Search results for "Models"

showing 10 items of 8211 documents

Fire benefits flower beetles in a Mediterranean ecosystem

2018

Despite the abundance of plants that benefit from fire in Mediterranean ecosystems, little is known about the possible presence of fire-favoured insects (other than bark beetles). For two years we sampled invertebrates after two large wildfires in eastern Spain and demonstrate that two flower beetle species, Protaetia morio and P. oblonga (Cetoniidae), show a pyrophilous behaviour. These beetles were much more numerous after the fires than in unburnt plots around the fire perimeter; in addition, these species tended to increase in number with the distance from the fire perimeter and with fire recurrence, especially P. morio. These results were maintained for the two postfire years sampled. …

0106 biological sciencesLife Cycles010504 meteorology & atmospheric scienceslcsh:MedicinePredationPlant Science01 natural sciencesPredationWildfiresLarvaeBeetlesAbundance (ecology)Bark (sound)lcsh:SciencePredatorMammalsLarvaMultidisciplinaryEcologyEcologyMediterranean RegionPlant AnatomyEukaryotaTrophic InteractionsColeopteraInsectsCommunity EcologyVertebratesProtaetiaResearch ArticleArthropodaFlowersBiology010603 evolutionary biologyFiresEcosystemsAnimalsEcosystemEcosystem0105 earth and related environmental sciencesInvertebrateModels Statisticallcsh:REcology and Environmental SciencesOrganismsBiology and Life Sciencesbiology.organism_classificationInvertebratesAmnioteslcsh:QDevelopmental Biology
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Can number and size of offspring increase simultaneously?--a central life-history trade-off reconsidered.

2011

Abstract Background To maximize their fitness, parents are assumed to allocate their resources optimally between number and size of offspring. Although this fundamental life-history trade-off has been subject to long standing interest, its genetic basis, especially in wild mammals, still remains unresolved. One important reason for this problem is that a large multigenerational pedigree is required to conduct a reliable analysis of this trade-off. Results We used the REML-animal model to estimate genetic parameters for litter size and individual birth size for a common Palearctic small mammal, the bank vole (Myodes glareolus). Even though a phenotypic trade-off between offspring number and …

0106 biological sciencesLitter (animal)MaleGenetic correlationLitter SizeEvolutionOffspringZoologyTrade-off010603 evolutionary biology01 natural sciencesGenetic correlationHeritability03 medical and health sciencesQuantitative Trait Heritable<it>Myodes glareolus</it>Genetic variationMyodes glareolusQH359-425AnimalsBody SizeSelection GeneticEcology Evolution Behavior and SystematicsSelection (genetic algorithm)030304 developmental biology0303 health sciencesModels StatisticalbiologyArvicolinaeGenetic VariationHeritabilitybiology.organism_classificationBiological EvolutionBirth sizeBank volePhenotypeEvolutionary biologyFemaleResearch ArticleBMC evolutionary biology
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Why do house-hunting ants recruit in both directions?

2007

8 pages; International audience; To perform tasks, organisms often use multiple procedures. Explaining the breadth of such behavioural repertoires is not always straightforward. During house hunting, colonies of Temnothorax albipennis ants use a range of behaviours to organise their emigrations. In particular, the ants use tandem running to recruit na? ants to potential nest sites. Initially, they use forward tandem runs (FTRs) in which one leader takes a single follower along the route from the old nest to the new one. Later, they use reverse tandem runs (RTRs) in the opposite direction. Tandem runs are used to teach active ants the route between the nests, so that they can be involved qui…

0106 biological sciencesMESH: Decision MakingOperations researchTemnothorax albipennisMESH : Social BehaviorTandem runningSocial insectsMESH : Behavior Animal01 natural sciencesNesting BehaviorNestMESH : EcosystemMESH: Behavior Animal[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisMESH: AnimalsMESH: EcosystemMESH: Nesting BehaviorRecruitment methodsMESH: Models Theoretical0303 health sciencesBehavior AnimalbiologyEcologyGeneral MedicineMESH : AntsCollective behaviourMESH: Social BehaviorTandem runningMESH: Population DensityDecision MakingMESH: AntsMESH : Nesting Behavior010603 evolutionary biology03 medical and health sciencesAnimalsTemnothorax albipennisMESH : Population DensitySocial BehaviorSet (psychology)EcosystemEcology Evolution Behavior and Systematics030304 developmental biologyPopulation DensityOriginal PaperAntsMESH : Models TheoreticalModels TheoreticalRecruitment methodsbiology.organism_classificationMESH : Decision MakingMESH : Animals[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Reverse-engineering the Arabidopsis thaliana transcriptional network under changing environmental conditions

2009

46 pages, 4 tables, 6 figures, 3 additinoal files.

