Search results for "RAS"

showing 10 items of 26429 documents

Intraspecific variability in host manipulation by parasites

2011

8 pages; International audience; Manipulative parasites have the capacity to alter a broad range of phenotypic traits in their hosts, extending from colour, morphology and behaviour. While significant attention has been devoted to describing the diversity of host manipulation among parasite clades, and testing the adaptive value of phenotypic traits that can be manipulated, there is increasing evidence that variation exists in the frequency and intensity of the changes displayed by parasitized individuals within single host-manipulative parasite systems. Such variability occurs within individuals, between individuals of a same population, and across populations. Here we review the non-genet…

0106 biological sciencesMaleAgingPhenotypic plasticity01 natural sciencesAcanthocephalaGenetic effect[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisEnvironmental effect0303 health scienceseducation.field_of_studyAdaptation PhysiologicalBiological EvolutionInfectious DiseasesPhenotypeFemaleTrematodaMicrobiology (medical)[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyAdaptive valueLocal adaptationPopulationAcanthocephalansZoologyBiologyEnvironment010603 evolutionary biologyMicrobiologyTrematodesIntraspecific competitionHost-Parasite Interactions03 medical and health sciencesGenetic variationGeneticsAnimals[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyeducationMolecular BiologyEcology Evolution Behavior and Systematics030304 developmental biologyLocal adaptationPhenotypic plasticity[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyCestodesGenetic VariationPhenotypic traitCestodaAdaptation[SDE.BE]Environmental Sciences/Biodiversity and Ecology[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/SymbiosisCoevolution
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Patterns of intermediate host use and levels of association between two conflicting manipulative parasites.

2002

For many parasites with complex life cycles, manipulation of intermediate host phenotypes is often regarded as an adaptation to increase the probability of successful transmission. This phenomenon creates opportunities for either synergistic or conflicting interests between different parasite species sharing the same intermediate host. When more than one manipulative parasite infect the same intermediate host, but differ in their definitive host, selection should favour the establishment of a negative association between these manipulators. Both Polymorphus minutus and Pomphorhynchus laevis exploit the amphipod Gammarus pulex as intermediate host but differ markedly in their final host, a f…

0106 biological sciencesMaleCompetitive BehaviorPopulationZoology[SDV.BID]Life Sciences [q-bio]/Biodiversity010603 evolutionary biology01 natural sciencesAcanthocephalaHost-Parasite Interactions03 medical and health sciencesSex FactorsGammarusCrustaceaAnimalseducationComputingMilieux_MISCELLANEOUS030304 developmental biology[ SDV.BID ] Life Sciences [q-bio]/Biodiversity0303 health scienceseducation.field_of_studybiologyBehavior AnimalEcologyHost (biology)Intermediate hostbiology.organism_classificationPolymorphusGammarus pulexInfectious DiseasesPulexParasitologyPomphorhynchus laevisFranceSeasonsInternational journal for parasitology
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Parasitic outbreak of the copepod Balaenophilus manatorum in neonate loggerhead sea turtles (Caretta caretta) from a head-starting program

2017

Abstract Background Diseases associated to external parasitosis are scarcely reported in sea turtles. During the last decades several organism have been documented as a part of normal epibiont community connected to sea turtles. The copepod Balaenophilus manatorum has been cited as a part of epibiont fauna with some concern about its parasitic capacity. This study serves three purposes, i.e. (i) it sheds light on the type of life style that B. manatorum has developed with its hosts, particularly turtles; (ii) it makes a cautionary note of the potential health risks associated with B. manatorum in sea turtles under captivity conditions and in the wild, and (iii) it provides data on effective…

