Search results for "Predator"

showing 10 items of 349 documents

Arctic avian predators synchronise their spring migration with the northern progression of snowmelt

2020

AbstractMigratory species display a range of migration patterns between irruptive (facultative) to regular (obligate), as a response to different predictability of resources. In the Arctic, snow directly influences resource availability. The causes and consequences of different migration patterns of migratory species as a response to the snow conditions remains however unexplored. Birds migrating to the Arctic are expected to follow the spring snowmelt to optimise their arrival time and select for snow-free areas to maximise prey encounter en-route. Based on large-scale movement data, we compared the migration patterns of three top predator species of the tundra in relation to the spatio-te…

0106 biological sciencesRange (biology)Behavioural ecologyVDP::Zoologiske og botaniske fag: 480Population Dynamicslcsh:Medicine:Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480 [VDP]Animal migration010603 evolutionary biology01 natural sciencesModels BiologicalPredationbiology.animalddc:570AnimalsDynamik der Landoberflächelcsh:ScienceFalconiformesApex predatorEcological modellingMultidisciplinarybiologyEcologyArctic Regions010604 marine biology & hydrobiologyClimate-change ecologylcsh:RBoreal ecologySnowTundraBuzzardGeographyArcticSnowmeltVDP::Zoology and botany: 480lcsh:QSeasons
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Evolutionary significance of antiparasite, antipredator and learning phenotypes of avian nest defence.

2018

AbstractAvian nest defence, which is expected to serve both antiparasite and antipredator functions, may benefit or be detrimental to birds, although selective forces that potentially operate on nest defence have not been quantified as a whole. Together with fitness values, we analysed two traits of nest defence, intensity and plasticity, in two distantly related passerine species, yellow warbler (Setophaga petechia) in North America and reed warbler (Acrocephalus scirpaceus) in Europe, both favourite host species for brood parasites. Breeders that escaped parasitism were the most vocal among reed warblers, whereas there was no specific defence phenotype that predicted prevention of parasit…

0106 biological sciencesSettore BIO/05 - Zoologialcsh:MedicineParasitismZoology010603 evolutionary biology01 natural sciencesArticleWarblerPredationNesting BehaviorSongbirdsNestbiology.animalAcrocephalusAnimalsLearning0501 psychology and cognitive sciences050102 behavioral science & comparative psychologylcsh:ScienceDefense MechanismsBrood parasiteMultidisciplinarybiologyReproductive successReproductionlcsh:R05 social sciencesbiology.organism_classificationBiological EvolutionPasserineparasitism coevolution behaviourPhenotypePredatory Behaviorlcsh:QScientific reports
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Ocean acidification does not impair predator recognition but increases juvenile growth in a temperate wrasse off CO2seeps

2017

8 pages, 4 figures, supplementary data https://doi.org/10.1016/j.marenvres.2017.10.013

0106 biological sciencesSettore BIO/07 - EcologiaCO2 ventsCO2ventEffects-fishAquatic ScienceOceanography010603 evolutionary biology01 natural sciencesPredationStress PhysiologicalmedicineMediterranean SeaJuvenileSeawaterPerciformePredatorGlobal changeOtolithRisk assessmentSymphodus ocellatusSettlementbiologyEcologypHAnimalSymphodus ocellatus010604 marine biology & hydrobiologyOcean acidificationGeneral MedicineJuvenile fishCarbon DioxideHydrogen-Ion Concentrationbiology.organism_classificationPollutionmedicine.anatomical_structureCarbon dioxideWrassePredatory BehaviorSymphodus ocellatuEnvironmental Monitoring
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Seasonal variability of diet and trophic level of the gelatinous predator Pelagia noctiluca (Scyphozoa)

2018

13 pages, 5 figures, 2 tables, supplementary information https://doi.org/10.1038/s41598-018-30474-x

0106 biological sciencesSettore BIO/07 - EcologiaJellyfishFood ChainScyphozoaZoologylcsh:Medicine010603 evolutionary biology01 natural sciencesArticleZooplanktonPredationbiology.animalMediterranean SeaAnimals14. Life underwaterBites and StingsGonadslcsh:SciencePredatorTrophic levelCarbon IsotopesDetritusMultidisciplinarybiologyNitrogen Isotopes010604 marine biology & hydrobiologyFatty Acidslcsh:RScyphozoa15. Life on landPlanktonbiology.organism_classificationPelagia noctilucajellyfish stomach content stable isotope fatty acid food habit outbreak-forming speciesGastrointestinal Contents13. Climate actionPredatory Behaviorlcsh:QSeasonsBiomarkersScientific Reports
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Non-consumptive effects between predators depend on the foraging mode of intraguild prey.

