Search results for "Predatory Behavior"

showing 10 items of 116 documents

Social learning within and across predator species reduces attacks on novel aposematic prey

2020

Abstract To make adaptive foraging decisions, predators need to gather information about the profitability of prey. As well as learning from prey encounters, recent studies show that predators can learn about prey defences by observing the negative foraging experiences of conspecifics. However, predator communities are complex. While observing heterospecifics may increase learning opportunities, we know little about how social information use varies across predator species.Social transmission of avoidance among predators also has potential consequences for defended prey. Conspicuous aposematic prey are assumed to be an easy target for naïve predators, but this cost may be reduced if multipl…

0106 biological sciencesvaroitusväripredator-prey interactionsForagingZoologyAposematism010603 evolutionary biology01 natural scienceseläinten käyttäytyminenPredationpetoeläimetAnimalsaposematismPasseriformesSocial informationPredatorEcology Evolution Behavior and Systematicsheterospecific informationBehavioural EcologyParussaaliseläimetbiologyconspecific information010604 marine biology & hydrobiologyCyanistespredator–prey interactionsSocial learningbiology.organism_classificationsosiaalinen oppiminensocial learningPredatory Behavior1181 Ecology evolutionary biologyavoidance learningAnimal Science and ZoologyResearch Article
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Species interactions, environmental gradients and body size shape population niche width

2021

1. Competition for shared resources is commonly assumed to restrict population-level niche width of coexisting species. However, the identity and abundance of coexisting species, the prevailing environmental conditions, and the individual body size may shape the effects of interspecific interactions on species’ niche width. 2. Here we study the effects of interspecific and intraspecific interactions, lake area and altitude, and fish body size on the trophic niche width and resource use of a generalist predator, the littoral-dwelling large, sparsely rakered morph of European whitefish (Coregonus lavaretus; hereafter LSR whitefish). We use stable isotope, diet and survey fishing data from 14 …

0106 biological sciencesvuorovaikutusniche expansionmedia_common.quotation_subjectsalmonidPopulationNicheBiology010603 evolutionary biology01 natural sciencesCompetition (biology)Intraspecific competitionravintoindividual specializationpopulaatiotkokoAnimalsBody Sizelajit14. Life underwatereducationontogeniahigh-latitude lakesRelative species abundanceEcology Evolution Behavior and Systematicsmedia_commonEnvironmental gradientTrophic levelresource competitioneducation.field_of_studyEcology010604 marine biology & hydrobiologyvesiekosysteemitInterspecific competitionekologinen lokerotrophic nicheLakesSympatryelinkiertoontogenysiikaPredatory Behaviordiet selectionAnimal Science and ZoologySalmonidaeravintoverkotJournal of Animal Ecology
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Unexpected diversity in socially synchronized rhythms of shorebirds.

2016

The behavioural rhythms of organisms are thought to be under strong selection, influenced by the rhythmicity of the environment1,2,3,4. Such behavioural rhythms are well studied in isolated individuals under laboratory conditions1,5, but free-living individuals have to temporally synchronize their activities with those of others, including potential mates, competitors, prey and predators6,7,8,9,10. Individuals can temporally segregate their daily activities (for example, prey avoiding predators, subordinates avoiding dominants) or synchronize their activities (for example, group foraging, communal defence, pairs reproducing or caring for offspring)6,7,8,9,11. The behavioural rhythms that em…

0301 basic medicineMale0106 biological sciencesPeriodicityTime FactorsZygoteBehavioural ecologyCaptivityBiológiai tudományokEvolutionary ecology01 natural sciencesSEXUAL SELECTIONNesting BehaviorPredationCharadriiformesTermészettudományokNestPHYLOGENIESIncubationSocial evolution0303 health sciencesMultidisciplinaryROLESEcologyReproductionAnimal behaviourBiological EvolutionCircadian RhythmINCUBATION PATTERNSSexual selectionGEOLOCATOR DATACrypsisFemaleCIRCADIAN-RHYTHMSCuesPhotoperiodForagingNEST PREDATIONZoologyshorebirdsContext (language use)[SDV.BID]Life Sciences [q-bio]/BiodiversityEnvironmentBiology010603 evolutionary biologyCLOCKS03 medical and health sciencesRhythmSpecies SpecificityAnimals14. Life underwaterSensory cue030304 developmental biology[ SDV.BID ] Life Sciences [q-bio]/Biodiversity[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyBIRDSFeeding BehaviorEVOLUTION030104 developmental biologyStarvationPredatory Behaviorsocially synchronized rhythmsta1181Evolutionary ecology[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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The protective value of a defensive display varies with the experience of wild predators

