Search results for " foraging"

showing 10 items of 39 documents

Diurnal timing of nonmigratory movement by birds: the importance of foraging spatial scales

2020

Timing of activity can reveal an organism's efforts to optimize foraging either by minimizing energy loss through passive movement or by maximizing energetic gain through foraging. Here, we assess whether signals of either of these strategies are detectable in the timing of activity of daily, local movements by birds. We compare the similarities of timing of movement activity among species using six temporal variables: start of activity relative to sunrise, end of activity relative to sunset, relative speed at midday, number of movement bouts, bout duration and proportion of active daytime hours. We test for the influence of flight mode and foraging habitat on the timing of movement activit…

0106 biological sciencesDaytimeflight modetemporalForagingZoologyBiologySunsetTemporalnonmigratory01 natural sciences010605 ornithologyforagingMovement ecologyflight mode foraging movement ecology multispecies nonmigratory temporalddc:570SunriseNonmigratoryZoologíaDaylightForagingEcology Evolution Behavior and SystematicsFlight modeMovement (music)MultispeciesPelagic zoneDidáctica de las Ciencias ExperimentalesmultispeciesHabitatmovement ecologyAnimal Science and ZoologyEnvironmental Sciences
researchProduct

A new algorithm for the identification of dives reveals the foraging ecology of a shallow-diving seabird using accelerometer data

2017

International audience; The identification of feeding events is crucial to our understanding of the foraging ecology of seabirds. Technology has made small devices, such as time-depth recorders (TDRs) and accelerometers available. However, TDRs might not be sensitive enough to identify shallow dives, whereas accelerometers might reveal more subtle behaviours at a smaller temporal scale. Due to the limitations of TDRs, the foraging ecology of many shallow-diving seabirds has been poorly investigated to date. We thus developed an algorithm to identify dive events in a shallow-diving seabird species, the Scopoli’s shearwater, using only accelerometer data. The accuracy in the identification of…

0106 biological sciencesEcologybiologyEcology010604 marine biology & hydrobiologyEcology (disciplines)ForagingAquatic Sciencebiology.organism_classification010603 evolutionary biology01 natural sciencesShearwaterCalonectris diomedea foraging divingSettore AGR/11 - Entomologia Generale E Applicatabiology.animal[SDE]Environmental Sciences14. Life underwaterAccelerometer dataSeabirdAlgorithmEcology Evolution Behavior and Systematics
researchProduct

Hyperparasitoids exploit herbivore-induced plant volatiles during host location to assess host quality and non-host identity

2019

Although consumers often rely on chemical information to optimize their foraging strategies, it is poorly understood how top carnivores above the third trophic level find resources in heterogeneous environments. Hyperparasitoids are a common group of organisms in the fourth trophic level that lay their eggs in or on the body of other parasitoid hosts. Such top carnivores use herbivore-induced plant volatiles (HIPVs) to find caterpillars containing parasitoid host larvae. Hyperparasitoids forage in complex environments where hosts of different quality may be present alongside non-host parasitoid species, each of which can develop in multiple herbivore species. Because both the identity of th…

0106 biological sciencesFood ChainSDG 16 - PeaceForagingWaspsContext (language use)010603 evolutionary biology01 natural sciencesMultitrophic interactionParasitoidPlant-Microbe-Animal Interactions–Original ResearchHost-Parasite InteractionsHyperparasitoid foraging behaviorFourth trophic level organismsMultitrophic interactionsFourth trophic level organismButterflieAnimalsNon-host parasitoid specieHerbivoryLaboratory of EntomologyEcology Evolution Behavior and SystematicsTrophic levelPieris brassicaeHerbivorebiologyHost (biology)EcologyAnimal010604 marine biology & hydrobiologySDG 16 - Peace Justice and Strong InstitutionsnationalHost-Parasite Interactionbiology.organism_classificationCotesia glomerataPE&RCLaboratorium voor Entomologie/dk/atira/pure/sustainabledevelopmentgoals/peace_justice_and_strong_institutionsJustice and Strong InstitutionsPlant-based food webLarvaEPSButterfliesNon-host parasitoid speciesOecologia
researchProduct

Symmetry breaking in mass-recruiting ants: extent of foraging biases depends on resource quality.

