Search results for "Host-parasite interactions"

showing 10 items of 330 documents

Performance of Host-Races of the Fruit Fly,Tephritis conuraon a Derived Host Plant, the Cabbage ThistleCirsium oleraceum: Implications for the Origin…

2008

The thistle-infesting fruit fly Tephritis conura Loew (Diptera: Tephritidae) forms host races on the melancholy thistle, Cirsium hetewphyllum (L.) Hill (Asterales: Asteraceae) and the cabbage thistle, Cirsium olemceum (L.). Scop. Previous research indicates that the host shift occurred from C. hetewphyllum to C. oleraceum. In this paper we address whether the host shift involved physiological adaptations by studying oviposition acceptance and survival of the two host races on the derived host C. oleraceum. Performance differed significantly between host races. T. conura originating from C. oleraceum produced adults in 75% of all egg-laying trials in contrast to only 6.6% in T. conura origin…

food.ingredientOvipositionPopulationCirsiumArticleHost-Parasite InteractionsTephritis conurafoodCirsiumTephritidaeBotanyCirsium heterophyllumAnimalseducationalternative hostFlavonoidseducation.field_of_studybiologyHost (biology)fungiPupaCirsium oleraceumGeneral Medicinebiology.organism_classificationAdaptation PhysiologicalfitnessspeciationLarvaInsect ScienceThistleFemaleCirsium heterophyllumperformanceJournal of Insect Science
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Diplostomum spathaceum metacercarial infection and colour change in salmonid fish

2004

Colour changes in two salmonid fish, the salmon (Salmo salar) and sea trout (S. trutta), were examined in relation to infection with the trematode Diplostomum spathaceum. This parasite had no effect on the rate of colour change in these fish, although species specific differences in colour adjustment times were observed. Increasing asymmetry in parasite numbers between the right and left eye, which could lead to the retention of vision in one eye, nevertheless tended to reduce the colour change time in salmon with moderate infection (P=0.08). This first experimental attempt to examine colour changes in fish in relation to eye fluke infections provides grounds for future investigations. The …

genetic structuresTroutSalmo salarZoologySkin PigmentationTrematode InfectionsSalmonid fishEyeHost-Parasite InteractionsFish DiseasesSpecies SpecificityAnimalsParasite hostingSea troutSalmoSalmonidaeGeneral VeterinarybiologyEcologyGeneral Medicinebiology.organism_classificationLeft eyeInfectious DiseasesDiplostomum spathaceumInsect ScienceParasitologyTrematodasense organsTrematodaParasitology Research
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Divergent parasite infections in sympatric cichlid species in Lake Victoria

2018

Parasitism has been proposed as a factor in host speciation, as an agent affecting coexistence of host species in species‐rich communities and as a driver of post‐speciation diversification. Young adaptive radiations of closely related host species of varying ecological and genomic differentiation provide interesting opportunities to explore interactions between patterns of parasitism, divergence and coexistence of sympatric host species. Here, we explored patterns in ectoparasitism in a community of 16 fully sympatric cichlid species at Makobe Island in Lake Victoria, a model system of vertebrate adaptive radiation. We asked whether host niche, host abundance or host genetic differentiatio…

host-parasite interactionsgenomic differentiationerilaistuminenJanzen-Connell mechanismperimälajiutuminenahvenkalatsympatric speciationparasitismiisäntälajitadaptive radiationincipient species
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The role of maternal effects in host-parasite interactions: examination of the development of the immune defense in a colonial seabird, the black-leg…

2004

One of the main aims of evolutionary biology is to understand the mechanisms responsible for the phenotypic variation on which natural selection can act. Maternal effects occur when a mother's phenotype or her environment influence her offspring's phenotype. Despite the importance of such effects for the ecology of host-parasite interactions, their role has been relatively neglected to date. In this thesis, we examined how mothers influence the immune defense of their young in an environment that varies in space and time. This work has primarily focused on a colonial seabird, the black-legged kittiwake (Rissa tridactyla). Using this model, we have first shown that specific maternal antibodi…

