Search results for "BATES"

showing 10 items of 113 documents

Batesian Mimicry and Signal Accuracy

1997

RICE, W. R. 1989. Analyzing tables of statistical tests. Evolution 43:223-225. RICE, W. R., AND E. E. HOSTERT. 1993. Laboratory experiments on speciation: what have we learned in 40 years? Evolution 47: 1637-1653. SAWADA, S. 1963. Studies on the local races of the Japanese newt, Triturus pyrrhogaster Boie. II. Sexual isolation mechanisms. J. Sci. Hiroshima Univ. Ser. B 21:167-180. SPIETH, H. T, AND J. M. RINGO. 1983. Mating behavior and sexual isolation in Drosophila. Pp 223-284 in M. Ashburner, L. M. Carson, and J. N. Thompson Jr, eds. The genetics and biology of Drosophila. Academic Press, New York. TEMPLETON, A. R. 1996. Experimental evidence for the genetictransilience model of speciati…

0106 biological sciences0301 basic medicinebiologyDesmognathus ochrophaeusAllopatric speciationReproductive isolationbiology.organism_classificationDusky salamander010603 evolutionary biology01 natural sciencesBatesian mimicry03 medical and health sciences030104 developmental biologyTriturus vulgarisEvolutionary biologyGenetic algorithmGeneticsMatingGeneral Agricultural and Biological SciencesEcology Evolution Behavior and SystematicsEvolution
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Selection for multicomponent mimicry: equal feature salience and variation in preferred traits

2016

When should multiple traits on Batesian mimics be selected to resemble corresponding traits on model species? Here, we explore two possibilities. First, features of equal salience to predators may be used to categorize prey, selecting for multicomponent mimicry. Second, if different predators use single yet different traits to categorize prey, multicomponent mimicry may still be selected. We studied how blue tits categorized rewarding and unrewarding artificial prey items that are differentiated by a combination of two color dimensions. Many birds used both color dimensions to make decisions, and overall, the population selected for multicomponent mimicry. However, a subset of birds used on…

0106 biological sciences0301 basic medicineeducation.field_of_studylearningindividual variationEcologyPopulationMultiple traitsovershadowingBiology010603 evolutionary biology01 natural sciencesBatesian mimicryPredation03 medical and health sciences030104 developmental biologyCategorizationEvolutionary biologySalience (neuroscience)Mimicryta1181Animal Science and Zoologycomplex signaleducationEcology Evolution Behavior and SystematicsBehavioral Ecology
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2019

Aposematic organisms couple conspicuous warning signals with a secondary defense to deter predators from attacking. Novel signals of aposematic prey are expected to be selected against due to positive frequency-dependent selection. How, then, can novel phenotypes persist after they arise, and why do so many aposematic species exhibit intrapopulation signal variability? Using a polytypic poison frog ( Dendrobates tinctorius ), we explored the forces of selection on variable aposematic signals using 2 phenotypically distinct (white, yellow) populations. Contrary to expectations, local phenotype was not always better protected compared to novel phenotypes in either population; in the white po…

0106 biological sciences0303 health scienceseducation.field_of_studyMultidisciplinaryDendrobatesFrequency-dependent selectionPopulationZoologyAposematismBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesPredationGene flowWhite (mutation)03 medical and health sciencesSignal variabilityeducation030304 developmental biologyProceedings of the National Academy of Sciences
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Visible implant elastomer (VIE) success in early larval stages of a tropical amphibian species

2020

AbstractAnimals are often difficult to distinguish at an individual level, but being able to identify individuals can be crucial in ecological or behavioral studies. In response to this challenge, biologists have developed a range of marking (tattoos, brands, toe-clips) and tagging (PIT, VIA, VIE) methods to identify individuals and cohorts. Animals with complex life cycles are notoriously hard to mark because of the distortion or loss of the tag across metamorphosis. In frogs, few studies have attempted larval tagging and none have been conducted on a tropical species. Here, we present the first successful account of VIE tagging in early larval stages (Gosner stage 25) of the dyeing poison…

0106 biological sciencesAmphibiantägitsammakotRange (biology)Dendrobatesmedia_common.quotation_subjectlcsh:MedicineZoologyElastomertaggingBiologyvärjärinuolimyrkkysammakkoMethods research010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular Biologyeläintiedetoukat03 medical and health sciencesTaggingbiology.animalNeotropical frogMetamorphosiselastomer030304 developmental biologymedia_common0303 health sciencesLarvaEcologyLarval tagGeneral Neurosciencelcsh:Rmethods researchGeneral Medicinebiology.organism_classificationIndividual levelTadpoleVIEkenttätyömenetelmätneotropical frogDendrobates tinctoriuslarval tageläinten merkintäBiological dispersalimplantitGeneral Agricultural and Biological SciencesZoologyPeerJ
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Forecasting ocean warming impacts on seabird demography: a case study on the European storm petrel