2016

Abstract The communication involved in the foraging behaviour of social insects is integral to their success. Many ant species use trail pheromones to make decisions about where to forage. The strong positive feedback caused by the trail pheromone is thought to create a decision between two or more options. When the two options are of identical quality, this is known as symmetry breaking, and is important because it helps colonies to monopolise food sources in a competitive environment. Symmetry breaking is thought to increase with the quantity of pheromone deposited by ants, but empirical studies exploring the factors affecting symmetry breaking are limited. Here, we tested if (i) greater …

0106 biological sciencesForage (honey bee)media_common.quotation_subjectForagingColony organisationMonomorium pharaonisTrail pheromone010603 evolutionary biology01 natural sciencesMicroeconomicsColony organisation; Foraging; Monomorium pharaonis; Symmetry breaking; Trail pheromones0501 psychology and cognitive sciencesQuality (business)050102 behavioral science & comparative psychologyForagingEcology Evolution Behavior and Systematicsmedia_commonbiologyEcology05 social sciencesSymmetry breakingbiology.organism_classificationTrail pheromonesAnimal ecologyPharaoh antOriginal ArticleAnimal Science and ZoologyFood qualityMonomorium
researchProduct

Exploiting chemical ecology to manage hyperparasitoids in biological control of arthropod pests

2020

Abstract Insect hyperparasitoids are fourth trophic level organisms that commonly occur in terrestrial food webs, yet they are relatively understudied. These top‐carnivores can disrupt biological pest control by suppressing the populations of their parasitoid hosts, leading to pest outbreaks, especially in confined environments such as greenhouses where augmentative biological control is used. There is no effective eco‐friendly strategy that can be used to control hyperparasitoids. Recent advances in the chemical ecology of hyperparasitoid foraging behavior have opened opportunities for manipulating these top‐carnivores in such a way that biological pest control becomes more efficient. We p…

0106 biological sciencesIntegrated pest managementBiological pest controlReview01 natural sciencespush-pullhyperparasitoid foraginginfochemical-based strategieLaboratory of Entomology/dk/atira/pure/sustainabledevelopmentgoals/industry_innovation_and_infrastructureinfochemical‐based strategiesTrophic levelEcologyPlan_S-Compliant-TAParasietenEnvironmental resource managementherbivore‐induced plant volatilespush‐pullGeneral MedicineChemical ecologyfourth trophic level organismherbivore-induced plant volatileinternationalSDG 9 - IndustryFood ChainForagingDuurzame gewasbeschermingEarly detectionmultitrophic interactionsBiologyHost-Parasite InteractionsGeleedpotigenAnimalsmultitrophic interactionfourth trophic level organismsInnovationPest Control BiologicalArthropodsbusiness.industryherbivore-induced plant volatilesLaboratorium voor Entomologiebiology.organism_classification010602 entomologyInsect Scienceand InfrastructureSDG 9 - Industry Innovation and InfrastructurePEST analysisArthropodEPSinfochemical-based strategiesbusinessAgronomy and Crop Science010606 plant biology & botanyPest Management Science
researchProduct

Skylarks trade size and energy content in weed seeds to maximize total ingested lipid biomass

2014

International audience; tThe trade-off between forage quality and quantity has been particularly studied in herbivore organisms,but much less for seed eating animals, in particular seed-eating birds which constitute the bulk of win-tering passerines in European farmlands. The skylark is one of the commonest farmland birds in winter,mainly feeding on seeds. We focus on weed seeds for conservation and management purposes. Weedseeds form the bulk of the diet of skylarks during winter period, and although this is still a matter fordiscussion, weed seed predation by granivorous has been suggested as an alternative to herbicides usedto regulate weed populations in arable crops. Our objectives wer…

0106 biological sciencesMaleTrade-offsCoatForagingBiology010603 evolutionary biology01 natural sciencesOptimal foraging theoryBehavioral NeuroscienceAnimalsPasseriformesOptimal foraging2. Zero hungerHerbivore010604 marine biology & hydrobiologyfood and beveragesGeneral MedicineFeeding Behavior15. Life on landSeed sizeLipidsWeedSkylarkSeed dispersal syndromeAgronomySeed predationSeeds[SDE]Environmental SciencesAnimal Science and ZoologyFemaleLipid contentArable landWeed
researchProduct

Testing the habituation assumption underlying models of parasitoid foraging behavior

2016

BackgroundHabituation, a form of non-associative learning, has several well-defined characteristics that apply to a wide range of physiological and behavioral responses in many organisms. In classic patch time allocation models, habituation is considered to be a major mechanistic component of parasitoid behavioral strategies. However, parasitoid behavioral responses to host cues have not previously been tested for the known, specific characteristics of habituation.MethodsIn the laboratory, we tested whether the foraging behavior of the egg parasitoidTrissolcus basalisshows specific characteristics of habituation in response to consecutive encounters with patches of host (Nezara viridula) ch…