0106 biological sciencesMaleConservation of Natural Resources040301 veterinary sciencesEctoparasiteFaunaZoologyCaptivityParasitic infestation010603 evolutionary biology01 natural sciencesLoggerhead sea turtleHead-startingDisease Outbreaks0403 veterinary scienceCopepodaAnimalsCarapaceSkin Diseases ParasiticBalaenophilus manatorumEpibiontHatchlingCaretta carettalcsh:Veterinary medicineGeneral VeterinarybiologyOutbreak04 agricultural and veterinary sciencesGeneral MedicineSea turtlebiology.organism_classificationTurtlesFisherySea turtleSpainlcsh:SF600-1100FemaleCopepodResearch ArticleBMC Veterinary Research
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Helminth associations in white-toothed shrews Crocidura russula (Insectivora : Soricidae) from the Albufera Natural Park, Spain

2004

The helminths of 218 white-toothed shrews from 29 sites in 2 biotopes in the Albufera Natural Park (Valencia, Spain) were examined from July 1990 to August 1991. An association analysis of helminths occurring at a prevalence of more than 4% was carried out for 4 species of cestodes located in the intestine (Hymenolepis pistillum, H. scalaris, H. tiara, and Pseudhymenolepis redonica) and 3 species of nematodes (Pseudophysaloptera sp. located in the stomach, Stammerinema rhopocephala larvae in the intestine and abdominal cavity, and Porrocaecum sp. in the thoracic and abdominal cavities). Bivariate (species pairs) versus multivariate analyses (associations within the entire set of species) we…

0106 biological sciencesMaleHymenolepis (plant)[SDV]Life Sciences [q-bio]Abdominal cavityPARASITES;01 natural sciences030308 mycology & parasitologyRodent DiseasesPregnancyPrevalenceUNESCO::CIENCIAS DE LA VIDAPhylogeny0303 health sciencesLarvabiologyEcology:CIENCIAS DE LA VIDA::Biología animal (Zoología) ::Parasitología animal [UNESCO]Crocidura russulaASSEMBLAGES;[SDV] Life Sciences [q-bio]UNESCO::CIENCIAS DE LA VIDA::Biología animal (Zoología) ::Parasitología animalmedicine.anatomical_structureFemaleHelminthiasis AnimalBiotopeNESTEDNESS;Helminth ; Crocidura russula ; Albufera natural parkCrocidura russulaEnvironment010603 evolutionary biology:CIENCIAS DE LA VIDA [UNESCO]MARINE FISH;03 medical and health sciencesHelminthsmedicineHelminthINTERSPECIFIC ASSOCIATIONS; INTESTINAL HELMINTHS;HelminthsAnimalsPATTERNS;COMMUNITY STRUCTURE;Ecology Evolution Behavior and SystematicsAnalysis of VarianceLife Cycle StagesHost (biology)InsectivoraShrewsbiology.organism_classificationMuridaeSpainPregnancy Complications ParasiticMultivariate AnalysisBATSParasitologyAlbufera natural park
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Social immunity and the evolution of group living in insects

2015

The evolution of group living requires that individuals limit the inherent risks of parasite infection. To this end, group living insects have developed a unique capability of mounting collective anti-parasite defences, such as allogrooming and corpse removal from the nest. Over the last 20 years, this phenomenon (called social immunity) was mostly studied in eusocial insects, with results emphasizing its importance in derived social systems. However, the role of social immunity in the early evolution of group living remains unclear. Here, I investigate this topic by first presenting the definitions of social immunity and discussing their applications across social systems. I then provide a…

0106 biological sciencesMaleInsectaMultiple forms[SDV]Life Sciences [q-bio]Group livingBiology010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyHerd immunityDevelopmental psychologyHost-Parasite Interactions03 medical and health sciencesImmunitySocial groomingAnimalsSocial BehaviorEcosystemComputingMilieux_MISCELLANEOUS030304 developmental biology0303 health sciencesBehavior AnimalEcology[SDV.BA]Life Sciences [q-bio]/Animal biologyArticlesEusocialityBiological Evolution[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate ZoologySocial systemFemaleSocial evolutionGeneral Agricultural and Biological Sciences
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Investigation of deltamethrin resistance in salmon lice (Lepeophtheirus salmonis) provides no evidence for roles of mutations in voltage-gated sodium…

