Search results for "host–parasite interaction"

showing 10 items of 16 documents

Vertebrate defense against parasites: Interactions between avoidance, resistance, and tolerance

2017

Hosts can utilize different types of defense against the effects of parasitism, including avoidance, resistance, and tolerance. Typically, there is tremendous heterogeneity among hosts in these defense mechanisms that may be rooted in the costs associated with defense and lead to trade‐offs with other life‐history traits. Trade‐offs may also exist between the defense mechanisms, but the relationships between avoidance, resistance, and tolerance have rarely been studied. Here, we assessed these three defense traits under common garden conditions in a natural host–parasite system, the trematode eye‐fluke Diplostomum pseudospathaceum and its second intermediate fish host. We looked at host ind…

0106 biological sciences0301 basic medicineDefence mechanismsParasitismZoologyTrade-off010603 evolutionary biology01 natural sciencesresistance03 medical and health sciencesbiology.animaltrade‐offSalmoEcology Evolution Behavior and SystematicsOriginal ResearchNature and Landscape Conservationtrade-offtoleranceEcologybiologyResistance (ecology)host–parasite interactionEcologyHost (biology)parasite avoidanceVertebrateAquatic animalbiology.organism_classificationhost-parasite interaction030104 developmental biologyta1181Ecology and Evolution
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Positive density-dependent growth supports costs sharing hypothesis and population density sensing in a manipulative parasite.

2017

SUMMARYParasites manipulate their hosts’ phenotype to increase their own fitness. Like any evolutionary adaptation, parasitic manipulations should be costly. Though it is difficult to measure costs of the manipulation directly, they can be evaluated using an indirect approach. For instance, theory suggests that as the parasite infrapopulation grows, the investment of individual parasites in host manipulation decreases, because of cost sharing. Another assumption is that in environments where manipulation does not pay off for the parasite, it can decrease its investment in the manipulation to save resources. We experimentally infected rainbow trout Oncorhynchus mykiss with the immature larva…

0106 biological sciences0301 basic medicinemanipulation costsZoologypositive density-dependencepopulation density sensingparasitismiTrematode InfectionsBiology010603 evolutionary biology01 natural sciencesPopulation densityPredationHost-Parasite Interactions03 medical and health sciencesFish Diseaseskirjolohiloisethost–parasite interactionscost sharingParasite hostingAnimalsMetacercariaeEye lensPopulation DensityEcologyHost (biology)imumadotpopulaatiodynamiikkaAdaptation PhysiologicalBiological Evolutionparasitic manipulation030104 developmental biologyInfectious DiseasesPhenotypeDensity dependentLarvaOncorhynchus mykissMacroparasiteta1181Animal Science and ZoologyParasitologyRainbow troutTrematodaParasitology
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Lack of molluscan host diversity and the transmission of an emerging parasitic disease in Bolivia.

2001

Fasciolosis is a re-emerging parasitic disease that affects an increasing number of people in developing countries. The most severe endemic affects the Bolivian Altiplano, where the liver fluke (Fasciola hepatica) and its hermaphroditic snail host, Lymnaea truncatula, have been introduced from Europe. To achieve a better understanding of the epidemiological situation and the consequences of the colonization event of this invasive species, genetic analysis of Bolivian snail populations was needed. Here we compare the genetic diversity and population structure of snail samples from the Bolivian Altiplano with samples from the Old World at six polymorphic microsatellite loci. Whereas some vari…

0106 biological sciencesBoliviaOld WorldSnailsSnailBiology[Fasciola hepatica]010603 evolutionary biology01 natural sciencesHost-Parasite Interactions[microsatellites]03 medical and health sciencesbiology.animal[human disease]parasitic diseases[host–parasite interaction]GeneticsmedicineFasciola hepaticaAnimalsFasciolosisGenetic variabilityEcology Evolution Behavior and Systematics[Lymnaea truncatula]030304 developmental biology0303 health sciencesGenetic diversityHost (biology)Ecology[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]fungi15. Life on landmedicine.diseasebiology.organism_classificationEuropeGenetics PopulationParasitic disease[invasive species]Microsatellite RepeatsMolecular ecology
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Host manipulation in the face of environmental changes: Ecological consequences

