Search results for "Resistance to infection"

showing 2 items of 2 documents

Infection success of Echinoparyphium aconiatum (Trematoda) in its snail host under high temperature: role of host resistance

2014

Background Extreme weather events such as summer heat waves become more frequent owing to global climate change and are predicted to alter disease dynamics. This is because high temperatures can reduce host immune function. Predicting the impact of climate change on host-parasite interactions is, however, difficult as temperature may also affect parasite infective stages and other host characteristics determining the outcome of interaction. Methods Two experiments were conducted to investigate these phenomena in a Lymnaea stagnalis–Echinoparyphium aconiatum (Trematoda) interaction. In the first experiment, the effects of exposure of snails to experimental heat waves [maintenance at 25°C vs.…

heat waveEchinoparyphium aconiatum; Global climate change; Heat wave; Lymnaea; stagnalis; Resistance to infection; Host-parasite interaction; Experimental assessmentHot TemperatureExperimental assessmentResearchGlobal climate changeSnailsglobal climate changeresistance to infectionhost-parasite interactionpiippolimakotiloInfectious DiseasesHeat waveHost-Pathogen Interactionsechinoparyphium aconiatumResistance to infectionAnimalsParasitologyLymnaea stagnalisexperimental assessmentTrematodaHost-parasite interactionCercariaEchinoparyphium aconiatum
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Role of host genetic diversity for susceptibility-to-infection in the evolution of virulence of a plant virus

2019

Predicting viral emergence is difficult due to the stochastic nature of the underlying processes and the many factors that govern pathogen evolution. Environmental factors affecting the host, the pathogen and the interaction between both are key in emergence. In particular, infectious disease dynamics are affected by spatiotemporal heterogeneity in their environments. A broad knowledge of these factors will allow better estimating where and when viral emergence is more likely to occur. Here, we investigate how the population structure for susceptibility-to-infection genes of the plant Arabidopsis thaliana shapes the evolution of Turnip mosaic virus (TuMV). For doing so we have evolved TuMV …

0106 biological sciencesinfection matrixPopulationPotyvirusVirulenceMetapopulation010603 evolutionary biology01 natural sciencesMicrobiology03 medical and health sciencesVirologyPlant virusTurnip mosaic virusResistance to infectionexperimental evolutioneducationPathogenhost population structure030304 developmental biologyvirus evolution0303 health sciencesExperimental evolutioneducation.field_of_studyGenetic diversitybiologyEcotypeGenetic heterogeneityEvolution of virulenceHost population structureresistance to infectionbiology.organism_classificationInfection matrixVirus evolutionExperimental evolutionInfectious disease (medical specialty)Evolutionary biologyViral evolutionResearch Articleevolution of virulence
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