2020

Predator non-consumptive effects (NCE) are a suite of phenotypic responses of prey to avoid predation that cascade down food webs and can have a stronger impact than predation itself. However, the role of NCE in intraguild interactions remains understudied. Thus, multi-species experiments based on species traits are needed to improve our understanding of the impact of NCE on community structure. We investigated NCE of ants on 17 spider species as intraguild prey (8 cursorial and 9 sedentary) to test the influence of spider hunting mode on the strength of NCE. Sedentary spiders select a habitat patch and wait for prey, whereas cursorial spiders roam around searching for prey. Because activel…

0106 biological sciencesSpiderFood ChainEcologyAnts010604 marine biology & hydrobiologyLasiusForagingSpidersBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesCursorialPredationHabitatBlack garden antPredatory BehaviorAnimalsAnimal Science and ZoologyPredatorEcology Evolution Behavior and SystematicsEcosystemThe Journal of animal ecologyREFERENCES
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Integrative taxonomy demonstrates the unexpected synonymy between two predatory mite species: Cydnodromus idaeus and C. picanus (Acari: Phytoseiidae)

2011

Contact: tixier@supagro.inra.fr; Species of the mite family Phytoseiidae are well known as predators of mite pests all over the world. Their identification is thus of great interest for biological control. The specimens examined in this study belong to the species Cydnodromus idaeus (described from Brazil) and C. picanus (described from Chile). They were collected together on the same plant in Argentina. These species are mainly differentiated by the presence/absence of the dorsal solenostomes (gland openings) gd2. Some morphometric differences were observed between the Argentinian specimens and the type material of C. idaeus and C. picanus; however, they were not sufficient to support a sp…

0106 biological sciencesSystematicsPhytoseiidaepredatorSystematic Entomologytaxonomie[SDV]Life Sciences [q-bio]Zoologysolenostome  lutte biologiquePhyloCode010603 evolutionary biology01 natural sciencesLepidoptera genitaliataxonomymorphologyAcariamérique du sudEcology Evolution Behavior and Systematicsbrésilbiologyargentinesolenostomes dorsalesGENETIQUEbiology.organism_classificationprédateurCladistics12S rRNA CytB mtDNA ITS morphology solenostome010602 entomologySettore AGR/11 - Entomologia Generale E Applicata12S rRNATaxonomy (biology)varroaITSCytB mtDNAacarien
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Egg parasitoid exploitation of plant volatiles induced by single or concurrent attack of a zoophytophagous predator and an invasive phytophagous pest

2019

AbstractZoophytophagous insect predators can induce physiological responses in plants by activating defence signalling pathways, but whether plants can respond to facultative phytophagy by recruiting natural enemies remains to be investigated. In Y-tube olfactometer bioassays, using a system including a Vicia faba plant, the zoophytophagous predator Podisus maculiventris and the egg parasitoid Telenomus podisi, we first demonstrated that T. podisi females are attracted by broad bean plants damaged by feeding activity of P. maculiventris and on which host egg masses had been laid, while they are not attracted by undamaged plants or plants damaged by feeding activity alone. In a second experi…

0106 biological sciencesTelenomus podisi Podisus maculiventris Halyomorpha halys indirect plant defences concurrent infestationslcsh:MedicineZoology010603 evolutionary biology01 natural sciencesArticlePredationParasitoidHeteropteraAnimalslcsh:ScienceSemiochemicalPredatorVolatile Organic CompoundsMultidisciplinaryInvasive speciesbiologyHost (biology)lcsh:Rfungifood and beveragesbiology.organism_classificationHymenopteraVicia faba010602 entomologyOlfactometerTelenomus podisilcsh:QPEST analysisAgroecologyScientific Reports
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Trans-equatorial migration routes, staging sites and wintering areas of a High-Arctic avian predator: the Long-tailed Skua (Stercorarius longicaudus).

