Search results for "dati"

showing 10 items of 8549 documents

Predation on Multiple Trophic Levels Shapes the Evolution of Pathogen Virulence

2009

The pathogen virulence is traditionally thought to co-evolve as a result of reciprocal selection with its host organism. In natural communities, pathogens and hosts are typically embedded within a web of interactions with other species, which could affect indirectly the pathogen virulence and host immunity through trade-offs. Here we show that selection by predation can affect both pathogen virulence and host immune defence. Exposing opportunistic bacterial pathogen Serratia marcescens to predation by protozoan Tetrahymena thermophila decreased its virulence when measured as host moth Parasemia plantaginis survival. This was probably because the bacterial anti-predatory traits were traded o…

0106 biological scienceslcsh:MedicineVirulenceZoologyEvolutionary Biology/Evolutionary Ecology010603 evolutionary biology01 natural sciencesPredationMicrobiologyTetrahymena thermophila03 medical and health sciencesParasemia plantaginisEcology/Evolutionary Ecologylcsh:SciencePathogenSerratia marcescensTrophic level0303 health sciencesLarvaMultidisciplinarybiologyVirulence030306 microbiologyHost (biology)lcsh:R15. Life on landbiology.organism_classificationEvolutionary Biology/Microbial Evolution and GenomicsSerratia marcescensHost-Pathogen Interactionslcsh:QResearch ArticlePLoS ONE
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Communal nesting in the garden dormouse (Eliomys quercinus)

2017

Communal nesting has been described in many rodents including some dormouse species. In this study, we report the existence of this reproductive strategy in the garden dormouse Eliomys quercinus. Data was recorded by checking natural nests and nest-boxes from 2003 to 2013 in SE Spain. Pups and adults dormice found in nests were captured and marked. Overall, 198 nests were found: 161 (81.31%) were singular nests and 37 (18.69%) were communal nests. Communal nests were composed by different combinations of one up to three females together with one up to three different size litters. The number of communal nests varied from year to year in accordance with the number of singular nests and no se…

0106 biological sciencesmedia_common.quotation_subjectPopulationBreeding010603 evolutionary biology01 natural sciencesMyoxidaePredationNesting BehaviorBreeding; Dormice; Nest-box; Orange grove; Reproduction; Spain; Animals; Female; Myoxidae; Nesting Behavior; Reproduction; Spain; Animal Science and Zoology; Behavioral NeuroscienceBehavioral Neurosciencebiology.animalEliomysAnimals0501 psychology and cognitive sciences050102 behavioral science & comparative psychologyDormouseeducationNest boxmedia_commoneducation.field_of_studyDormiceGarden dormousebiologyEcologyReproduction05 social sciencesNest-boxOrange groveGeneral Medicinebiology.organism_classificationSpainNesting (computing)FemaleAnimal Science and ZoologyReproduction
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Bachelor groups form due to individual choices or environmental disrupters in African striped mice

2021

International audience; In several mammal species, bachelor groups occur as a regular life history stage between dispersal and becoming the breeding male of a multi-female group. However, it is rarely investigated how such groups come into existence and how males that choose this strategy differ in life history traits from other males. Males of the socially flexible African striped mouse Rhabdomys pumilio have been historically reported to adopt one of three alternative tactics, i.e., small group-living philopatric males, intermediate solitary living roaming males, or large group-living territorial males. Here, we describe for the first time, bachelors as a fourth male tactic. Using long-te…

0106 biological sciencesmedia_common.quotation_subjecteducationBachelor010603 evolutionary biology01 natural sciencessocial flexibilityPredationLife history theorymale-male groups03 medical and health sciences[SDV.BA.ZV]Life Sciences [q-bio]/Animal biology/Vertebrate ZoologySeasonal breederLife historyEcology Evolution Behavior and Systematics030304 developmental biologymedia_common135-143 alternative reproductive tactics0303 health sciencesthermoregulationbiology182biology.organism_classificationreproductive successBiological dispersalAnimal Science and ZoologyPhilopatryAnimal Behaviouralternative reproductive tacticsstrategyRhabdomys pumilioDemography
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Eutrophic status influences the impact of pesticide mixtures and predation on Daphnia pulex populations

2021

Abstract Pesticides, nutrients, and ecological stressors such as competition or predation co‐occur in freshwater ecosystems impacted by agriculture. The extent to which combinations of these stressors affect aquatic populations and the role of nutrients availability in modulating these responses requires further understanding. In this study, we assessed how pesticides affecting different taxonomic groups and predation influence the response of Daphnia pulex populations under different trophic conditions. An outdoor experiment was designed following a factorial design, with the insecticide chlorpyrifos, the herbicide diuron, and the predation by Notonecta sp. individuals as key stressors. Th…

0106 biological sciencesmultiple stressormedia_common.quotation_subject010603 evolutionary biology01 natural sciencesDaphnia pulexFreshwater ecosystemCompetition (biology)Predation03 medical and health sciences14. Life underwaterEcology Evolution Behavior and SystematicsQH540-549.5pesticide030304 developmental biologyNature and Landscape ConservationNotonectamedia_commonTrophic levelOriginal Research0303 health sciencesbiologyEcologyEcologyBayesian shrinkageQ Science (General)pesticides15. Life on landPesticidebiology.organism_classificationmultiple stressorsPulexeutrophication13. Climate actionpredation
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A case study of the coconut crab Birgus latro on Zanzibar highlights global threats and conservation solutions

2021

Abstract The coconut crab Birgus latro, the largest terrestrial decapod, is under threat in most parts of its geographical range. Its life cycle involves two biomes (restricted terrestrial habitats near the coast, and salt water currents of the tropical Indian and Pacific Oceans). Its dependence on coastal habitat means it is highly vulnerable to the habitat destruction that typically accompanies human population expansion along coastlines. Additionally, it has a slow reproductive rate and can reach large adult body sizes that, together with its slow movement when on land, make it highly susceptible to overharvesting. We studied the distribution and population changes of coconut crabs at 15…

0106 biological sciencespopulation sizeRange (biology)Life on Landcoconut crabEnvironmental Science and ManagementBirgus latroPopulationPemba010603 evolutionary biology01 natural sciencesTanzaniaCoconut crabtaskuravutpopulaatiotIUCNuhanalaiset eläimetIUCN Red ListeducationEcology Evolution Behavior and SystematicsNature and Landscape ConservationData deficienteducation.field_of_studybiologylajiensuojeluEcology010604 marine biology & hydrobiologybiology.organism_classificationFisheryClimate ActionOverexploitationHabitat destructionGeographyHabitatconservation recommendationsZoology
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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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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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