Search results for "PREDATOR AVOIDANCE"

showing 5 items of 5 documents

Spontaneous quantity discrimination of artificial flowers by foraging honeybees

2020

ABSTRACTMany animals need to process numerical and quantity information in order to survive. Spontaneous quantity discrimination allows differentiation between two or more quantities without reinforcement or prior training on any numerical task. It is useful for assessing food resources, aggressive interactions, predator avoidance and prey choice. Honeybees have previously demonstrated landmark counting, quantity matching, use of numerical rules, quantity discrimination and arithmetic, but have not been tested for spontaneous quantity discrimination. In bees, spontaneous quantity discrimination could be useful when assessing the quantity of flowers available in a patch and thus maximizing f…

0106 biological sciencesPhysiology[SDV]Life Sciences [q-bio]ForagingSubitizingFlowersNumericAquatic Science010603 evolutionary biology01 natural sciencesPredation03 medical and health sciences0302 clinical medicineStatisticsApproximate number systemApproximate number systemAnimalsPredator avoidanceMolecular BiologyRatioEcology Evolution Behavior and SystematicsMathematicsArtificial flowerBees[SDV] Life Sciences [q-bio]Food resourcesInsect ScienceObject file systemAnimal Science and ZoologyApis mellifera030217 neurology & neurosurgery
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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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A tale of 2 signals: signal mimicry between aposematic species enhances predator avoidance learning

2010

Mullerian mimicry, where 2 or more unrelated aposematic species resemble one another, is predicted to reduce the per capita mortality of co-mimics by allowing them to share the cost of educating nao ¨ve predators about their unpalatability. However, the specific assumptions and predictions of Muller's theory of shared resemblance have been previously unsupported; some authors have suggested that the benefits of signal similarity are undetectable or at best very small. We demonstrate clearly and un- ambiguously that mimicry between 2 defended forms can provide substantial protection from uneducated predators in the manner proposed originally by Muller. By utilizing prey signals that were des…

ParusbiologyEcologyAposematismbiology.organism_classificationMüllerian mimicryPredationEvolutionary biologyAvoidance learningMimicryAnimal Science and ZoologyPredator avoidancePredatorEcology Evolution Behavior and SystematicsBehavioral Ecology
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Maternal effects in vulnerability to eye-parasites and correlations between behavior and parasitism in juvenile Arctic charr

2017

Hatchery-reared fish show high mortalities after release to the wild environment. Explanations for this include potentially predetermined genetics, behavioral, and physiological acclimation to fish farm environments, and increased vulnerability to predation and parasitism in the wild. We studied vulnerability to Diplostomum spp. parasites (load of eye flukes in the lenses), immune defense (relative spleen size) and antipredator behaviors (approaches toward predator odor, freezing, and swimming activity) in hatchery-reared juvenile Arctic charr (Salvelinus alpinus) using a nested mating design. Fish were exposed to eye-fluke larvae via the incoming water at the hatchery. Fish size was positi…

SALVELINUS-ALPINUS0106 biological sciences0301 basic medicineFish farmingsalmonidParasitismFISH INTERACTION010603 evolutionary biology01 natural sciencesParasite loadPredation03 medical and health scienceshatchery-raisedJuvenileDiplostomum eye flukes14. Life underwaterEcology Evolution Behavior and SystematicsOriginal ResearchNature and Landscape ConservationSalvelinusimmunocompetenceBROWN TROUTEcologybiologyHOST PERSONALITYEcologyhatchery‐raisedTRADE-OFFSPREDATOR AVOIDANCEMaternal effectFLUKEbiology.organism_classificationantipredation behaviorHatcheryparasite resistance030104 developmental biologyRUTILUS-RUTILUS1181 Ecology evolutionary biologyta1181IMMUNE DEFENSERESISTANCE
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The complex business of survival by aposematism.

2005

The theory of warning signals dates back to Wallace but is still confusing, controversial and complex. Because predator avoidance of warningly coloured prey (aposematism) is based upon learning and reinforcement, it is difficult to understand how initially rare conspicuous forms subsequently become common. Here, we discuss several possible resolutions to this apparent paradox. Many of these ideas have been largely ignored as a result of implicit assumptions about predator behaviour and assumed lack of variation in the predators, prey and the predation process. Considering the spatial and temporal variation in and mechanisms of behaviour of both predators and prey will make it easier to unde…

Variation (linguistics)EcologyEconomicsPredator avoidanceAposematismPredatorEcology Evolution Behavior and SystematicsCognitive psychologyPredationTrends in ecologyevolution
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