2015

Several parasite species, particularly those having complex life-cycles, are known to induce phenotypic alterations in their hosts. Most often, such alterations appear to increase the fitness of the parasites at the expense of that of their hosts, a phenomenon known as “host manipulation”. Host manipulation can have important consequences, ranging from host population dynamics to ecosystem engineering. So far, the importance of environmental changes for host manipulation has received little attention. However, because manipulative parasites are embedded in complex systems, with many interacting components, changes in the environment are likely to affect those systems in various ways. Here, …

0106 biological sciencesFuture studiesPopulationBiologyEnvironment010603 evolutionary biology01 natural sciencesSpecial section: Impact of Environmental changes on Infectious Diseases (IECID)Ecosystems03 medical and health scienceslcsh:Zoology[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisEcosystemlcsh:QL1-991educationHost–parasite interactions030304 developmental biologyTrophic level0303 health scienceseducation.field_of_study[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyEcologyHost (biology)Host manipulationInfectious DiseasesAnimal Science and ZoologyParasitology[SDE.BE]Environmental Sciences/Biodiversity and EcologyGlobal changes[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/SymbiosisInternational Journal for Parasitology: Parasites and Wildlife
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Genotypic and phenotypic variation in transmission traits of a complex life cycle parasite

2013

Characterizing genetic variation in parasite transmission traits and its contribution to parasite vigor is essential for understanding the evolution of parasite life‐history traits. We measured genetic variation in output, activity, survival, and infection success of clonal transmission stages (cercaria larvae) of a complex life cycle parasite (Diplostomum pseudospathaceum). We further tested if variation in host nutritional stage had an effect on these traits by keeping hosts on limited or ad libitum diet. The traits we measured were highly variable among parasite genotypes indicating significant genetic variation in these life‐history traits. Traits were also phenotypically variable, for …

0106 biological sciencesHost conditionZoologyPhenotypic plasticityBiologyphenotypic plasticity010603 evolutionary biology01 natural scienceslaw.invention03 medical and health scienceslawGenotypeGenetic variationParasite hostingHost-parasite interactionbet hedgingEcology Evolution Behavior and SystematicsOriginal Research030304 developmental biologyNature and Landscape ConservationGenetics0303 health sciencesPhenotypic plasticityEcologyhost–parasite interactionisännän kuntoHost (biology)imumadotBet hedgingbiology.organism_classificationfenotyyppinen plastisuushost conditionhost-parasite interactionPhenotypeBet hedging; Host condition; Host-parasite interaction; Phenotypic plasticity; Trematodaisäntä-lois interaktiot'bet hedging' hypoteesiTransmission (mechanics)ta1181TrematodaTrematoda
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Food stoichiometry affects the outcome of Daphnia–parasite interaction

2013

Phosphorus (P) is an essential nutrient for growth in consumers. P-limitation and parasite infection comprise one of the most common stressor pairs consumers confront in nature. We conducted a life-table study using a Daphnia–microsporidian parasite model, feeding uninfected or infected Daphnia with either P-sufficient or P-limited algae, and assessed the impact of the two stressors on life-history traits of the host. Both infection and P-limitation negatively affected some life-history traits tested. However, under P-limitation, infected animals had higher juvenile growth rate as compared with uninfected animals. All P-limited individuals died before maturation, regardless of infection. Th…

0106 biological sciencesZoology010603 evolutionary biology01 natural sciencesDaphniamicrosporidianEcological stoichiometryJuvenileParasite hostingIngestionEcology Evolution Behavior and SystematicsOriginal ResearchNature and Landscape Conservation2. Zero hungerchemistry.chemical_classificationEcologybiologyhost–parasite interactionEcologyHost (biology)010604 marine biology & hydrobiologyfungiP-deficiencybiology.organism_classificationSporemultiple stressorsEcological stoichiometrychemistryta1181Essential nutrientEcology and Evolution
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Comparative host–parasite population structures: disentangling prospecting and dispersal in the black-legged kittiwake Rissa tridactyla

2005

Although much insight is to be gained through the comparison of the population genetic structures of parasites and hosts, there are, at present, few studies that take advantage of the information on vertebrate life histories available through the consideration of their parasites. Here, we examined the genetic structure of a colonial seabird, the black-legged kittiwake ( Rissa tridactyla ) using seven polymorphic microsatellite markers to make inferences about population functioning and intercolony dispersal. We sampled kittiwakes from 22 colonies across the species’ range and, at the same time, collected individuals of one of its common ectoparasites, the tick Ixodes uriae . Parasites were …