2019

AbstractPredation has driven the evolution of diverse adaptations for defence among prey, and one striking example is the deimatic display. While such displays can resemble, or indeed co-occur with, aposematic ‘warning’ signals, theory suggests deimatic displays may function independently of predator learning. The survival value of deimatic displays against wild predators has not been tested before. Here we used the mountain katydid Acripeza reticulata to test the efficacy of a putative deimatic display in the wild. Mountain katydids have a complex defence strategy; they are camouflaged at rest, but reveal a striking red-, blue-, and black-banded abdomen when attacked. We presented live kat…

0301 basic medicineValue (ethics)Allopatric speciationZoologylcsh:MedicineAposematismeläinten käyttäytyminenArticlePredationGryllidae03 medical and health sciences0302 clinical medicineAnimalspuolustusmekanismit (biologia)Australian magpielcsh:SciencePredatorMultidisciplinaryBehavior Animaldefensive displaybiologylcsh:RAustraliabehavioural ecologyhepokatitbiology.organism_classificationkatydids030104 developmental biologySympatric speciationPredatory BehaviorPredator attacklcsh:Q030217 neurology & neurosurgeryScientific Reports
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Trematode cercariae as prey for zooplankton: effect on fitness traits of predators.

2019

AbstractRemoval of parasite free-living stages by predators has previously been suggested an important factor controlling parasite transmission in aquatic habitats. Experimental studies of zooplankton predation on macroparasite larvae are, however, scarce. We tested whether trematode cercariae, which are often numerous in shallow waters, are suitable prey for syntopic zooplankters. Feeding rates and survival of freshwater cyclopoids (Megacyclops viridis, Macrocyclops distinctus), calanoids (Arctodiaptomus paulseni), cladocerans (Sida crystallina) and rotifers Asplanchna spp., fed with cercariae of Diplostomum pseudospathaceum, a common fish trematode, were studied. In additional long-term e…

0301 basic medicinecopepodsSnailsRotiferareproduktioPredation0302 clinical medicineeye flukerataseläimetloisetCercariaTrophic levelLarvafood webbiologyparasite transmissionplanktonvesiekosysteemit030108 mycology & parasitologyFood webDiplostomumInfectious DiseaseshankajalkaisetTrematodaArctodiaptomusFood Chain030231 tropical medicineCladoceransZoologyZooplanktonZooplanktonfreshwater ecosystemrotifersCopepodatoukat03 medical and health sciencesAnimalsAnalysis of VarianceimumadotAquatic animalbiology.organism_classificationmortalityPredatory Behaviorvesikirputta1181MacroparasiteAnimal Science and ZoologyParasitologyravintoverkotParasitology
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Effects ofBacillus thuringiensisCry1Ab and Cry3Aa endotoxins on predatory Coleoptera tested through artificial diet-incorporation bioassays

2009

AbstractTraditional approaches to studying the effects of genetically modified (GM) crops on beneficial insects involve either field assays, comparing insect population levels between control and GM crops or tritrophic bioassays with contaminated insects – usually larvae or eggs of Lepidoptera – as preys. Here, we report the results of a bioassay using an artificial diet, suitable for predatory Coleoptera, to supplyBacillus thuringiensis(Bt) solubilized Cry1Ab and Cry3Aa as well as trypsin-activated Cry1Ab toAtheta coriariaandCryptolaemus montrouzieriadults and young larvae ofAdalia bipunctata. Water, solubilization buffer and trypsin-treated solubilization buffer were used as controls. In …

Adalia bipunctataPopulationBacillus thuringiensisBiological pest controlMicrobiologyToxicologyHemolysin ProteinsBacterial ProteinsBacillus thuringiensisAnimalsBioassayBeneficial insectsCryptolaemus montrouzieriPest Control BiologicaleducationLarvaeducation.field_of_studyBacillus thuringiensis ToxinsbiologyfungiGeneral Medicinebiology.organism_classificationSurvival AnalysisDietColeopteraEndotoxinsLarvaPredatory BehaviorInsect ScienceBiological AssayAgronomy and Crop ScienceBulletin of Entomological Research
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Does predation maintain eyespot plasticity in Bicyclus anynana?

