Search results for "Ricinus"

showing 10 items of 33 documents

Host dispersal shapes the population structure of a tick-borne bacterial pathogen

2020

Birds are hosts for several zoonotic pathogens. Because of their high mobility, especially of longdistance migrants, birds can disperse these pathogens, affecting their distribution and phylogeography. We focused on Borrelia burgdorferi sensu lato, which includes the causative agents of Lyme borreliosis, as an example for tick-borne pathogens, to address the role of birds as propagation hosts of zoonotic agents at a large geographical scale. We collected ticks from passerine birds in 11 European countries. B. burgdorferi s.l. prevalence in Ixodes spp. was 37% and increased with latitude. The fieldfare Turdus pilaris and the blackbird T. merula carried ticks with the highest Borrelia prevale…

0106 biological sciences0301 basic medicineBORRELIA-BURGDORFERIACARImedicine.disease_causemigrationBURGDORFERI SENSU-LATO01 natural sciencesSongbirdsLyme diseaseTicksAcariMigration11832 Microbiology and virologyLyme DiseasebiologyPlan_S-Compliant_NOBLACKBIRDS TURDUS-MERULAPREVALENCEEuropehost-parasite interactionsMIGRATORY BIRDSinternational1181 Ecology evolutionary biology[SDE]Environmental SciencesHost-paraste InterationsHost-parasite interactionsAvesTRANSMISSIONZoology010603 evolutionary biologyticksBirds03 medical and health sciencesBorreliaparasitic diseasesGeneticsmedicineAnimalsHumansBorrelia burgdorferiEcology Evolution Behavior and SystematicsLyme borreliosisInfecções Sistémicas e ZoonosesIxodesBird DiseasesBorreliaLYME-DISEASEIXODES-RICINUS TICKSBorrelia gariniiEcologíabiology.organism_classificationmedicine.diseasebacterial infections and mycoses030104 developmental biologybirdsCandidatusWILD BIRDSMultilocus sequence typingBorrelia gariniiIxodesMultilocus Sequence Typing
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Predicting and mapping human risk of exposure to ixodes ricinus nymphs using climatic and environmental data, Denmark, Norway and Sweden, 2016

2019

Background Tick-borne diseases have become increasingly common in recent decades and present a health problem in many parts of Europe. Control and prevention of these diseases require a better understanding of vector distribution. Aim Our aim was to create a model able to predict the distribution of Ixodes ricinus nymphs in southern Scandinavia and to assess how this relates to risk of human exposure. Methods We measured the presence of I. ricinus tick nymphs at 159 stratified random lowland forest and meadow sites in Denmark, Norway and Sweden by dragging 400 m transects from August to September 2016, representing a total distance of 63.6 km. Using climate and remote sensing environmental…

0301 basic medicineIxodes ricinusEpidemiology030231 tropical medicinePopulationDistribution (economics)TickSpatial distribution03 medical and health sciences0302 clinical medicineSDG 3 - Good Health and Well-beingVirologymedicineTransectNympheducationTick-borne diseaseeducation.field_of_studybiologybusiness.industryEcologyPublic Health Environmental and Occupational Healthmedicine.diseasebiology.organism_classification030104 developmental biologyGeography/dk/atira/pure/sustainabledevelopmentgoals/good_health_and_well_beingbusiness
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Competition between strains of Borrelia afzelii inside the rodent host and the tick vector

2018

Multiple-strain pathogens often establish mixed infections inside the host that result in competition between strains. In vector-borne pathogens, the competitive ability of strains must be measured in both the vertebrate host and the arthropod vector to understand the outcome of competition. Such studies could reveal the existence of trade-offs in competitive ability between different host types. We used the tick-borne bacteriumBorrelia afzeliito test for competition between strains in the rodent host and the tick vector, and to test for a trade-off in competitive ability between these two host types. Mice were infected via tick bite with either one or two strains, and these mice were subse…

