Search results for "infection dynamics"

showing 4 items of 4 documents

Modelling temperature-dependent dynamics of single and mixed infections in a plant virus

2022

Multiple viral infection is an important issue in health and agriculture with strong impacts on society and the economy. Several investigations have dealt with the population dynamics of viruses with different dynamic properties, focusing on strain competition during multiple infections and the effects on viruses’ hosts. Recent interest has been on how multiple infections respond to abiotic factors such as temperature (T). This is especially important in the case of plant pathogens, whose dynamics could be affected significantly by global warming. However, few mathematical models incorporate the effect of T on parasite fitness, especially in mixed infections. Here, we investigate simple mat…

Abiotic componenteducation.field_of_studybiologyMathematical modelCo-infection dynamicsApplied Mathematicsmedia_common.quotation_subjectPopulationTranscritical bifurcationsRNA virusAbiotic stressbiology.organism_classificationCompetition (biology)BifurcationsCompetition modelTranscritical bifurcationThermal reaction normsEvolutionary biologyNonlinear dynamicsModeling and SimulationPlant virusDynamical systemseducationmedia_commonApplied Mathematical Modelling
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Droplet digital PCR as a tool for investigating dynamics of cryptic symbionts

2021

Abstract Interactions among symbiotic organisms and their hosts are major drivers of ecological and evolutionary processes. Monitoring the infection patterns among natural populations and identifying factors affecting these interactions are critical for understanding symbiont–host relationships. However, many of these interactions remain understudied since the knowledge about the symbiont species is lacking, which hinders the development of appropriate tools. In this study, we developed a digital droplet PCR (ddPCR) assay based on apicomplexan COX1 gene to detect an undescribed agamococcidian symbiont. We show that the method gives precise and reproducible results and enables detecting cryp…

infection dynamicsanimal structuresevoluutiobiologiasymbioosiisäntälajitBiologycryptic symbiosisinfektiotdroplet digital PCRpopulaatiotloisetisäntäeläimetDigital polymerase chain reactionQH540-549.5Ecology Evolution Behavior and SystematicsResearch ArticlesNature and Landscape ConservationEcologyDynamics (mechanics)fungibiochemical phenomena metabolism and nutritionekosysteemit (ekologia)Evolutionary biologyapicomplexaInfection dynamicsResearch ArticleEcology and Evolution
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Importance of Sequence and Timing in Parasite Coinfections

2019

Coinfections by multiple parasites predominate in the wild. Interactionsbetween parasites can be antagonistic, neutral, or facilitative, and they canhave significant implications for epidemiology, disease dynamics, and evolu-tion of virulence. Coinfections commonly result from sequential exposure ofhosts to different parasites. We argue that the sequential nature of coinfectionsis important for the consequences of infection in both natural and man-madeenvironments. Coinfections accumulate during host lifespan, determining thestructure of the parasite infracommunity. Interactions within the parasite com-munity and their joint effect on the host individual potentially shape evolution ofparasi…

0301 basic medicineinfection dynamicsTime Factors030231 tropical medicineDisease epidemiology2405 ParasitologyVirulenceBiologyinfektiotHost-Parasite Interactions03 medical and health sciencessequential infection10127 Institute of Evolutionary Biology and Environmental Studies0302 clinical medicineloisetParasitic DiseasesParasite hostingAnimalsHumansParasitesepidemiologiaSequence (medicine)Transmission (medicine)Host (biology)Coinfectiondisease epidemiologymultiple infection2725 Infectious Diseasesvirulence evolutionPlantsMultiple infections030104 developmental biologyInfectious DiseasesParasitologyconcomitant infectionEvolutionary biologyta1181570 Life sciences; biology590 Animals (Zoology)Parasitology
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Theoretical conditions for the coexistence of viral strains with differences in phenotypic traits : A bifurcation analysis

2019

We investigate the dynamics of a wild-type viral strain which generates mutant strains differing in phenotypic properties for infectivity, virulence and mutation rates. We study, by means of a mathematical model and bifurcation analysis, conditions under which the wild-type and mutant viruses, which compete for the same host cells, can coexist. The coexistence conditions are formulated in terms of the basic reproductive numbers of the strains, a maximum value of the mutation rate and the virulence of the pathogens. The analysis reveals that parameter space can be divided into five regions, each with distinct dynamics, that are organized around degenerate Bogdanov–Takens and zero-Hopf bifurc…

1001infection dynamicsMutation rate6EpidemiologyMutantVirulenceBiology01 natural sciences87010305 fluids & plasmas03 medical and health sciencesBifurcations1190103 physical sciences1008mathematical biologylcsh:Science51 - Matemàtiques030304 developmental biologyGeneticsInfectivityvirus evolution0303 health sciencesMathematical and theoretical biologyMultidisciplinaryStrain (chemistry)Infection dynamicsPhenotypic traitVirus evolutionViral evolutionMathematical biologyepidemiologylcsh:QMatemàtiquesbifurcationsMathematicsResearch Article
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