2013

The Long-tailed Skua, a small (,300 g) Arctic-breeding predator and seabird, is a functionally very important component of the Arctic vertebrate communities in summer, but little is known about its migration and winter distribution. We used lightlevel geolocators to track the annual movements of eight adult birds breeding in north-east Greenland (n = 3) and Svalbard (n = 5). All birds wintered in the Southern Hemisphere (mean arrival-departure dates on wintering grounds: 24 October-21 March): five along the south-west coast of Africa (0–40uS, 0–15uE), in the productive Benguela upwelling, and three further south (30–40uS, 0–50uE), in an area extending into the south-west Indian Ocean. Diffe…

0106 biological sciencesTime FactorsGreenlandlcsh:MedicinehabitatBreeding01 natural sciencesSkuaSvalbardMarine ConservationStercorarius longicaudusOrnithologyFlywayOceansmovementsnorth-atlanticlcsh:ScienceAtlantic Oceanatlantic-ocean[SDV.EE]Life Sciences [q-bio]/Ecology environmentMultidisciplinarygeography.geographical_feature_categoryEcologyAnimal BehaviorbiologyArctic RegionsEcologyMarine EcologydynamicstrackingGeographygeolocationBiogeographyclimate-changeSeasonsSeabirdrevealspelagic seabird;atlantic-ocean;north-atlantic;climate-change;tracking;dynamics;geolocation;movements;reveals;habitatResearch Articlepelagic seabirdMarine Biology010603 evolutionary biology[ SDV.EE ] Life Sciences [q-bio]/Ecology environmentBirdsbiology.animalAnimals14. Life underwaterBiologySouthern Hemisphere[ SDE.BE ] Environmental Sciences/Biodiversity and Ecology010604 marine biology & hydrobiologylcsh:Rbiology.organism_classificationMarine and aquatic sciencesFisheryEarth sciencesArcticPredatory BehaviorUpwellingAnimal Migrationlcsh:Q[SDE.BE]Environmental Sciences/Biodiversity and EcologyOceanic basinZoology
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A modified niche model for generating food webs with stage‐structured consumers: The stabilizing effects of life‐history stages on complex food webs

2021

Abstract Almost all organisms grow in size during their lifetime and switch diets, trophic positions, and interacting partners as they grow. Such ontogenetic development introduces life‐history stages and flows of biomass between the stages through growth and reproduction. However, current research on complex food webs rarely considers life‐history stages. The few previously proposed methods do not take full advantage of the existing food web structural models that can produce realistic food web topologies.We extended the niche model developed by Williams and Martinez (Nature, 2000, 404, 180–183) to generate food webs that included trophic species with a life‐history stage structure. Our me…

0106 biological sciencesTrophic specieseducationPopulationNicheBiology010603 evolutionary biology01 natural sciencespredator–prey interactionlife‐history stage03 medical and health sciencesontogenetic shifteducationQH540-549.5Ecology Evolution Behavior and SystematicsOriginal Researchmultilayer network030304 developmental biologyNature and Landscape ConservationTrophic level0303 health scienceseducation.field_of_studyBiomass (ecology)EcologyEcologydigestive oral and skin physiologyFood webcommunity dynamicsLife History StagesAllometryallometric trophic networkEcology and Evolution
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Spatial distribution ofVespa velutinaindividuals hunting at domestic honeybee hives: heterogeneity at a local scale

2014

Since its recent introduction into Europe, the yellow-legged hornet, Vespa velutina, has become a major predator of the domestic honeybee, Apis mellifera, but little is known about its hunting behavior. We studied V. velutina hunting behavior by a capture-mark-recapture procedure in an experimental apiary. A total of 360 hornets were captured and tagged, and we determined: (i) the number of hornets visiting the apiary and the changes in time, (ii) the average number of individual visits per half-day and the time elapsed between consecutive recaptures, and (iii) the individual and global distribution of the hornets in the apiary. More than 50% of the marked hornets were recaptured at least o…

0106 biological sciencesVespa velutinaApiaryVespidaeEcologyVelutinaLocal scaleZoologyBiologySpatial distributionbiology.organism_classification010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyPredation010602 entomologyInsect ScienceAgronomy and Crop SciencePredatorEcology Evolution Behavior and SystematicsInsect Science
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