Search results for "Predator"

showing 10 items of 349 documents

Male mating success and risk of predation in a wolf spider: a balance between sexual and natural selection?

1998

1.  Traits that benefit males through sexual selection are simultaneously expected to impair males by provoking costs through natural selection. If we consider the two male fitness components, mating success and viability, then we may expect that the increase in male mating success resulting from a larger trait size will be counterbalanced by an increase in viability costs. 2.  We studied the benefits and costs of male mate searching and sexual signalling activity in the wolf spider Hygrolycosa rubrofasciata. In the field, males search females actively and court them by drumming dry leaves with their abdomen. Females have been shown to prefer males with high drumming rate. Male moving and e…

0106 biological sciencesNatural selectionbiologyEcology[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]media_common.quotation_subject05 social sciencesWolf spiderbiology.organism_classificationAffect (psychology)010603 evolutionary biology01 natural sciencesPredationSexual selection0501 psychology and cognitive sciencesAnimal Science and Zoology050102 behavioral science & comparative psychologyMatingReproductionPredatorComputingMilieux_MISCELLANEOUSEcology Evolution Behavior and Systematicsmedia_commonDemographyJournal of Animal Ecology
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Numerical response of predators to large variations of grassland vole abundance and long‐term community changes

2020

Abstract Voles can reach high densities with multiannual population fluctuations of large amplitude, and they are at the base of predator communities in Northern Eurasia and Northern America. This status places them at the heart of management conflicts wherein crop protection and health concerns are often raised against conservation issues. Here, a 20‐year survey describes the effects of large variations in grassland vole populations on the densities and the daily theoretical food intakes (TFI) of vole predators based on roadside counts. Our results show how the predator community responded to prey variations of large amplitude and how it reorganized with the increase in a dominant predator…

0106 biological sciencesNumerical responsemedia_common.quotation_subjectPopulation010603 evolutionary biology01 natural sciencesCompetition (biology)Predation03 medical and health sciencesWildlife managementeducationPredatorQH540-549.5Ecology Evolution Behavior and SystematicsOriginal Research030304 developmental biologyNature and Landscape Conservationmedia_common2. Zero hunger[SDV.EE]Life Sciences [q-bio]/Ecology environment0303 health scienceseducation.field_of_studyEcologybiologyEcology15. Life on landbiology.organism_classificationGeographyVole[SDE.BE]Environmental Sciences/Biodiversity and EcologyIntraguild predation
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Predator odor recognition and antipredatory response in fish: does the prey know the predator diel rhythm?

2007

We studied in a laboratory experiment using stream tanks if two percid prey fish, the perch (Perca fluviatilis) and the ruffe (Gymnocephalus cernuus), can recognize and respond to increased predation risk using odors of two piscivores, the pike (Esox lucius) and the burbot (Lota lota). Burbot is night-active most of the year but pike hunts predominantly visually whenever there is enough light. Perch is a common day-active prey of pike and dark-active ruffe that of burbot. We predicted that besides recognizing the predator odors, the prey species would respond more strongly to odors of the predator which share the same activity pattern. Both perch and ruffe clearly responded to both predator…

0106 biological sciencesPerchbiologyEcology010604 marine biology & hydrobiologybiology.organism_classification010603 evolutionary biology01 natural sciencesPredationFisheryPercidaePredatory fishForage fish14. Life underwaterPredatorcomputerEcology Evolution Behavior and SystematicsEsoxNature and Landscape ConservationPikecomputer.programming_languageActa Oecologica
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2019

The growing grey seal (Halichoerus grypus) population in the Baltic Sea has created conflicts with local fisheries, comparable to similar emerging problems worldwide. Adequate information on the foraging habits is a requirement for responsible management of the seal population. We investigated the applicability of available dietary assessment methods by comparing morphological analysis and DNA metabarcoding of gut contents (short-term diet; n = 129/125 seals, respectively), and tissue chemical markers i.e. fatty acid (FA) profiles of blubber and stable isotopes (SIs) of liver and muscle (mid- or long-term diet; n = 108 seals for the FA and SI markers). The methods provided complementary inf…

0106 biological sciencesPercheducation.field_of_studyMultidisciplinarybiology010604 marine biology & hydrobiologyPopulationForagingbiology.organism_classification010603 evolutionary biology01 natural sciencesFood webPredationFisheryHerringBlubber14. Life underwatereducationApex predatorPLOS ONE
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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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Risk of predation makes foragers less choosy about their food.

2017

18 pages; International audience; Animals foraging in the wild have to balance speed of decision making and accuracy of assessment of a food item's quality. If resource quality is important for maximizing fitness, then the duration of decision making may be in conflict with other crucial and time consuming tasks, such as anti-predator behaviours or competition monitoring. Individuals facing the risk of predation and/or competition should adjust the duration of decision making and, as a consequence, their level of choosiness for resources. When exposed to predation, the forager could either maintain its level of choosiness for food items but accept a reduction in the amount of food items con…

