (biology)Phaneropterinaeevolutionary radiationStridulatory file
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Island selection on mammalian life-histories: genetic differentiation in offspring size

2008

Abstract Background Since Darwin's pioneering work, evolutionary changes in isolated island populations of vertebrates have continued to provide the strongest evidence for the theory of natural selection. Besides macro-evolutionary changes, micro-evolutionary changes and the relative importance of natural selection vs. genetic drift are under intense investigation. Our study focuses on the genetic differentiation in morphological and life-history traits in insular populations of a small mammal the bank vole Myodes glareolus. Results Our results do not support the earlier findings for larger adult size or lower reproductive effort in insular populations of small mammals. However, the individ…

0106 biological sciencesLitter (animal)MaleOffspringEvolutionZoology010603 evolutionary biology01 natural sciencesIntraspecific competition03 medical and health sciencesGenetic driftGenetic variationQH359-425AnimalsBirth WeightBody SizeSelection GeneticSelection (genetic algorithm)Ecology Evolution Behavior and Systematics030304 developmental biology0303 health sciencesNatural selectionbiologyGeographyArvicolinaeReproductionBody WeightGenetic Variationbiology.organism_classificationBank voleEvolutionary biologyFemaleResearch Article
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Diversifying selection on MHC class I in the house sparrow (Passer domesticus).

2009

10 pages; International audience; Genes of the major histocompatibility complex (MHC) are the most polymorphic loci known in vertebrates. Two main hypotheses have been put forward to explain the maintenance of MHC diversity: pathogen-mediated selection and MHC-based mate choice. Host-parasite interactions can maintain MHC diversity via frequency-dependent selection, heterozygote advantage, and diversifying selection (spatially and/or temporally heterogeneous selection). In this study, we wished to investigate the nature of selection acting on the MHC class I across spatially structured populations of house sparrows (Passer domesticus) in France. To infer the nature of the selection, we comp…

0106 biological sciencesMESH : Gene FlowMESH: Selection (Genetics)MESH: GeographyGenes MHC Class IMESH: Genetic MarkersBalancing selectionMESH : Microsatellite Repeats[ SDV.IMM.IA ] Life Sciences [q-bio]/Immunology/Adaptive immunology01 natural sciencesmicrosatellitesMESH: SparrowsMESH : Genetic MarkersMESH: AnimalsMESH: Genetic VariationMESH: Evolution MolecularGenetics0303 health scienceseducation.field_of_studyGeographybiology[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]MESH : GeographyMESH: Genes MHC Class I[ SDE.MCG ] Environmental Sciences/Global Changes[ SDV.BID.EVO ] Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE][SDV.IMM.IA]Life Sciences [q-bio]/Immunology/Adaptive immunologyMate choiceMESH: Stochastic ProcessesMHC class IMESH : MutationSparrowsGene FlowGenetic MarkersMESH: Mutationbalancing selection[SDE.MCG]Environmental Sciences/Global ChangesPopulationMESH : Genetic DriftMESH: Genetics Populationchemical and pharmacologic phenomenaMESH : Stochastic ProcessesMajor histocompatibility complex010603 evolutionary biologyMESH : Genes MHC Class IEvolution Molecular03 medical and health sciencesMESH : Genetic VariationMHC class IGeneticsPasser domesticusMESH : Selection (Genetics)AnimalsMESH : Evolution MolecularSelection GeneticMESH: Genetic DrifteducationAllelesMESH: Gene FlowEcology Evolution Behavior and SystematicsSelection (genetic algorithm)030304 developmental biologyLocal adaptationIsolation by distanceStochastic Processes[ SDE.BE ] Environmental Sciences/Biodiversity and Ecologyhouse sparrowMESH: AllelesGenetic DriftGenetic Variationdiversifying selectionPasser domesticus.[ SDV.GEN.GA ] Life Sciences [q-bio]/Genetics/Animal geneticsMESH : Genetics Population[SDE.ES]Environmental Sciences/Environmental and Society[SDV.GEN.GA]Life Sciences [q-bio]/Genetics/Animal geneticsGenetics PopulationEvolutionary biologyMutationbiology.proteinMESH: Microsatellite RepeatsMESH : AnimalsMESH : Sparrows[SDE.BE]Environmental Sciences/Biodiversity and EcologyMESH : Alleles[ SDE.ES ] Environmental Sciences/Environmental and SocietyMicrosatellite Repeats
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The mechanistic basis of changes in community assembly in relation to anthropogenic disturbance and productivity

2016

Anthropogenic disturbance often causes changes in communities. However, the mechanistic basis of these changes remains elusive. As all patterns in community ecology can be understood as a result of four processes (speciation, selection, drift, and dispersal), the effect of disturbance should depend on how disturbance disrupt these processes. We studied the effects of disturbance and productivity on species richness, community composition, and community dispersion (i.e., variation in community composition) in the vegetation of 120 boreal peatlands using null-model approach to determine whether community assembly processes differ between pristine and disturbed sites. Sites represented three p…

0106 biological sciencesPeatproductivityDisturbance (geology)beta diversity: dispersiontuottavuusselectionBiology010603 evolutionary biology01 natural scienceslcsh:QH540-549.5Ecosystemspecies richnessEcology Evolution Behavior and SystematicsdisturbanceEcologyCommunitydriftEcologyspecies composition010604 marine biology & hydrobiologyVegetationIntermediate Disturbance HypothesisProductivity (ecology)Environmental scienceta1181Biological dispersalbeta diversitydispersionlcsh:EcologySpecies richnessEcosphere
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