2016

Bottom-up climatic forcing has been shown to be influential for a variety of marine taxa, but evidence on seabird populations is scarce. Seasonal variation in environmental conditions can have an indirect effect on subsequent reproduction, which, given the longevity and single-brooding of seabirds, may affect population dynamics. Our study focuses on linking the effect of oceanographic conditions (from 1991 to 2013) to the fecundity and consequently pop - ulation growth rate of the Mediterranean subspecies of the European storm petrel Hydrobates pelagicus melitensis. In this study, we examined 23 yr of > 5400 capture–mark−recaptures (CMR) and modelled the probability of skipping reproductio…

0106 biological sciencesEcologybiologyEcology010604 marine biology & hydrobiologyEffects of global warming on oceansCapture mark recaptureAquatic Sciencebiology.organism_classification010603 evolutionary biology01 natural sciencesHydrobates pelagicusOceanographyGeographySettore AGR/11 - Entomologia Generale E Applicatabiology.animalPopulation growthStorm petrelSeabirdCapture−mark−recapture · Environmental stochasticity · Hydrobates pelagicus · Population growth rate · SenescenceEcology Evolution Behavior and Systematics
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Fossorial but widespread: the phylogeography of the common spadefoot toad (Pelobates fuscus), and the role of the Po Valley as a major source of gene…

2007

International audience; Pelobates fuscus is a fossorial amphibian that inhabits much of the European plain areas. To unveil traces of expansion and contraction events of the species' range, we sequenced 702 bp of the mitochondrial cytochrome b gene. To infer the population history we applied phylogeographical methods, such as nested clade phylogeographical analysis (NCPA), and used summary statistics to analyse population structure under a neutral model of evolution. Populations were assigned to different drainage systems and we tested hypotheses of explicit refugial models using information from analysis of molecular variance, nucleotide diversity, effective population size estimation, NCP…

0106 biological scienceshaplotypesPelobates fuscuspopulation-structuremismatch distribution01 natural sciencesNucleotide diversityCoalescent theorypostglacial range expansionEffective population sizePhylogeny[SDV.EE]Life Sciences [q-bio]/Ecology environment0303 health scienceseducation.field_of_studybiologyGeographyEcologyFossilssummarycoalescentCytochromes bEuropeMitochondrial-dnastatisticsAnuracladistic-analysisPopulationPelobates[SDV.BID]Life Sciences [q-bio]/Biodiversitynucleotide diversity010603 evolutionary biology03 medical and health sciencesstatistical phylogeographygeographical-distributionGeneticsVicarianceAnimalseducationEcology Evolution Behavior and Systematics030304 developmental biologyPopulation DensityinferenceDNA15. Life on landbiology.organism_classificationPhylogeographyspeciationEvolutionary biologyphylogeographical analysis[SDE.BE]Environmental Sciences/Biodiversity and EcologydivergencePelobates cultripesMolecular ecology
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Alien Species of EU Concern in Romania

2017

AbstractOf the 37 species of the European Union concern eight are already present and two present a future potential risk for Romania. This paper brings updated information regarding these species in Romania. The presence of eight invasive alien species of concern to the European Union have already been recorded in Romania: two plant speciesCabomba carolinianaandHeracleum sosnowskyi, two crustaceansOrconectes limosusandEriocheir sinensis, two fish speciesPseudorasbora parvaandPerccottus glenii, one reptileTrachemys scriptaand one mammalMyocastor coypus. Other two species of Union concern (Lithobates catesbeianusandProcyon lotor) may soon become invaders in Romania. We emphasize the urgent n…

0106 biological sciencesinvasivenessalien species010501 environmental sciences01 natural sciencesEnvironmental protectiondistributionmedia_common.cataloged_instanceEuropean unionAlien speciesromaniaCabomba carolinianaQH540-549.50105 earth and related environmental sciencesmedia_commoneu listbiologyEcologyEcology010604 marine biology & hydrobiologyLithobatesOrconectes limosusbiology.organism_classificationPseudorasbora parvaEriocheirGeographyMammalTransylvanian Review of Systematical and Ecological Research
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Social information use about novel aposematic prey is not influenced by a predator’s previous experience with toxins

