Search results for "Predator"

showing 10 items of 349 documents

Summer time predation on the obligatory off-host stage of an invasive ectoparasite

2016

SUMMARYPredation can regulate populations and strongly affect invasion success of novel prey. The deer ked (Lipoptena cervi; Linnaeus 1758) is an invasive ectoparasite of cervids that spends a long period of its life cycle outside the host. Prior to this study, virtually nothing was known about natural summer time predation on the deer ked. We aimed to evaluate the magnitude of summer time predation onL. cervipupae in different habitats and to identify potential predators. We conducted a set of field experiments, where we exposedL. cervipupae to various ground-dwelling vertebrate and invertebrate predators. The loss of pupae was monitored for different predator guilds. Three habitats of the…

0106 biological sciencespredatorsummer survivalEctoparasitic Infestations010603 evolutionary biology01 natural sciencesPredationectoparasitismpopulation regulationEctoparasitismHeath forestAnimalsHippoboscidaePredatorCervidaebiologyAntsHippoboscidaeEcologyDeerDipteraLizardsSpiders15. Life on landbiology.organism_classificationPupa010602 entomologyInfectious DiseasesHabitatLipoptena cerviPredatory Behaviorta1181pupaAnimal Science and ZoologyParasitologySeasonsParasitology
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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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Geographic mosaic of selection by avian predators on hindwing warning colour in a polymorphic aposematic moth

2020

AbstractWarning signals are predicted to develop signal monomorphism via positive frequency-dependent selection (+FDS) albeit many aposematic systems exhibit signal polymorphism. To understand this mismatch, we conducted a large-scale predation experiment in four locations, among which the frequencies of hindwing warning coloration of aposematic Arctia plantaginis differ. Here we show that selection by avian predators on warning colour is predicted by local morph frequency and predator community composition. We found +FDS to be strongest in monomorphic Scotland, and in contrast, lowest in polymorphic Finland, where different predators favour different male morphs. +FDS was also found in Geo…

0106 biological sciencespredatorspredator-prey interactionsFrequency-dependent selectionFREQUENCY-DEPENDENT SELECTIONDIVERSITYMoths01 natural sciencesMüllerian mimicrytäpläsiilikäsPredationmuuntelu (biologia)Arctia plantaginisPredatorFinland0303 health sciencesMonomorphismsaaliseläimetluonnonvalintaEcologywood tiger mothVARIABLE SELECTIONDIFFERENTIATIONPOISON FROG1181 Ecology evolutionary biologyMULLERIAN MIMICRYvaroitusväriColorZoologyAposematismBiology010603 evolutionary biologyBirds03 medical and health sciencesArctia plantaginisAposematismPARASEMIAcolour polymorphismpetoeläimetAnimalsaposematismfrequency‐dependent selectionEcology Evolution Behavior and SystematicsSelection (genetic algorithm)030304 developmental biologysignal variationsignal convergence010604 marine biology & hydrobiologypredator–prey interactionsEVOLUTIONSIGNALScotlandCommunity compositionPredatory Behavior
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European catfish (Silurus glanis) as a freshwater apex predator drives ecosystem via its diet adaptability

2017

AbstractApex predators play a key role in ecosystem stability across environments but their numbers in general are decreasing. By contrast, European catfish (Silurus glanis), the European freshwater apex predator, is on the increase. However, studies concerning apex predators in freshwaters are scarce in comparison to those in terrestrial and marine ecosystems. The present study combines stomach content and stable isotope analyses with diet preferences of catfish to reveal its impact on the ecosystem since stocking. Catfish niche width is extremely wide in comparison to the typical model predator, Northern pike (Esox lucius). Catfish and pike have different individual dietary specialization…

0106 biological sciencespredatory fishes:Zoology and botany: 480 [VDP]lcsh:MedicineFresh Water01 natural sciencesPredationFood chainBiomasslcsh:ScienceCatfishesApex predatorBiomass (ecology)education.field_of_studyCarbon IsotopesMultidisciplinaryEcologyStomachvesiekosysteemitSilurus glanisAdaptation PhysiologicalSeasonsCatfishanimal structuresFood Chainfood chainsPopulationBiology010603 evolutionary biologyArticleFood PreferencesAnimalsEcosystemMarine ecosystem14. Life underwatereducation:Zoologiske og botaniske fag: 480 [VDP]ravintoketjutEcosystemaquatic ecosystemsNitrogen Isotopes010604 marine biology & hydrobiologylcsh:Rfungiapex predatorDietLakesPredatory BehaviorEsocidaelcsh:QpetokalatmonniScientific Reports
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Competition between marine mammals and fisheries in contemporary harvested marine ecosystems