0106 biological sciences[SDV.OT]Life Sciences [q-bio]/Other [q-bio.OT]Rissa tridactyla[colonial seabirds]Population DynamicsPopulationZoology[microsatellites] Ixodes uriae microsatellites010603 evolutionary biology01 natural sciencesHost-Parasite InteractionsGene flowCharadriiformes03 medical and health sciencesGeneticsAnimals[Ixodes uriae][ SDV.OT ] Life Sciences [q-bio]/Other [q-bio.OT]education[host–parasite interactions]Ecology Evolution Behavior and SystematicsDemography030304 developmental biologyIsolation by distancePrincipal Component Analysis0303 health scienceseducation.field_of_studyGeographyIxodesbiology[SDV.OT] Life Sciences [q-bio]/Other [q-bio.OT]Arctic Regions[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]biology.organism_classificationIxodes uriae[ectoparasite]Genetics PopulationGenetic structureKittiwakeBiological dispersalSeasons[dispersal]Microsatellite Repeats
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Variation in parasite resistance of Arctic charr, Salvelinus alpinus, between and within sympatric morphs

2021

Abstract Genetic variation in resistance against parasite infections is a predominant feature in host–parasite systems. However, mechanisms maintaining genetic polymorphism in resistance in natural host populations are generally poorly known. We explored whether differences in natural infection pressure between resource‐based morphs of Arctic charr (Salvelinus alpinus) have resulted in differentiation in resistance profiles. We experimentally exposed offspring of two morphs from Lake Þingvallavatn (Iceland), the pelagic planktivorous charr (“murta”) and the large benthivorous charr (“kuðungableikja”), to their common parasite, eye fluke Diplostomum baeri, infecting the eye humor. We found t…

0106 biological sciencesgenetic structuresZoologyparasitismiBiology010603 evolutionary biology01 natural sciencesParasite loadnieriätrematode03 medical and health sciencesloisetAdaptive radiationGenetic variationParasite hostingmuuntelu (biologia)breeding colorationEcology Evolution Behavior and SystematicsResearch ArticlesQH540-549.5030304 developmental biologyNature and Landscape ConservationSalvelinusOriginal Research0303 health sciencesResistance (ecology)freshwater fish ecotypeEcologyhost–parasite interactionimumadothost– parasite interactionbiology.organism_classificationgeneettinen muunteluresistenssiimmunogenesspeciationSympatric speciationSexual selectionadaptive radiationEcology and Evolution
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Parasite infection alters host stable-isotope composition under controlled feeding

2016

1) Stable isotopes are widely used for studying trophic relationships, but variation driven by environmental conditions or food availability complicates the interpretation of trophic dynamics. Parasites are ubiquitous and known to affect physiological functions of their hosts, but only few studies have assessed the effects of parasites on isotope composition of hosts. 2) We measured the changes in two of the most commonly used stable isotopes in food-web studies, nitrogen (i.e. 15N:14N ratio; denoted as δ15N) and carbon (13C:12C; δ13C) in Daphnia hosts exposed to infection by a parasitic micosporidian in the laboratory. Isotopic signatures of hosts fed a standardised controlled diet were co…

2. Zero hunger0106 biological sciences0301 basic medicinenitrogen isotopesδ13CHost (biology)EcologyStable isotope ratiohost–parasite interactionδ15NAquatic ScienceBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesDaphniaIsotopes of nitrogen03 medical and health sciences030104 developmental biologyfood sourcecarbon isotopesParasite hostingta1181Trophic levelenergy limitationFreshwater Biology
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Differences in parasite community composition support ecological differentiation in a freshwater gadoid fish

2022

Several northern freshwater fishes have gone through rapid adaptive radiation after the last glacial period, resulting in new species or intraspecific morphs with distinct life histories. Parasite infections can promote adaptive radiations and spatiotemporal differences in patterns of infections can potentially reveal incipient or ongoing speciation processes. We investigated intraspecific differentiation in a freshwater gadoid fish, burbot (Lota lota), by exploring differences in parasite infections between two potential life-history morphs in Lake Konnevesi, Central-Finland, one reproducing species characteristically in shallow littoral waters in February and the other possibly in deep pr…

EcologyimumadotecotypeparasitismiAquatic Scienceturskakalateye flukespeciationpopulaatiotloisethost–parasite interactionslajiutuminenmadeadaptive radiationEcology Evolution Behavior and Systematicsgadoid fish
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