0301 basic medicineIxodes ricinusmedia_common.quotation_subjectIxodes ricinuspuutiaisetTickBorrelia afzeliimedicine.disease_causeinfektiotGeneral Biochemistry Genetics and Molecular BiologyCompetition (biology)life-history trade-offMicrobiology03 medical and health sciencesco-infectionBorrelia burgdorferi Groupparasitic diseasesisäntäeläimetmedicineAnimalsinter-strain competitionPathogenGeneral Environmental Sciencemedia_commonLife Cycle StagesLyme DiseaseMice Inbred BALB CluonnonvalintaGeneral Immunology and MicrobiologybiologyEcologyIxodesHost (biology)Transmission (medicine)ta1183transmissionGeneral Medicinebiology.organism_classificationbacterial infections and mycosesBorrelia-bakteerit030104 developmental biologyBorrelia afzeliita1181Arachnid VectorsFemaleGeneral Agricultural and Biological SciencesArthropod Vector
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Predicting the spatial abundance of Ixodes ricinus ticks in southern Scandinavia using environmental and climatic data

2019

AbstractRecently, focus on tick-borne diseases has increased as ticks and their pathogens have become widespread and represent a health problem in Europe. Understanding the epidemiology of tick-borne infections requires the ability to predict and map tick abundance. We measured Ixodes ricinus abundance at 159 sites in southern Scandinavia from August-September, 2016. We used field data and environmental variables to develop predictive abundance models using machine learning algorithms, and also tested these models on 2017 data. Larva and nymph abundance models had relatively high predictive power (normalized RMSE from 0.65–0.69, R2 from 0.52–0.58) whereas adult tick models performed poorly …

0301 basic medicineMaleIxodes ricinus030231 tropical medicinelcsh:MedicineTickForestsScandinavian and Nordic CountriesPopulation densityModels BiologicalArticle03 medical and health sciences0302 clinical medicineSDG 3 - Good Health and Well-beingAbundance (ecology)Machine learningparasitic diseasesVDP::Matematikk og Naturvitenskap: 400::Basale biofag: 470AnimalsEcosystemNymphlcsh:ScienceWeatherEcosystemEcological epidemiologyPopulation DensityMultidisciplinarybiologyIxodesEcologylcsh:RVegetationbiology.organism_classification030104 developmental biologyLarva/dk/atira/pure/sustainabledevelopmentgoals/good_health_and_well_beingInfectious diseasesIxodeslcsh:QFemaleEnvironmental Monitoring
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Temporal dynamics of the tick Ixodes ricinus in northern Europe : epidemiological implications

2017

Background Tick-borne pathogens pose an increasing threat to human and veterinary health across the northern hemisphere. While the seasonal activity of ticks is largely determined by climatic conditions, host-population dynamics are also likely to affect tick abundance. Consequently, abundance fluctuations of rodents in northern Europe are expected to be translated into tick dynamics, and can hence potentially affect the circulation of tick-borne pathogens. We quantified and explained the temporal dynamics of the tick Ixodes ricinus in the northernmost part of its European geographical range, by estimating (i) abundance in vegetation and (ii) infestation load in the most common rodent speci…

0301 basic medicineMaleNymphIxodes ricinusTime FactorsPopulation dynamics030231 tropical medicineIxodes ricinusTickmedicine.disease_causeModels BiologicalRodent hostlcsh:Infectious and parasitic diseasesrodent host03 medical and health sciences0302 clinical medicinekansanterveysInfestationparasitic diseasesmedicineAnimalslcsh:RC109-216NymphPublic healthbiologyIxodesEcologyArvicolinaeseasonalityResearchRicinusfungiSeasonalitybiology.organism_classificationpopulaatiodynamiikkaTick InfestationsBank vole030104 developmental biologyInfectious DiseasesArvicolinaeLarvaParasitologyIxodesFemaleSeasons
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Sympatric Ixodes-tick species: pattern of distribution and pathogen transmission within wild rodent populations