0106 biological sciencesTime allocationForaginglcsh:MedicineOptimal foraging theorySensory systemBiology010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyOptimal foraging theoryParasitoidHabituation; Infochemical cues; Learning; Optimal foraging theory; Patch exploitation; Neuroscience (all); Medicine (all); Biochemistry Genetics and Molecular Biology (all); Agricultural and Biological Sciences (all)03 medical and health sciences0302 clinical medicineLearningHabituationLaboratory of EntomologyNeuroscience (all)Biochemistry Genetics and Molecular Biology (all)Animal BehaviorEcologyHost (biology)Ecology017-4018General NeuroscienceMedicine (all)lcsh:RfungiGeneral Medicinebiology.organism_classificationLaboratorium voor EntomologieInfochemical cuesBehavioral responseSettore AGR/11 - Entomologia Generale E ApplicataAgricultural and Biological Sciences (all)Infochemical cueHabituationEPSGeneral Agricultural and Biological SciencesNeuroscienceEntomologyPatch exploitation030217 neurology & neurosurgeryPeerJ
researchProduct

The response of an egg parasitoid to substrate-borne semiochemicals is affected by previous experience

2016

AbstractAnimals can adjust their behaviour according to previous experience gained during foraging. In parasitoids, experience plays a key role in host location, a hierarchical process in which air-borne and substrate-borne semiochemicals are used to find hosts. In nature, chemical traces deposited by herbivore hosts when walking on the plant are adsorbed by leaf surfaces and perceived as substrate-borne semiochemicals by parasitoids. Chemical traces left on cabbage leaves by adults of the harlequin bug (Murgantia histrionica) induce an innate arrestment response in the egg parasitoid Trissolcus brochymenae characterized by an intense searching behaviour on host-contaminated areas. Here we …

0106 biological sciencesTrissolcus basalisLong-Term-Memory; Nezara viridula; Searching Efficiency; Trissolcus basalis; Foraging Behavior; Infochemical Use; Natural enemiesMaleOvipositionForagingNatural enemiesWaspsBrassicaBiology010603 evolutionary biology01 natural sciencesArticlePheromonesParasitoidHost-Parasite InteractionsTRISSOLCUS BASALISHeteropteraRewardAnimalsLong-Term-MemoryNatural enemiesHerbivoryLaboratory of EntomologyHerbivoreAppetitive BehaviorSex CharacteristicsMultidisciplinaryLONG-TERM-MEMORY NEZARA VIRIDULA SEARCHING EFFICIENCY TRISSOLCUS BASALIS FORAGING BEHAVIOR INFOCHEMICAL USE NATURAL ENEMIESEcology017-4017fungiNezara viridulaTrissolcus basaliForaging Behaviorbiology.organism_classificationLaboratorium voor EntomologieSearching EfficiencyPlant Leaves010602 entomologySettore AGR/11 - Entomologia Generale E ApplicataNezara viridulaInfochemical UseFemaleScientific Reports
researchProduct

The invasive stink bug Halyomorpha halys affects the reproductive success and the experience-mediated behavioural responses of the egg parasitoid Tri…

2021

Invasive species, because of their lack of co-evolutionary history with recipient communities, can act as “evolutionary traps” causing disconnects between natural enemy behavioural responses and the suitability of the invasive species as a prey/host resource. Invasion of exotic species in non-native environments may have several ecological effects, including consequences for the experience-mediated behavioural responses of indigenous foragers. Experience is usually thought to help resident species to buffer against negative impacts of new invasive species, including escaping from evolutionary traps. Here we hypothesized that the impact of foraging experience depends on whether an indigenous…

0106 biological sciencesbiologyReproductive successfungiForagingParasitoid fitneZoologyIntroduced species15. Life on landbiology.organism_classification010603 evolutionary biology01 natural sciencesHost-parasitoid interactionParasitoid foraging behaviourParasitoidPredation010602 entomologyNezara viridulaEvolutionary trapAnimal ecologyInsect ScienceEvolutionary trapAgronomy and Crop Science
researchProduct

Personality affects zebra finch feeding success in a producer-scrounger game.

2011

7 pages; International audience; Recent evidence strongly suggests that natural selection can favour the evolution of consistent individual differences in behaviour ('personalities'). Indeed, personality shows heritable variation and has been linked to fitness in many species. However, the fitness effects of personality are highly variable within and between species. Furthermore, the nature of the causal influence of personality on an organism's fitness remains unclear so far. Competition has been proposed as a factor modulating this relationship. Thus, personality has been found to affect individual success in competition by interference in a few species, but its influence in scramble comp…

0106 biological sciencesmedia_common.quotation_subjectAffect (psychology)Personality psychologyexploration010603 evolutionary biology01 natural sciencesCompetition (biology)Developmental psychologybehavioural syndrome[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisPersonality0501 psychology and cognitive sciences050102 behavioral science & comparative psychologyZebra finchTaeniopygia guttataEcology Evolution Behavior and Systematicsmedia_common[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyNatural selectionscrounger tacticspeed-accuracy trade-off05 social scienceszebra finchinformation useSocial relationAnimal Science and Zoology[SDE.BE]Environmental Sciences/Biodiversity and EcologyPsychologyScramble competitionSocial psychologycompetitionsocial foraging[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
researchProduct