Search results for "adaptive divergence"

showing 5 items of 5 documents

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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Gene flow relates to evolutionary divergence among populations at the range margin

2020

Background Morphological differentiation between populations resulting from local adaptations to environmental conditions is likely to be more pronounced in populations with increasing genetic isolation. In a previous study a positive clinal variation in body size was observed in isolated Roesel’s bush-cricket, Metrioptera roeselii, populations, but were absent from populations within a continuous distribution at the same latitudinal range. This observational study inferred that there was a phenotypic effect of gene flow on climate-induced selection in this species. Methods To disentangle genetic versus environmental drivers of population differences in morphology, we measured the size of …

0106 biological sciencesRange (biology)Climatelcsh:MedicineBody sizeBiology010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyGene flowEvolutionsbiologi03 medical and health sciencesAdaptive divergenceMargin (machine learning)GeneticsGenetikGenetic isolation030304 developmental biologyEvolutionary Biology0303 health sciencesEcologyMorphological differentiationGeneral Neurosciencelcsh:RVDP::Matematikk og Naturvitenskap: 400Body sizeGeneral MedicineEvolutionary StudiesEvolutionary biologyOrthopteraEvolutionary divergenceGeneral Agricultural and Biological SciencesEntomologyZoologyGenetic isolatePeerJ
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Genome‐phenotype‐environment associations identify signatures of selection in a panmictic population of threespine stickleback

2023

Adaptive genetic divergence occurs when selection imposed by the environment causes the genomic component of the phenotype to differentiate. However, genomic signatures of natural selection are usually identified without information on which trait is responding to selection by which selective agent(s). Here we integrate whole-genome-sequencing with phenomics and measures of putative selective agents to assess the extent of adaptive divergence in threespine stickleback occupying the highly heterogeneous lake Mývatn, NE Iceland. We find negligible genome wide divergence, yet multiple traits (body size, gill raker structure and defence traits) were divergent along known ecological gradients (t…

adaptive divergencegenome scansgeenitDNArakenne (ominaisuudet)ominaisuudetperiytyvyyslandscape genomicsgasterosteus aculeatuspopulaatiogenetiikkaperimäfenotyyppigene flowenvironmental gradients
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Context dependent variation in corticosterone and phenotypic divergence of Rana arvalis populations along an acidification gradient

2022

Background Physiological processes, as immediate responses to the environment, are important mechanisms of phenotypic plasticity and can influence evolution at ecological time scales. In stressful environments, physiological stress responses of individuals are initiated and integrated via the release of hormones, such as corticosterone (CORT). In vertebrates, CORT influences energy metabolism and resource allocation to multiple fitness traits (e.g. growth and morphology) and can be an important mediator of rapid adaptation to environmental stress, such as acidification. The moor frog, Rana arvalis, shows adaptive divergence in larval life-histories and predator defense traits along an acidi…

endocrine systemviitasammakkoRanidaeEvolutionAcidification; Adaptive divergence; Amphibians; Corticosterone; Environmental stress; Evolutionary physiology; Phenotypic plasticityEnvironmental stressPhenotypic plasticitykortikosteroniEvolutionsbiologiAcidificationAmphibiansAdaptive divergencehappamoituminenQH359-425polycyclic compoundsAnimalsHumanshormonaaliset vaikutuksetQH540-549.5sopeutuminenEkologiEvolutionary BiologyEcologysammakkoeläimetHydrogen-Ion ConcentrationAdaptation PhysiologicalLarvaEvolutionary physiologyfenotyyppiAnuraCorticosteroneAcidsympäristönmuutoksethormones hormone substitutes and hormone antagonistsfysiologiset vaikutuksetResearch ArticleBMC Ecology and Evolution
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Short-term responses of Rana arvalis tadpoles to pH and predator stress: adaptive divergence in behavioural and physiological plasticity?

2022

Environmental stress is a major driver of ecological and evolutionary processes in nature. To cope with stress, organisms can adjust through phenotypic plasticity and/or adapt through genetic change. Here, we compared short-term behavioural (activity) and physiological (corticosterone levels, CORT) responses of Rana arvalis tadpoles from two divergent populations (acid origin, AOP, versus neutral origin, NOP) to acid and predator stress. Tadpoles were initially reared in benign conditions at pH 7 and then exposed to a combination of two pH (acid versus neutral) and two predator cue (predator cue versus no predator cue) treatments. We assessed behavioural activity within the first 15 min, an…

viitasammakkoRanidaePhysiologyPhenotypic plasticityBiochemistryphenotypic plasticityeläinten käyttäytyminenkortikosteroniRana arvalisEndocrinologyAdaptive divergencehappamoituminenAnimalsBehaviourAdaptive divergence; Behaviour; Corticosterone; Phenotypic plasticity; Rana arvalisEcology Evolution Behavior and Systematicshormonaaliset vaikutuksetsopeutuminenadaptive divergencecorticosteronestressiHydrogen-Ion ConcentrationMiljövetenskapsaalistusbehaviourLarvaPredatory BehaviorAnimal Science and ZoologyCorticosteroneEnvironmental Sciencesympäristönmuutoksetfysiologiset vaikutukset
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