0000000001252253

AUTHOR

Katja-riikka Louhi

showing 15 related works from this author

Host infection history modifies co-infection success of multiple parasite genotypes.

2015

Co-infections by multiple parasite genotypes are common and have important implications for host-parasite ecology and evolution through within-host interactions. Typically, these infections take place sequentially, and therefore, the outcome of co-infection may be shaped by host immune responses triggered by previous infections. For example, in vertebrates, specific immune responses play a central role in protection against disease over the course of life, but co-infection research has mostly focused on previously uninfected individuals. Here, we investigated whether sequential exposure and activation of host resistance in rainbow trout Oncorhynchus mykiss affects infection success and inte…

0106 biological sciences0301 basic medicineGenotypeDiseaseTrematode Infections010603 evolutionary biology01 natural sciencesHost-Parasite Interactions03 medical and health sciencesFish DiseasesImmune systembiology.animalParasite hostingAnimalsEcology Evolution Behavior and SystematicsGeneticsbiologyHost (biology)CoinfectionVertebrateAcquired immune system030104 developmental biologyOncorhynchus mykissImmunologyFacilitationAnimal Science and ZoologyEvolutionary ecologyTrematodaThe Journal of animal ecology
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Relative reproductive success of co-infecting parasite genotypes under intensified within-host competition.

2015

In nature, host individuals are commonly simultaneously infected with more than one genotype of the same parasite species. These co-infecting parasites often interact, which can affect their fitness and shape host-parasite ecology and evolution. Many of such interactions take place through competition for limited host resources. Therefore, variation in ecological factors modifying the host resource level could be important in determining the intensity of competition and the outcome of co-infections. We tested this hypothesis by measuring the relative reproductive success of co-infecting genotypes of the trematode parasite Diplostomum pseudospathaceum in its snail host Lymnaea stagnalis whil…

Microbiology (medical)Genotypemedia_common.quotation_subjectLymnaea stagnalisSnailmultiple infectionsMicrobiologymicrosatellitesCompetition (biology)Host-Parasite Interactionsbiology.animalGeneticsParasite hostingAnimalsMolecular BiologyEcology Evolution Behavior and Systematicsmedia_commonLymnaeabiologyReproductive successHost (biology)EcologyCoinfectionmixed infectionsReproductionGenetic Variationconcomitant infectionsbiology.organism_classificationInfectious Diseasesta1181Evolutionary ecologyTrematodaTrematodaMultilocus Sequence TypingInfection, genetics and evolution : journal of molecular epidemiology and evolutionary genetics in infectious diseases
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Reciprocal Interaction Matrix Reveals Complex Genetic and Dose-Dependent Specificity among Coinfecting Parasites

2012

Understanding genetic specificity in factors determining the outcome of host-parasite interactions is especially important as it contributes to parasite epidemiology, virulence, and maintenance of genetic variation. Such specificity, however, is still generally poorly understood. We examined genetic specificity in interactions among coinfecting parasites. In natural populations, individual hosts are often simultaneously infected by multiple parasite species and genotypes that interact. Such interactions could maintain genetic variation in parasite populations if they are genetically specific so that the relative fitness of parasite genotypes varies across host individuals depending on (1) t…

0106 biological sciencesGenotypeVirulence010603 evolutionary biology01 natural sciencesDiplostomum pseudospathaceumHost Specificity03 medical and health sciencesGenotypeGenetic variationmedicineParasite hostingAnimalsEcology Evolution Behavior and Systematics030304 developmental biologyGenetics0303 health sciencesbiologyHost (biology)CoinfectionGenetic Variationmedicine.diseasebiology.organism_classification3. Good healthOncorhynchus mykissCoinfectionTrematodaTrematodaAmerican Naturalist
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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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Interactions among bacterial strains and fluke genotypes shape virulence of co-infection.

2015

Most studies of virulence of infection focus on pairwise host–parasite interactions. However, hosts are almost universally co-infected by several parasite strains and/or genotypes of the same or different species. While theory predicts that co-infection favours more virulent parasite genotypes through intensified competition for host resources, knowledge of the effects of genotype by genotype (G × G) interactions between unrelated parasite species on virulence of co-infection is limited. Here, we tested such a relationship by challenging rainbow trout with replicated bacterial strains and fluke genotypes both singly and in all possible pairwise combinations. We found that virulence (host mo…

Genotypemedia_common.quotation_subjectVirulenceDiplostomum pseudospathaceumTrematode InfectionsFlavobacteriumGeneral Biochemistry Genetics and Molecular BiologyCompetition (biology)facilitationFlavobacterium columnareFish DiseasesFlavobacteriaceae InfectionsGenotypeParasite hostingAnimalsEvolutionary dynamicsResearch ArticlesGeneral Environmental Sciencemedia_commonGeneticsGeneral Immunology and MicrobiologybiologyVirulenceHost (biology)ta1183General Medicinemultiple infectionbiology.organism_classification3. Good healthconcomitant infectionOncorhynchus mykissHost-Pathogen Interactionsta1181epidemiologyTrematodaTrematodaGeneral Agricultural and Biological SciencesFlavobacteriumProceedings. Biological sciences
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Is the population genetic structure of complex life cycle parasites determined by the geographic range of the most motile host?