2004

The butterfly Bicyclus anynana exhibits phenotypic plasticity involving the wet-season phenotype, which possesses marginal eyespots on the ventral surface of the wings, and the dry-season form, which lacks these eyespots. We examined the adaptive value of phenotypic plasticity of B. anynana in relation to the defence mechanisms of crypsis and deflection. We assessed the visibility differences between spotless and spotted butterflies against backgrounds of brown (dry season) or green (wet season) leaves. Spotless butterflies were highly cryptic and less predated by adult bird predators than were spotted ones when presented against brown leaf litter. However, the advantage of crypsis disappea…

Adaptive valueClimateGeneral Biochemistry Genetics and Molecular BiologyPredationBirdsAnimalsWings AnimalSelection GeneticEcosystemGeneral Environmental SciencePhenotypic plasticityGeneral Immunology and MicrobiologybiologyEcologyPigmentationGeneral MedicineBicyclus anynanabiology.organism_classificationAdaptation PhysiologicalPhenotypePredatory BehaviorButterflyCrypsisEyespotBicyclusSeasonsGeneral Agricultural and Biological SciencesButterfliesResearch Article
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Comparison of the functional responses of invasive and native amphipods

2008

While we can usually understand the impacts of invasive species on recipient communities, invasion biology lacks methodologies that are potentially more predictive. Such tools should ideally be straightforward and widely applicable. Here, we explore an approach that compares the functional responses (FRs) of invader and native amphipod crustaceans. Dikerogammarus villosus is a Ponto-Caspian amphipod currently invading Europe and poised to invade North America. Compared with other amphipods that it actively replaces in freshwaters, D. villosus exhibited significantly greater predation, consuming significantly more prey with a higher type II FR. This corroborates the known dramatic field imp…

Amphipodaanimal structuresIntroduced speciesInvasive speciesPredationinvasive species[SDV.EE.ECO]Life Sciences [q-bio]/Ecology environment/Ecosystemsfunctional responseSpecies Specificity[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/Symbiosis/dk/atira/pure/subjectarea/asjc/1100AnimalsEcosystemAmphipodaEcosystemTrophic levelPopulation Density/dk/atira/pure/subjectarea/asjc/1100/1101biologyAgricultural and Biological Sciences(all)EcologyDikerogammarus villosuspredictionbiology.organism_classificationAgricultural and Biological Sciences (miscellaneous)[ SDV.EE.ECO ] Life Sciences [q-bio]/Ecology environment/EcosystemsEuropeTaxonPredatory BehaviorpredationGeneral Agricultural and Biological Sciencesamphipod[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/SymbiosisResearch Article
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The importance of pattern similarity between Müllerian mimics in predator avoidance learning

2004

Müllerian mimicry, where unpalatable prey share common warning patterns, has long fascinated evolutionary biologists. It is commonly assumed that Müllerian mimics benefit by sharing the costs of predator education, thus reducing per capita mortality, although there has been no direct test of this assumption. Here, we specifically measure the selection pressure exerted by avian predators on unpalatable prey with different degrees of visual similarity in their warning patterns. Using wild-caught birds foraging on novel patterned prey in the laboratory, we unexpectedly found that pattern similarity did not increase the speed of avoidance learning, and even dissimilar mimics shared the educatio…

AposematismBiologyGeneral Biochemistry Genetics and Molecular BiologyMüllerian mimicryPredationSongbirdsFood PreferencesSimilarity (psychology)Avoidance LearningAnimalsPredator avoidanceDiscrimination learningSelection GeneticGeneral Environmental ScienceAnalysis of VarianceCommunicationGeneral Immunology and Microbiologybusiness.industryGeneral MedicineAdaptation PhysiologicalBiological EvolutionPattern Recognition VisualPredatory BehaviorMimicryGeneral Agricultural and Biological SciencesbusinessResearch ArticleProceedings of the Royal Society of London. Series B: Biological Sciences
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Olfactory attraction of the hornet Vespa velutina to honeybee colony odors and pheromones.

2014

19 pages; International audience; Since the beginning of the last century, the number of biological invasions has continuously increased worldwide. Due to their environmental and economical consequences, invasive species are now a major concern. Social wasps are particularly efficient invaders because of their distinctive biology and behavior. Among them, the yellow-legged hornet, Vespa velutina, is a keen hunter of domestic honeybees. Its recent introduction to Europe may induce important beekeeping, pollination, and biodiversity problems. Hornets use olfactory cues for the long-range detection of food sources, in this case the location of honeybee colonies, but the exact nature of these c…

Arthropodacondition contrôléeScienceWaspsInvasive SpeciesPlant Sciencelutte par piégeageBiochemistryPheromonesGeographical LocationsLarvaeSpecies Colonization[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisAnimalsvespa velutinaPollinationperception olfactivephéromoneabeille domestique[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyMetamorphosisEcologyPlant AnatomyQEcology and Environmental SciencesROrganismsBiology and Life SciencesBiodiversityBeesInvertebratesHymenopteraprédateurInsectsEuropeSmellPlant PhysiologyPredatory BehaviorPeople and PlacesOdorantsMedicinePolleninvasion biologique[SDE.BE]Environmental Sciences/Biodiversity and EcologyHoney BeesResearch ArticleDevelopmental Biology[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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