immunité passive[SDE.MCG]Environmental Sciences/Global Changesdéfenses immunitairesinduced responseimmunoglobulins[ SDV.IMM.IA ] Life Sciences [q-bio]/Immunology/Adaptive immunologyIxodes uriae[ SDV.EE.SANT ] Life Sciences [q-bio]/Ecology environment/Healthticksindividual qualitymaladie de Lymetiques[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/Symbiosis[SDV.BID.EVO] Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE][SDV.EE.SANT] Life Sciences [q-bio]/Ecology environment/HealthLyme diseaseimmunoglobulinesBorrelia burgdorferi s.l.[SDV.EE.SANT]Life Sciences [q-bio]/Ecology environment/Health[ SDE.BE ] Environmental Sciences/Biodiversity and Ecology[SDV.BA.MVSA]Life Sciences [q-bio]/Animal biology/Veterinary medicine and animal Health[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE][SDV.BA.MVSA] Life Sciences [q-bio]/Animal biology/Veterinary medicine and animal Health[SDV.EE.IEO] Life Sciences [q-bio]/Ecology environment/Symbiosisimmune defense[SDE.BE] Environmental Sciences/Biodiversity and Ecologyinteractions hôte-parasiteeffets maternels[ SDE.MCG ] Environmental Sciences/Global Changes[SDE.MCG] Environmental Sciences/Global Changeshost-parasite interactions[ SDV.BID.EVO ] Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]passive immunity[SDV.IMM.IA]Life Sciences [q-bio]/Immunology/Adaptive immunology[SDV.IMM.IA] Life Sciences [q-bio]/Immunology/Adaptive immunologyqualité individuelle.maternal effectsoiseaux de mer[ SDV.BA.MVSA ] Life Sciences [q-bio]/Animal biology/Veterinary medicine and animal Healthectoparasitesréponse induite[SDE.BE]Environmental Sciences/Biodiversity and Ecologyseabirds[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Interactions between two parasites of brown trout (Salmo trutta): Consequences of preinfection

2018

Preinfection by one parasitic species may facilitate or by contrast hamper the subsequent penetration and/or establishment of other parasites in a host. The biology of interacting species, timing of preinfection, and dosage of subsequent parasite exposure are likely important variables in this multiparasite dynamic infection process. The increased vulnerability to subsequent infection can be an important and often overlooked factor influencing parasite virulence. We investigated how the preinfection by freshwater pearl mussel Margaritifera margaritifera glochidia could influence the success of subsequent infection by the common trematode Diplostomum pseudospathaceum in brown trout Salmo tru…

imumadoteliöyhteisötparasitismimultiple infectionsinfektiotjokihelmisimpukkaDiplostomumhost-parasite interactionstaimenexperimental infectionloisetfreshwater pearl musselhost–parasite interactionscommunity ecologyOriginal ResearchEcology and Evolution
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Baseline Gut Microbiota Composition Is Associated With Schistosoma mansoni Infection Burden in Rodent Models

2020

In spite of growing evidence supporting the occurrence of complex interactions between Schistosoma and gut bacteria in mice and humans, no data is yet available on whether worm-mediated changes in microbiota composition are dependent on the baseline gut microbial profile of the vertebrate host. In addition, the impact of such changes on the susceptibility to, and pathophysiology of, schistosomiasis remains largely unexplored. In this study, mice colonized with gut microbial populations from a human donor (HMA mice), as well as microbiota-wild type (WT) animals, were infected with Schistosoma mansoni, and alterations of their gut microbial profiles at 50 days post-infection were compared to …

lcsh:Immunologic diseases. Allergy0301 basic medicineRodentImmunologyAntibodies ProtozoanSchistosomiasisGut floradigestive systemParasite LoadHost-Parasite InteractionsMicrobiologyImmunomodulationFecesMice03 medical and health sciences0302 clinical medicineimmune-modulationhuman-microbiota associated mouse modelsRNA Ribosomal 16Sbiology.animalLactobacillusmedicineAnimalsImmunology and AllergySchistosomaBacteriabiologyFOS: Clinical medicineComputational BiologyBiodiversitySchistosoma mansonidysbiosismedicine.diseasebiology.organism_classificationSchistosomiasis mansoniGastrointestinal MicrobiomeDisease Models Animal030104 developmental biologyhelminth-gut microbiota interactionsSchistosomaMetagenomicsSchistosoma mansonigut microbial diversityProteobacterialcsh:RC581-607Dysbiosis030215 immunology
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Antigen-specific T cells and cytokines detection as useful tool for understanding immunity against zoonotic infections.