2019

Aposematism is an effective antipredator strategy. However, the initial evolution and maintenance of aposematism are paradoxical because conspicuous prey are vulnerable to attack by naive predators. Consequently, the evolution of aposematic signal mimicry is also difficult to explain. The cost of conspicuousness can be reduced if predators learn about novel aposematic prey by observing another predator's response to that same prey. On the other hand, observing positive foraging events might also inform predators about the presence of undefended mimics, accelerating predation on both mimics and their defended models. It is currently unknown, however, how personal and social information combi…

0106 biological sciencespredator-prey interactionstoksiinitZoologyAVOIDANCEAposematismBiology41 Environmental SciencesSTRATEGIC DECISIONSALTERNATIVE PREYFREQUENCY010603 evolutionary biology01 natural sciencesBATESIAN MIMICRYBasic Behavioral and Social SciencePredation03 medical and health sciencesDEFENDED PREYpetoeläimetBehavioral and Social ScienceCOLOR BIASEStoxin loadaposematismAVERSIONSSocial informationPredatorEcology Evolution Behavior and SystematicsEDUCATED PREDATORS030304 developmental biologysuojaväri0303 health sciencessaaliseläimetmimikry3103 EcologySocial learningBLACKBIRDSBatesian mimicrysosiaalinen oppiminengreat titssocial learning3109 Zoology1181 Ecology evolutionary biologyMimicrymimicry31 Biological Sciences
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From habitat use to social behavior: natural history of a voiceless poison frog, Dendrobates tinctorius

2019

AbstractDescriptive studies of natural history have always been a source of knowledge on which experimental work and scientific progress rely. Poison frogs are a well-studied group of small Neotropical frogs with diverse parental behaviors, distinct calls, and bright colors that warn predators about their toxicity; and a showcase of advances in fundamental biology through natural history observations. The dyeing poison frog, Dendrobates tinctorius, is emblematic of the Guianas region, widespread in the pet-trade, and increasingly popular in research. This species shows several unusual behaviors, such as the lack of advertisement calls and the aggregation around tree-fall gaps, which remain …

0106 biological sciencessammakotDendrobatesmedia_common.quotation_subjectEcology (disciplines)parental carelcsh:MedicinehabitaattiParental careAmazonin sademetsäeläinten käyttäytyminen010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyPredationCourtship03 medical and health sciencesTadpole transport14. Life underwaterAmazonagonistic behavior030304 developmental biologymedia_common0303 health sciencesAnimal BehaviorEcologylisääntymiskäyttäytyminenbiologyEcologyGeneral Neurosciencelcsh:RCourtshiphabitat useGeneral Medicinebiology.organism_classificationTreefallGeographyNatural population growthHabitatHabitat usecourtshiptadpole transportBiological dispersaltreefallAgonistic behaviorGeneral Agricultural and Biological SciencesZoologyPaternal carePeerJ
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Why aren't warning signals everywhere? : On the prevalence of aposematism and mimicry in communities

2021

Warning signals are a striking example of natural selection present in almost every ecological community - from Nordic meadows to tropical rainforests, defended prey species and their mimics ward off potential predators before they attack. Yet despite the wide distribution of warning signals, they are relatively scarce as a proportion of the total prey available, and more so in some biomes than others. Classically, warning signals are thought to be governed by positive density-dependent selection, i.e. they succeed better when they are more common. Therefore, after surmounting this initial barrier to their evolution, it is puzzling that they remain uncommon on the scale of the community. He…

0106 biological sciencesvaroitusväri570predator-prey interactionsFREQUENCY-DEPENDENT SELECTIONFrequency-dependent selectionPopulationBatesian mimicryAposematismMacroevolutionModels Biological010603 evolutionary biology01 natural sciencesRISK-TAKINGGeneral Biochemistry Genetics and Molecular BiologyMüllerian mimicryPredationANTIPREDATOR DEFENSES03 medical and health sciencesPrevalenceAnimalsaposematismecological nicheeducationMullerian mimicryBODY-SIZE030304 developmental biology0303 health scienceseducation.field_of_studyMüllerian mimicryEcologyBiological Mimicrymimikrypredator–prey interactionseliöyhteisötBiological EvolutionBatesian mimicrysaalistusekologinen lokeroCORAL-SNAKE PATTERNCHEMICAL DEFENSEGeographyCOLOR PATTERNPredatory Behavior1181 Ecology evolutionary biologyMimicrySHIFTING BALANCEGeneral Agricultural and Biological Sciencescommunity ecology
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