0106 biological sciencesMESH: Genome PlantArabidopsis thalianaGene regulatory networkArabidopsis01 natural sciencesTranscriptomeGene Expression Regulation PlantArabidopsisMESH: Gene Expression Regulation DevelopmentalCluster AnalysisGene Regulatory NetworksMESH: ArabidopsisMESH: EcosystemMESH: Models GeneticOligonucleotide Array Sequence AnalysisMESH: Gene Regulatory NetworksGenetics0303 health sciencesMESH: Stress MechanicalbiologyMESH: Genomicsfood and beveragesGene Expression Regulation DevelopmentalGenomicsPhenotypeAlgorithmsGenome PlantMESH: MutationSystems biologyGenomicsMESH: AlgorithmsComputational biologyMESH: Arabidopsis ProteinsMESH: Phenotype03 medical and health sciencesMESH: Gene Expression Profiling[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyMESH: Gene Expression Regulation PlantEcosystem030304 developmental biologyModels GeneticMicroarray analysis techniquesArabidopsis ProteinsGene Expression ProfilingResearchfungiRobustness (evolution)biology.organism_classificationMESH: Cluster AnalysisGene expression profilingMutationMESH: Oligonucleotide Array Sequence AnalysisStress Mechanical010606 plant biology & botany
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Community size can affect the signals of ecological drift and niche selection on biodiversity

2020

Made available in DSpace on 2020-12-12T01:24:05Z (GMT). No. of bitstreams: 0 Previous issue date: 2020-06-01 Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES) Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP) Academy of Finland Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq) Ecological drift can override the effects of deterministic niche selection on small populations and drive the assembly of some ecological communities. We tested this hypothesis with a unique data set sampled identically in 200 streams in two regions (tropical Brazil and boreal Finland) that differ in macroinvertebrate community size by fivefold. Null models allowed us t…

0106 biological sciencesMETACOMMUNITIESNichenull modelsBeta diversityBiodiversitydispersal metacommunities010603 evolutionary biology01 natural sciencesCOLONIZATIONDISPERSALCONNECTIVITYAbundance (ecology)TROPICAL STREAMbeta-diversity deviation14. Life underwaterdispersalDISTURBANCEBETA-DIVERSITYRelative species abundanceEcosystemFinlandEcology Evolution Behavior and SystematicsRESTORATIONdemographic stochasticityβ-diversity deviationvesieläimistöEcology010604 marine biology & hydrobiologySmall population sizeBiodiversitybeta diversity deviation15. Life on landBiotaluonnon monimuotoisuusbiodiversiteettiGeographyHabitat destruction13. Climate action1181 Ecology evolutionary biologySIMILARITYPATTERNShyönteisetcommunity assemblySpecies richnessaquatic insectsmetacommunitiesBrazil
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Variation in predation risk and vole feeding behaviour: a field test of the risk allocation hypothesis.

2003

Many prey animals experience temporal variation in the risk of predation and therefore face the problem of allocating their time between antipredator efforts and other activities like feeding and breeding. We investigated time allocation of prey animals that balanced predation risk and feeding opportunities. The predation risk allocation hypothesis predicts that animals should forage more in low- than in high-risk situations and that this difference should increase with an increasing attack ratio (i.e. difference between low- and high-risk situations) and proportion of time spent at high risk. To test these predictions we conducted a field test using bank voles ( Clethrionomys glareolus) as…

0106 biological sciencesMaleForage (honey bee)Food ChainForagingTime allocationCarnivoraTrade-off010603 evolutionary biology01 natural sciencesPredationRisk Factorsbiology.animalAnimals0501 psychology and cognitive sciences050102 behavioral science & comparative psychologyPredatorEcology Evolution Behavior and SystematicsPopulation DensitybiologyEcologyArvicolinae05 social sciencesFeeding BehaviorModels Theoreticalbiology.organism_classificationWeaselPredatory BehaviorVoleFemaleOecologia
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Negative frequency-dependent selection of sexually antagonistic alleles in Myodes glareolus.