2012

Zoonoses include a broad range of diseases, that are becoming of great interest, due to the climate changing, that cause the adaptation of vectors to new niches and environments. Host immune responses play a crucial role in determining the outcome of infections, as documented by expansion of antigen-specific T cells during several zoonotic infections. Thus, understanding of the contribution of antigen-specific T-cell subsets in the host immune response is a powerful tool to evaluate the different immunological mechanisms involved in zoonotic infections and for the development of effective vaccines. In this paper we discuss the role of T cells in some eukaryotic and prokaryotic infectious mo…

lcsh:Immunologic diseases. AllergyNematodaT-LymphocytesImmunologyReview ArticleAdaptive ImmunityBiologyHost-Parasite InteractionsImmune systemT-Lymphocyte SubsetsAntigen specificImmunityZoonosesAnimalsHumansImmunology and AllergyAntigensTh1-Th2 BalanceZoonoses antigen specific T-cells animal immunology.VaccinesBacteriaZoonotic InfectionGeneral MedicineAcquired immune systemVirologyImmunity InnateHost-Pathogen InteractionsImmunologyCytokinesAdaptationlcsh:RC581-607
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Parasite presence induces gene expression changes in an ant host related to immunity and longevity

2021

Most species are either parasites or exploited by parasites, making parasite&ndash

lcsh:QH426-470<i>Anomotaenia brevis</i>host–parasite interactionAntsextended phenotypehost lifespanHymenopteraArticleAnomotaenia brevisHost-Parasite Interactions570 Life scienceslcsh:GeneticstranscriptomicsGene Expression RegulationTemnothorax nylanderiAnimalsCestodaInsect Proteins<i>Temnothorax nylanderi</i>570 Biowissenschaften
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Genotype-specific vs. cross-reactive host immunity against a macroparasite

2013

Vertebrate hosts often defend themselves against several co-infecting parasite genotypes simultaneously. This has important implications for the ecological dynamics and the evolution of host defence systems and parasite strategies. For example, it can drive the specificity of the adaptive immune system towards high genotype-specificity or cross-reactivity against several parasite genotypes depending on the sequence and probability of re-infections. However, to date, there is very little evidence on these interactions outside mammalian disease literature. In this study we asked whether genotype-specific or cross-reactive responses dominate in the adaptive immune system of a fish host towards…

lcsh:Rlcsh:MedicineTrematode InfectionsAdaptive ImmunityCross Reactionshost-parasite interactionHost-Parasite InteractionsristikkäisresistenssiFish Diseasesco-infectionOncorhynchus mykissisäntä-loinen vuorovaikutusyhteisinfektioAnimalslcsh:QTrematodalcsh:Sciencecross-resistanceLymnaeaResearch Article
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Intraguild interactions between egg parasitoids: window of opportunity and fitness costs for a facultative hyperparasitoid.

2013

We investigated intraguild interactions between two egg parasitoids of Nezara viridula (L.) (Heteroptera: Pentatomidae), Ooencyrtus telenomicida (Vassiliev) (Hymenoptera: Encyrtidae) and Trissolcus basalis (Wollaston) (Hymenoptera: Platygastridae), as the former has the potential to be a facultative hyperparasitoid of the latter. We assessed the suitability of N. viridula eggs for the development of O. telenomicida as a function of egg age when they were unparasitized, or had been attacked by T. basalis at different times prior to exposure to O. telenomicida females. Ooencyrtus telenomicida can exploit healthy N. viridula host eggs up to 5 days of age, just prior to the emergence of N. viri…

media_common.quotation_subjectZoologyParasitismlcsh:MedicineHymenopteraMicrobiologyCompetition (biology)Host-Parasite InteractionsHeteropteraBehavioral EcologyIntegrated ControlSpecies SpecificityEncyrtidaeAnimalsParasitesParasite Evolutionlcsh:ScienceBiologymedia_commonOvumFacultativeLife Cycle StagesMultidisciplinarybiologyEcologyEcologyfungilcsh:RAgricultureInterspecific competitionPentatomidaebiology.organism_classificationTerrestrial EnvironmentsHymenopteraSpecies InteractionsSettore AGR/11 - Entomologia Generale E ApplicataCommunity EcologyNezara viridulaParasitologyFemalelcsh:QPest Controlintraguild parasitism Trissolcus basalis Ooencyrtus telenomicida Nezara viridula intrinsic interspecific competition host discriminationZoologyEntomologyResearch ArticleEcological EnvironmentsPLoS ONE
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