0106 biological sciencesPhysiologylcsh:MedicinePredationSocial SciencesKaplan-Meier EstimateChoice Behavior01 natural sciencesPredationCognitionMathematical and Statistical TechniquesBeetlesMedicine and Health Sciences[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisPsychologyForagingDecision-makinglcsh:Sciencemedia_common2. Zero hungerMultidisciplinaryEcologyAnimal BehaviorEcology05 social sciencesEukaryotaPlantsTrophic InteractionsInsectsCommunity EcologyPhysical SciencesSeedsStatistics (Mathematics)Research ArticleRiskOpportunity costArthropodaMovementmedia_common.quotation_subjectDecision MakingForagingBiologyResearch and Analysis Methods010603 evolutionary biologyIntraspecific competitionCompetition (biology)Food PreferencesAnimals0501 psychology and cognitive sciencesQuality (business)050102 behavioral science & comparative psychologyStatistical MethodsBehavior[ SDE.BE ] Environmental Sciences/Biodiversity and Ecologylcsh:REcology and Environmental SciencesCognitive PsychologyFood ConsumptionOrganismsBiology and Life SciencesInterspecific competitionInvertebratesFoodPredatory BehaviorCognitive Sciencelcsh:QWeeds[SDE.BE]Environmental Sciences/Biodiversity and EcologyPhysiological ProcessesZoologyMathematicsNeuroscienceGeneralized Linear ModelDemography[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Tomato trichomes are deadly hurdles limiting the establishment of Amblyseius swirskii Athias-Henriot (Acari: Phytoseiidae)

2021

[EN] Amblyseius swirskii is a predatory mite widely used for the control of very important pest species, such as whiteflies and thrips, in organic farming and conventional agriculture. However, this species cannot establish on tomato crops, probably due to the toxic effects of plant trichomes and their exudates. We evaluated tomato plants for effects on: a) A. swirskii preference mediated by plant volatiles, b) A. swirskii development, predation capacity and reproductive performance, c) the dispersal and survival of mites as affected by stem trichomes, and d) mite survival as a function of secondary metabolites secreted by tomato trichomes. The results showed that A. swirskii mites which ga…

0106 biological sciencesPhytoseiidaeH10 Pests of plantsBiological pest control01 natural sciencesPredationAcyl sugarsPepperhost plant defenseMiteBIOQUIMICA Y BIOLOGIA MOLECULARpredatory mitesAcariacyl sugars2. Zero hungerbiologyToxicityPredatory mitesfungifood and beveragestoxicitybiology.organism_classificationTrichome010602 entomologyHorticultureHost plant defenseInsect SciencePEST analysisAgronomy and Crop Science010606 plant biology & botany
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Cercarial behaviour alters the consumer functional response of three‐spined sticklebacks

2020

This is the peer reviewed version of the following article: Born-Torrijos, A., Paterson, R., van Beest, G., Vyhlídalová, T., Henriksen, E.H., Knudsen, R., Kristoffersen, R., Amundsen, P.-A. & Soldánová, M. (2021). Cercarial behaviour alters the consumer functional response of three-spined sticklebacks. Journal of Animal Ecology, 90, 978-988, which has been published in final form at https://doi.org/10.1111/1365-2656.13427. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Use of Self-Archived Versions. This article may not be enhanced, enriched or otherwise transformed into a derivative work, without express permission from Wiley or by st…

0106 biological sciencesPlagiorchisfood.ingredientPopulationFunctional responseZoologyBiology010603 evolutionary biology01 natural sciencesHost-Parasite InteractionsPredationfoodAnimalsParasite hostingEcosystem14. Life underwaterCercariaeducationPredatorEcosystemEcology Evolution Behavior and Systematicseducation.field_of_study010604 marine biology & hydrobiologyCestode InfectionsSmegmamorphaBiological dispersalAnimal Science and ZoologyTrematodaJournal of Animal Ecology
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Trophic transfer of pesticides: The fine line between predator–prey regulation and pesticide–pest regulation

2020

International audience; Understanding pesticide impacts on populations of target/non-target species and communities is a challenge to applied ecology. When predators that otherwise regulate pest densities ingest prey contaminated with pesticides, this can suppress predator populations by secondary poisoning. It is, however, unknown how species relationships and protocols of treatments (e.g. anticoagulant rodenticide [AR]) interact to affect pest regulation.To tackle this issue, we modelled a heuristic non-spatialized system including montane water voles, specialist vole predators (stoats, weasels) and a generalist predator (red fox) which consumes voles, mustelids and other prey. By carryin…

0106 biological sciencesPopulation010603 evolutionary biology01 natural sciencesPredationsensitivity analysisSecondary poisoningecological controlEcosystemeducationPredatorTrophic level2. Zero hungereducation.field_of_studyEcologybiologyEcology010604 marine biology & hydrobiologypesticides15. Life on landPesticidebiology.organism_classificationcyclic fluctuationssecondary poisoningecosystem service13. Climate actionVolebiodiversity conservation[SDV.TOX.ECO]Life Sciences [q-bio]/Toxicology/Ecotoxicologycascade effectsJournal of Applied Ecology
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Conservation implications of change in antipredator behavior in fragmented habitat: Boreal rodent, the bank vole, as an experimental model

2015

Abstract Habitat fragmentation is known to cause population declines but the mechanisms leading to the decline are not fully understood. Fragmentation is likely to lead to changes in predation risk, which may cause behavioral responses with possible population level consequences. It has recently been shown that the awareness of predator presence, resulting in a fear response, strongly affects behavior and physiology of the prey individuals. Costs arising from fear may be as important for the prey population size as the direct killing of prey. We tested how predation risk in the form of scent of a specialist predator, the least weasel (Mustela nivalis nivalis), affects bank vole (Myodes glar…

0106 biological sciencesPopulationMyodes = Clethrionomys glareolus010603 evolutionary biology01 natural sciencesPredationindirect predationeducationpredator prey interactionEcology Evolution Behavior and SystematicsNature and Landscape Conservationeducation.field_of_studyHabitat fragmentationbiologyEcologyPopulation sizebreeding suppression15. Life on landbiology.organism_classification010601 ecologyBank volePopulation declineHabitatta1181fearVoleBiological Conservation
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