2010

Due to their particular way of life, dispersal of parasites is often mediated by their host's biology. Dispersal distance is relevant for parasites because high degree of dispersal leads to high gene flow, which counters the rate of parasite local adaptation in the host populations. Parasites with complex life cycles need to exploit sequentially more than one host species to complete their life cycle. Most trematode parasites have such complex life cycles involving invertebrate and vertebrate hosts. The spatial scales of invertebrate and vertebrate host populations are often different, which may decrease the probability that the parasite cycles locally in the intermediate host population. W…

Gene Flow0106 biological sciencesMicrobiology (medical)Population DynamicsPopulationZoologyTrematode InfectionsBiologyPolymerase Chain Reaction010603 evolutionary biology01 natural sciencesMicrobiologyHost-Parasite InteractionsCharadriiformesFish Diseases03 medical and health sciencesGeneticsAnimalseducationMolecular BiologyEcology Evolution Behavior and SystematicsLymnaea030304 developmental biologyLocal adaptationIsolation by distanceLife Cycle Stages0303 health scienceseducation.field_of_studyPolymorphism GeneticBase SequenceGeographyBird DiseasesHost (biology)FishesIntermediate hostGenetic Variationbiology.organism_classificationObligate parasiteInfectious DiseasesBiological dispersalAnimal MigrationDNA IntergenicTrematodaTrematodaMicrosatellite RepeatsInfection, Genetics and Evolution
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Prevalence of infection as a predictor of multiple genotype infection frequency in parasites with multiple-host life cycle.

2012

In nature, parasites commonly share hosts with other conspecific parasite genotypes. While adult parasites typically show aggregated distribution in their final hosts, aggregation of clonal parasite genotypes in intermediate hosts, such as those of trematodes in molluscs, is not generally known. However, infection of a host by multiple parasite genotypes has significant implications for evolution of virulence and host-parasite coevolution. Aggregated distribution of the clonal stages can increase host mortality and reduce larval output of each infecting genotype through interclonal competition, and therefore have significant implications for parasite epidemiology. The aim of this study was …

0106 biological sciencesGenotypemedia_common.quotation_subjectZoologySnailBiology010603 evolutionary biology01 natural sciencesCompetition (biology)Host-Parasite Interactions03 medical and health sciencesbiology.animalGenotypeParasite hostingAnimalsEcology Evolution Behavior and SystematicsFreshwater mollusc030304 developmental biologymedia_commonLymnaea0303 health sciencesHost (biology)Bayes Theorembiology.organism_classification3. Good healthAnimal ecologyAnimal Science and ZoologyTrematodaTrematodaMicrosatellite RepeatsThe Journal of animal ecology
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Synchronous attack is advantageous: mixed genotype infections lead to higher infection success in trematode parasites

2011

Co-infecting parasite genotypes typically compete for host resources limiting their fitness. The intensity of such competition depends on whether parasites are reproducing in a host, or using it primarily as a transmission vehicle while not multiplying in host tissues (referred to as ‘competition hypothesis’). Alternatively, simultaneous attack and co-infection by several parasite genotypes might facilitate parasite infection because such a diverse attack could present an additional challenge to host immune defence (referred to as ‘facilitation hypothesis’). We tested the competition hypothesis by comparing the production of transmission stages (cercariae) from snails infected with one or …

0106 biological sciencesCompetitive BehaviorGenotypemedia_common.quotation_subjectZoologyTrematode InfectionsBiology010603 evolutionary biology01 natural sciencesPolymerase Chain ReactionGeneral Biochemistry Genetics and Molecular BiologyCompetition (biology)Host-Parasite Interactions03 medical and health sciencesGenotypeParasite hostingAnimalsCercariaResearch ArticlesFinland030304 developmental biologyGeneral Environmental Sciencemedia_commonLymnaea0303 health sciencesAnalysis of VarianceGeneral Immunology and MicrobiologyHost (biology)Transmission (medicine)ReproductionGenetic VariationGeneral Medicinebiology.organism_classificationObligate parasiteOncorhynchus mykissImmunologyFacilitationTrematodaTrematodaGeneral Agricultural and Biological SciencesProceedings of the Royal Society B-Biological Sciences
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Analysis of trematode parasite communities in fish eye lenses by pyrosequencing of naturally pooled DNA.