2020

BACKGROUND The pyrethroid deltamethrin is used to treat infestations of farmed salmon by parasitic salmon lice, Lepeophtheirus salmonis (Kroyer). However, the efficacy of deltamethrin for salmon delousing is threatened by resistance development. In terrestrial arthropods, knockdown resistance (kdr) mutations of the voltage-gated sodium channel (Nav ), the molecular target for pyrethroids, can cause deltamethrin resistance. A putative kdr mutation of an L. salmonis sodium channel homologue (LsNav 1.3 I936V) has been identified previously. At the same time, deltamethrin resistance of L. salmonis has been shown to be inherited maternally and to be associated with mitochondrial DNA (mtDNA) muta…

0106 biological sciencesMaleMitochondrial DNALocus (genetics)Voltage-Gated Sodium ChannelsBiology01 natural sciencesCopepodaInsecticide Resistancechemistry.chemical_compoundFish DiseasesEtofenproxSalmonparasitic diseasesGenotypeNitrilesPyrethrinsAnimalsGeneticsPyrethroidKnockdown resistanceGeneral Medicinebiology.organism_classification010602 entomologyDeltamethrinchemistryLepeophtheirusInsect ScienceMutationFemaleAgronomy and Crop Science010606 plant biology & botanyPest management scienceREFERENCES
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Foraging behavior of two egg parasitoids exploiting chemical cues from the stink bug Piezodorus guildinii (Hemiptera: Pentatomidae).

2019

Several parasitoids attacking the same host may lead to competition. Adult parasitoids' abilities to find, parasitize and defend hosts determine resource's retention potential. In soybean, two egg parasitoid species, Telenomus podisi and Trissolcus urichi (Hymenoptera: Platygastridae), compete on the egg masses of Piezodorus guildinii (Hemiptera: Pentatomidae) one of the major pest of this crop. We evaluated parasitoid's abilities to exploit hosts' footprints; and parasitoid's behavior when competing for the same host. Both arena residence time and retention time were similar for T. podisi and T. urichi on male or female host footprints. In its turn, T. urichi reentered the area contaminate…

0106 biological sciencesMaleOvipositionWaspsBiological pest controlbiological controlHymenopteranatural enemies01 natural sciencessearching behaviorParasitoid//purl.org/becyt/ford/1 [https]PlatygastridaeMultidisciplinaryNatural enemiebiologyBehavior AnimalQcoexistenceHost-Parasite InteractionPentatomidaeHemipteraFemaleCIENCIAS NATURALES Y EXACTASScienceZoology010603 evolutionary biologyHost-Parasite InteractionsCiencias BiológicasHemipteraCiencias NaturalesAnimals//purl.org/becyt/ford/1.6 [https]Pest Control BiologicalOvumbusiness.industryAnimalfungiPest controlInterspecific competitionEcologíabiology.organism_classificationstink bugs010602 entomologySettore AGR/11 - Entomologia Generale E ApplicataStink bugTelenomus podisiSoybeansbusinessSoybeanAnais da Academia Brasileira de Ciencias
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Reproductive site selection: evidence of an oviposition cue in a highly adaptive dipteran, Drosophila suzukii (Diptera: Drosophilidae)

2020

Abstract Drosophila suzukii (Matsumura) is a vinegar fly species that originates from Eastern Asia and has spread throughout Europe and the Americas since its initial detection in United States in 2008. Its relatively large, sclerotized, and serrated ovipositor enables the ability to penetrate ripening fruits, providing a protected environment for its egg and larval stages. Because the mechanism of oviposition site selection of D. suzukii is a matter of hypothesis, the aim of the present study was to elucidate behavioral and chemical aspects of short-range ovipositional site selection within the context of D. suzukii reproductive biology. The preference of D. suzukii to lay eggs on artifici…