2018

AbstractThe generalist tick Ixodes ricinus is the most important vector for tick-borne pathogens (TBP), including Borrelia burgdorferi sensu lato, in Europe. However, the involvement of other sympatric Ixodes ticks, such as the specialist vole tick I. trianguliceps, in the enzootic circulations of TBP remains unclear. We studied the distribution of I. ricinus and I. trianguliceps in Central Finland and estimated the TBP infection likelihood in the most common rodent host in relation with the abundance of the two tick species. Ixodes trianguliceps was encountered in all 16 study sites whereas I. ricinus was frequently observed only at a quarter of the study sites. The abundance of I. ricinus…

0301 basic medicineanimal diseaseslcsh:MedicineDisease VectorspuutiaisetBORRELIA-BURGDORFERI0302 clinical medicinepopulaatiotSCAPULARIS ACARIpathogen transmissionlcsh:ScienceFinlandMultidisciplinarybiologyArvicolinaeRicinuslevinneisyysBORNE ENCEPHALITIS-VIRUSSympatrytaudinaiheuttajatTick-Borne DiseasesANAPLASMA-PHAGOCYTOPHILUMEnzooticIxodes ricinusjyrsijät030231 tropical medicineZoologyLYME BORRELIOSISTickTRIANGULICEPSArticle03 medical and health sciencesIxodes triangulicepsparasitic diseasesAnimalsHumansBorrelia burgdorferiIxodesBABESIA-MICROTILAND-USELANDSCAPEfungilcsh:Rbiology.organism_classificationbacterial infections and mycosesBorrelia-bakteerit030104 developmental biologyRICINUS TICKSVoleIxodeslcsh:Q3111 BiomedicineScientific Reports
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2020

One of the most exciting questions in botany refers to the nature of the angiosperm flower. While most flowering structures are easily identified as flowers, there are few examples lying in-between flowers and inflorescences. Such an example is the staminate unit ('male flower') in Ricinus communis (Euphorbiaceae) famous for its branched 'staminal trees.' The units were controversially interpreted in the past. Today, they are seen as flowers with multiple branched stamen-fascicles. In the present paper, the recently described floral unit meristem is used to reinterpret the staminate units in Ricinus. This meristem shares almost all characteristics with a flower meristem, but differs from it…

0301 basic medicinebiologyRicinusEuphorbiaceaeStamenCell BiologyMeristembiology.organism_classification03 medical and health sciences030104 developmental biology0302 clinical medicineInflorescence030220 oncology & carcinogenesisBotanyDevelopmental BiologyFrontiers in Cell and Developmental Biology
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Monitoring of ticks and tick-borne pathogens through a nationwide research station network in Finland.

2020

In 2015 a long-term, nationwide tick and tick-borne pathogen (TBP) monitoring project was started by the Finnish Tick Project and the Finnish Research Station network (RESTAT), with the goal of producing temporally and geographically extensive data regarding exophilic ticks in Finland. In the current study, we present results from the first four years of this collaboration. Ticks were collected by cloth dragging from 11 research stations across Finland in May September 2015-2018 (2012-2018 in Seili). Collected ticks were screened for twelve different pathogens by qPCR: Borrelia afzelii, Borrelia garinii, Borrelia valaisiana, Borrelia burgdorferi sensu stricto, Borrelia miyamotoi, Babesia sp…