2011

Sexually antagonistic genetic variation, where optimal values of traits are sex-dependent, is known to slow the loss of genetic variance associated with directional selection on fitness-related traits. However, sexual antagonism alone is not sufficient to maintain variation indefinitely. Selection of rare forms within the sexes can help to conserve genotypic diversity. We combined theoretical models and a field experiment with Myodes glareolus to show that negative frequency-dependent selection on male dominance maintains variation in sexually antagonistic alleles. In our experiment, high-dominance male bank voles were found to have low-fecundity sisters, and vice versa. These results show …

0106 biological sciencesMaleLitter SizeFrequency-dependent selectionZoologyBiologySocial Environment010603 evolutionary biology01 natural sciencesLife history theory03 medical and health sciencesSexual Behavior AnimalGenetic variationAnimalsGenetic variabilityAlleleSelection GeneticAllelesEcosystem030304 developmental biology0303 health sciencesSex CharacteristicsMultidisciplinaryNatural selectionModels GeneticDirectional selectionArvicolinaeGenetic VariationFertilitySocial DominanceEvolutionary ecologyFemaleGenetic FitnessScience (New York, N.Y.)
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Why ruminating ungulates chew sloppily: Biomechanics discern a phylogenetic pattern.

2019

Altres ajuts: "Beatriu de Pinos" 2014 - BP-A 00048 There is considerable debate regarding whether mandibular morphology in ungulates primarily reflects phylogenetic affinities or adaptation to specific diet. In an effort to help resolve this debate, we use three-dimensional finite element analysis (FEA) to assess the biomechanical performance of mandibles in eleven ungulate taxa with well-established but distinct dietary preferences. We found notable differences in the magnitude and the distribution of von Mises stress between Artiodactyla and Perissodactyla, with the latter displaying lower overall stress values. Additionally, within the order Artiodactyla the suborders Ruminantia and Tylo…

0106 biological sciencesMaleModels AnatomicUngulateScienceFinite Element AnalysisZoologyRhinocerosMandible010603 evolutionary biology01 natural sciencesbiomechanicsRuminantiaBite ForceEvolution Molecular03 medical and health sciencesImaging Three-DimensionalSpecies SpecificityAnimalsCluster AnalysisRuminatingFEAPerissodactylaPhylogeny030304 developmental biologyArtiodactylafunctional morphology0303 health sciencesMultidisciplinarybiologyQRReproducibility of ResultsRuminantsbiology.organism_classificationTylopodaBiomechanical PhenomenaDietBite force quotientPhylogenetic PatternMedicineMasticationFemaleAdaptationPloS one
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Advantage of rare infanticide strategies in an invasion experiment of behavioural polymorphism

2012

Killing conspecific infants (infanticide) is among the most puzzling phenomena in nature. Stable polymorphism in such behaviour could be maintained by negative frequency-dependent selection (benefit of rare types). However, it is currently unknown whether there is genetic polymorphism in infanticidal behaviour or whether infanticide may have any fitness advantages when rare. Here we show genetic polymorphism in non-parental infanticide. Our novel invasion experiment confirms negative frequency-dependent selection in wild bank vole populations, where resource benefits allow an infanticidal strategy to invade a population of non-infanticidal individuals. The results show that infanticidal beh…

0106 biological sciencesMalePopulationGeneral Physics and AstronomyBiology010603 evolutionary biology01 natural sciencesGenetic correlationGeneral Biochemistry Genetics and Molecular BiologyArticleSex FactorsPolymorphism (computer science)AnimalseducationMaternal BehaviorSelection (genetic algorithm)Paternal BehaviorComputingMilieux_MISCELLANEOUSGeneticseducation.field_of_studyMultidisciplinaryModels StatisticalPolymorphism GeneticBehavior AnimalArvicolinaeGeneral Chemistrybiology.organism_classification010601 ecologyBank voleAggressionAnimals NewbornEvolutionary biologyMutationLinear ModelsFemale[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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Does evolution of iteroparous and semelparous reproduction call for spatially structured systems?

2000

A persistent question in the evolution of life histories is the fitness trade-off between reproducing only once (semelparity) in a lifetime or reproducing repeated times in different seasons (iteroparity). The problem can be formulated into a research agenda by assuming that one reproductive strategy is resident (has already evolved) and by asking whether invasion (evolution) of an alternative reproductive strategy is possible. For a spatially nonstructured system, Bulmer (1994) derived the relationship v + PA1 (PA is adult survival; vbS and bS are offspring numbers for iteroparous and semelparous breeding strategies, respectively) at which semelparous population cannot be invaded by an ite…

0106 biological sciencesMaleReproduction (economics)PopulationPopulation DynamicsReproductive strategyBiology010603 evolutionary biology01 natural sciencesModels BiologicalEvolutionarily stable strategyGeneticsAnimalseducationSemelparity and iteroparityEcology Evolution Behavior and SystematicsEcosystemeducation.field_of_studyEcologyReproductionBiological Evolution010601 ecologyEvolutionary biologyMutationBiological dispersalFemaleStructured systemsGeneral Agricultural and Biological SciencesEvolution; international journal of organic evolution
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