2019

Competitive interactions between marine mammals and fisheries represent some of the most complex challenges in marine resource management worldwide. The development of commercial fisheries and recovering marine mammal populations have contributed to a decrease in fish availability. Whilst ecosystem-based fisheries management (EBFM) can counteract this decrease, achieving the EBFM objectives faces certain major obstacles including insufficient or unreliable data, inapplicable assessment models, as well as inadequate management decisions that do not account for fisheries-induced morphological alterations (FIMA) and marine mammal management. Despite a body of evidence addressing various aspect…

0106 biological sciencesprey-predator dynamicsmedia_common.quotation_subjectFisheriesmerikalastusFisheries-inducedAquatic ScienceEcosystem-based managementResource competition010603 evolutionary biology01 natural sciencesCompetition (biology)modelsPrey−predator dynamicsCentro Oceanográfico de Vigokalakantojen hoitopetoeläimetresource managementMarine ecosystemPinniped14. Life underwaterMedio Marinomarine mammalsEcology Evolution Behavior and Systematicsmedia_commonvalaatfishhylkeetEcologykalakannat010604 marine biology & hydrobiologyvesiekosysteemitCetaceanEcosystem-based managementFisherykalatalousGeography13. Climate actionkalavarat1181 Ecology evolutionary biologycompetitionMarine Ecology Progress Series
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Antipredator strategies of pupae: how to avoid predation in an immobile life stage?

2019

Antipredator strategies of the pupal stage in insects have received little attention in comparison to larval or adult stages. This is despite the fact that predation risk can be high during the pupal stage, making it a critical stage for subsequent fitness. The immobile pupae are not, however, defenceless; a wide range of antipredator strategies have evolved against invertebrate and vertebrate predators. The most common strategy seems to be ‘avoiding encounters with predators' by actively hiding in vegetation and soil or via cryptic coloration and masquerade. Pupae have also evolved behavioural and secondary defences such as defensive toxins, physical defences or deimatic movements and soun…

0106 biological sciencespupal defencesuojautuminenFood ChainInsectaZoologyBiologyEnvironment010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyPredation03 medical and health sciencestoukatAnimalsprotective colorationpuolustusmekanismit (biologia)Selection Genetic030304 developmental biologysuojaväri0303 health sciencesLarvasaaliseläimetchemical defencephysical defencefungiPupapredator–prey interactionsArticlesLife stagePupahyönteisetGeneral Agricultural and Biological SciencesPhilosophical transactions of the Royal Society of London. Series B, Biological sciences
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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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Out in the open : behavior’s effect on predation risk and thermoregulation by aposematic caterpillars

2020

Abstract Warning coloration should be under strong stabilizing selection but often displays considerable intraspecific variation. Opposing selection on color by predators and temperature is one potential explanation for this seeming paradox. Despite the importance of behavior for both predator avoidance and thermoregulation, its role in mediating selection by predators and temperature on warning coloration has received little attention. Wood tiger moth caterpillars, Arctia plantaginis, have aposematic coloration, an orange patch on the black body. The size of the orange patch varies considerably: individuals with larger patches are safer from predators, but having a small patch is beneficia…

0106 biological sciencesvaroitusväriZoologyAposematismBiology010603 evolutionary biology01 natural scienceseläinten käyttäytyminenIntraspecific competitiontäpläsiilikäsPredation03 medical and health sciencesParus majoraposematismStabilizing selectionCaterpillarArctia plantaginisPredatorEcology Evolution Behavior and Systematicslämmönsäätely030304 developmental biologyParus0303 health sciencesthermoregulationAcademicSubjects/SCI01330Original Articlestalitiainen15. Life on landThermoregulationbiology.organism_classificationmicrohabitat preferencesaalistuscolorAnimal Science and Zoology
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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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