0301 basic medicineviruksetPopulation DynamicsmonitorointiIxodes persulcatuspuutiaisetACARImedicine.disease_causeBURGDORFERI SENSU-LATODISEASEbakteeritTicks0302 clinical medicineINFECTIONPOPULATIONFinland11832 Microbiology and virologyTick-borne pathogensbiologylongitudinal studylevinneisyysPREVALENCEInfectious Diseasestaudinaiheuttajat1181 Ecology evolutionary biologyEpidemiological Monitoringtick-borne pathogensBartonella-bakteeritSeasonsLongitudinal studyNymphIxodes ricinusMonitoringBorrelia valaisiana030231 tropical medicineZoologyBabesiaLYME BORRELIOSISBorrelia miyamotoipitkittäistutkimusTickBorrelia afzeliiMicrobiologyticksEncephalitis Viruses Tick-Borne03 medical and health sciencesCOINFECTIONSparasitic diseasesGram-Negative BacteriamedicineAnimalsBorrelia burgdorferiIxodesIXODES-RICINUS TICKSbiology.organism_classificationbacterial infections and mycosespunkitBorrelia-bakteeritmonitoring030104 developmental biologyNationwideitiöeläimetInsect ScienceParasitologyBorrelia gariniinationwideCANDIDATUS NEOEHRLICHIA MIKURENSISTicks and tick-borne diseases
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Predicting habitat suitability for Ixodes ricinus and Ixodes persulcatus ticks in Finland

2022

AbstractBackgroundTicks are responsible for transmitting several notable pathogens worldwide. Finland lies in a zone where two human-biting tick species co-occur:IxodesricinusandIxodespersulcatus. Tick densities have increased in boreal regions worldwide during past decades, and tick-borne pathogens have been identified as one of the major threats to public health in the face of climate change.MethodsWe used species distribution modelling techniques to predict the distributions ofI.ricinusandI.persulcatus,using aggregated historical data from 2014 to 2020 and new tick occurrence data from 2021. By aiming to fill the gaps in tick occurrence data, we created a new sampling strategy across Fin…

1171 GeosciencesmallintaminenPOPULATION-DYNAMICSIxodes ricinusVECTORBORRELIAIxodes persulcatusBorreliaburgdorferi sensu latozoonoositpaikkatietoanalyysipuutiaisetpuutiaisaivotulehdusBURGDORFERI SENSU-LATOEncephalitis Viruses Tick-BorneSpecies distribution modellingAnimalsHumansQUESTING ACTIVITYEcosystemFinland11832 Microbiology and virologyIxodesDeerixodes persulcatusTick-borne pathogenIXODES-RICINUS TICKSEnsemble predictionennusteetlevinneisyysBORNE ENCEPHALITIS-VIRUSHares11831 Plant biologyixodes ricinusspecies distribution modellingpunkitCLIMATEBorrelia-bakteeritInfectious Diseasestaudinaiheuttajattick-borne pathogenborrelioosiIXODIDAEParasitologyABUNDANCEBorrelia burgdorferi sensu latoensemble prediction
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Diversity of ankA and msp4 genes of Anaplasma phagocytophilum in Slovenia.

2015

Granulocytic anaplasmosis is a tick transmitted emerging disease in Europe and worldwide. The agent, Anaplasma phagocytophilum is transmitted by ticks of the genus Ixodes and causes infections in humans and domestic animals. The analysis of different target genes showed that in nature several genetic variants of A. phagocytophilum were present. The purpose of our study was to genetically characterize A. phagocytophilum strains from eight humans, 16 dogs, 12 wild boars, one bear and 18 tick pools from Slovenia. Therefore, the ankA and msp4 genes of A. phagocytophilum were chosen. The same genetic ankA and msp4 variant of A. phagocytophilum was detected in humans, wild boar and a part of the …

AnaplasmosisIxodes ricinusSwineanimal diseasesMolecular Sequence DataSloveniaSus scrofaTickMicrobiologyDogsWild boarBacterial Proteinsbiology.animalparasitic diseasesmedicineAnimalsHumansDog DiseasesGenebiologyBase SequenceIxodesDeerGenetic variantsSequence Analysis DNAbacterial infections and mycosesbiology.organism_classificationmedicine.diseaseAnaplasma phagocytophilumVirologyInfectious DiseasesInsect SciencebacteriaParasitologyIxodesAnaplasmosisAnaplasma phagocytophilumTicks and tick-borne diseases
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