0106 biological sciencesMaleOvipositionZoologyContext (language use)Chemical ecologyBiology01 natural sciences03 medical and health sciencesInsect behaviorDrosophilidaeparasitic diseasesReproductive biologyAnimalsDrosophila suzukiiOviposition site selectionEcology Evolution Behavior and Systematics030304 developmental biologyOvumSpotted-wing Drosophila0303 health sciencesLarvaEcologyInvasive speciesAsia EasternfungiRipeningbiology.organism_classificationChemical ecologyEurope010602 entomologySettore AGR/11 - ENTOMOLOGIA GENERALE E APPLICATAInsect ScienceOvipositorDrosophilaFemaleCues
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EPIDEMIOLOGY OF PLASMODIUM RELICTUM INFECTION IN THE HOUSE SPARROW.

2014

International audience; : Abstract In vertebrates, multiple host characteristics and environmental factors are known to influence infectious disease dynamics. Here, we investigated variability in prevalence and parasitemia of Plasmodium relictum in the house sparrow (Passer domesticus), across a large number of rural and urban populations (n = 16). We found that prevalence was not predicted by any of the host traits investigated (age, sex, body mass or wing length). However, parasitemia was significantly higher in females when compared to males and in 1-yr-olds as compared to older individuals. Neither prevalence nor parasitemia differed according to habitat type (urban vs. rural). These re…

0106 biological sciencesMaleRural Populationmedicine.medical_specialtyPlasmodiumMalaria AvianUrban PopulationZoologyParasitemiaParasitemia010603 evolutionary biology01 natural sciences[ SDE ] Environmental Sciences03 medical and health sciencesSex FactorsAvian malariabiology.animalEpidemiologyparasitic diseasesmedicinePrevalenceAnimalsBody SizeWings AnimalEcology Evolution Behavior and SystematicsEcosystem030304 developmental biology0303 health sciencesSparrowbiologyEcologyAge FactorsDNA Protozoanbiology.organism_classificationmedicine.diseasePlasmodium relictum3. Good healthHabitatInfectious disease (medical specialty)[SDE]Environmental SciencesParasitologyFemaleFrancePasserSparrows
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Elevated oxidative stress in pied flycatcher nestlings of eumelanic foster fathers under low rearing temperatures

2019

Striking variation in melanin coloration within natural populations is likely due to the different fitness outcomes of alternative phenotypes in varying environmental conditions. There are two types of melanin: eumelanins yield blackish hues, whereas pheomelanins yield reddish hues. The production of eumelanins requires low levels of glutathione (GSH), which is the most important intracellular antioxidant, whereas the production of pheomelanins requires high levels of GSH. We investigated the oxidative status of male pied flycatchers (Ficedula hypoleuca) with different degrees of melanin coloration under different temperatures during the nestling period. Moreover, we assessed the oxidative …

0106 biological sciencesMaleSELECTIONMELANINPhysiology030310 physiologyBASAL METABOLIC-RATEgenetic qualitymedicine.disease_cause01 natural sciencesNesting BehaviorMelaninchemistry.chemical_compoundGLUTATHIONEoxidative stressPasseriformesGene–environment interactionADAPTATIONGlutathione Transferasephenotypic quality0303 health sciencesTemperaturephenotypic variationenvironmental heterogeneityPhenotypeSexual selectionSexual selectionFemalelämpötilagenotype-by-environment interactionPhenotypic qualityTRAITSPLUMAGE COLORATIONOffspringZoologyAquatic ScienceBiology010603 evolutionary biologygenotyyppisecondary sexual trait03 medical and health sciencesmedicineAnimalsEXPOSUREkirjosieppoMolecular Biologyoksidatiivinen stressiEcology Evolution Behavior and SystematicsMelaninsSecondary sexual traitFicedulaGlutathioneFeathersbiology.organism_classificationlisääntyminenchemistrysukupuolivalintaInsect ScienceBasal metabolic ratePLEIOTROPYRADIATIONta1181Animal Science and ZoologyfenotyyppiOxidative stressJournal of Experimental Biology
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