2011

Infections by multiple parasite species are common in nature and have important consequences for between species interactions and coevolutionary dynamics with the host populations. For example ecological and evolutionary factors underlying the structure of parasite communities determine the range of hosts a parasite can infect and set the basis for both evolution of host defences and parasite virulence as well as management of diseases. Studies investigating these factors have been facilitated in the recent past by genetic methods which surmount difficulties of traditional morphological taxonomy in identifying individual parasite species. Here we take a step further and present a novel meth…

0106 biological sciencesMicrobiology (medical)Molecular Sequence DataSnailsZoologyVirulenceTrematode Infections010603 evolutionary biology01 natural sciencesMicrobiologyPolymorphism Single NucleotideHost Specificity03 medical and health sciencesCharadriiformesFish DiseasesReference ValuesDNA Ribosomal SpacerGeneticsParasite hostingAnimals14. Life underwaterMolecular BiologyEcology Evolution Behavior and SystematicsPhylogeny030304 developmental biology0303 health sciencesPrincipal Component AnalysisCommunitybiologyModels Geneticta1183Community structureInterspecific competitionSequence Analysis DNAbiology.organism_classification3. Good healthInfectious DiseasesFreshwater fishPyrosequencingta1181Taxonomy (biology)TrematodaInfection, genetics and evolution : journal of molecular epidemiology and evolutionary genetics in infectious diseases
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Evolutionary ecology of complex life cycle parasites : from genotypes to species assemblages

2012

imumadotparasitismpopulation geneticsDiplostomum pseudospathaceummultiple genotype infectionloisyhteisötphenotypic variationparasitismigenotyyppiyhteisinfektiotelinkiertopopulaatiogenetiikkaloisetlife cyclefenotyyppiTrematodacommunity structure
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Reciprocal interaction matrix reveals complex genetic and dose-dependent specificity among coinfecting parasites

2012

Understanding genetic specificity in factors determining the outcome of host-parasite interactions is especially important as it contributes to parasite epidemiology, virulence, and maintenance of genetic variation. Such specificity, however, is still generally poorly understood. We examined genetic specificity in interactions among coinfecting parasites. In natural populations, individual hosts are often simultaneously infected by multiple parasite species and genotypes that interact. Such interactions could maintain genetic variation in parasite populations if they are genetically specific so that the relative fitness of parasite genotypes varies across host individuals depending on (1) t…

Diplostomum
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Data from: Interactions among bacterial strains and fluke genotypes shape virulence of co-infection

2015

Most studies of virulence of infection focus on pairwise host-parasite interactions. However, hosts are almost universally co-infected by several parasite strains and/or genotypes of the same or different species. While theory predicts that co infection favours more virulent parasite genotypes through intensified competition for host resources, knowledge of effects of genotype by genotype (G×G) interactions between unrelated parasite species on virulence of co infection is limited. Here we tested such relationship by challenging rainbow trout with replicated bacterial strains and fluke genotypes both singly and in all possible pairwise combinations. We found that virulence (host mortality) …

medicine and health careConcomitant infectionMedicineDiplostomum pseudospathaceummultiple infectionLife sciencesflavobacterium columnare
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Data from: 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 …

medicine and health careMedicineLymnaea stagnalisDiplostomum pseudospathaceumTrematodaHost-parasite interactionLife sciencesbet hedginghost condition
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Data from: Host infection history modifies co-infection success of multiple parasite genotypes

2016

1. Co-infections by multiple parasite genotypes are common and have important implications for host-parasite ecology and evolution through within-host interactions. Typically, these infections take place sequentially and therefore, the outcome of co-infection may be shaped by host immune responses triggered by previous infections. For example, in vertebrates specific immune responses play a central role in protection against disease over the course of life, but co-infection research has mostly focused on previously uninfected individuals. 2. Here, we investigated whether sequential exposure and activation of host resistance in rainbow trout Oncorhynchus mykiss affects infection success and …

medicine and health careacquired immunitygenotypeMedicineDiplostomum pseudospathaceumLife scienceswithin-host interactionCo-infection
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Data from: Reciprocal interaction matrix reveals complex genetic and dose-dependent specificity among coinfecting parasites

2012

Understanding genetic specificity in factors determining the outcome of host-parasite interactions is especially important as it contributes to parasite epidemiology, virulence, and maintenance of genetic variation. Such specificity, however, is still generally poorly understood. We examined genetic specificity in interactions among coinfecting parasites. In natural populations, individual hosts are often simultaneously infected by multiple parasite species and genotypes that interact. Such interactions could maintain genetic variation in parasite populations if they are genetically specific so that the relative fitness of parasite genotypes varies across host individuals depending on (1) t…

medicine and health careInteractions: host/parasiteEnvironmental variabilityMedicineDiplostomum pseudospathaceumEvolution: host/parasiteDiplostomum gasterosteiLife sciences
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