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Spatial patterns of pathogen prevalence in questing Ixodes ricinus nymphs in southern Scandinavia, 2016

Authors :
Kjær, Lene Jung
Klitgaard, Kirstine
Soleng, Arnulf
Edgar, Kristin Skarsfjord
Lindstedt, Heidi Elisabeth H.
Paulsen, Katrine M.
Andreassen, Åshild Kristine
Korslund, Lars
Kjelland, Vivian
Slettan, Audun
Stuen, Snorre
Kjellander, Petter
Christensson, Madeleine
Teräväinen, Malin
Baum, Andreas
Jensen, Laura Mark
Bødker, Rene
Kjær, Lene Jung
Klitgaard, Kirstine
Soleng, Arnulf
Edgar, Kristin Skarsfjord
Lindstedt, Heidi Elisabeth H.
Paulsen, Katrine M.
Andreassen, Åshild Kristine
Korslund, Lars
Kjelland, Vivian
Slettan, Audun
Stuen, Snorre
Kjellander, Petter
Christensson, Madeleine
Teräväinen, Malin
Baum, Andreas
Jensen, Laura Mark
Bødker, Rene
Source :
Kjær , L J , Klitgaard , K , Soleng , A , Edgar , K S , Lindstedt , H E H , Paulsen , K M , Andreassen , Å K , Korslund , L , Kjelland , V , Slettan , A , Stuen , S , Kjellander , P , Christensson , M , Teräväinen , M , Baum , A , Jensen , L M & Bødker , R 2020 , ' Spatial patterns of pathogen prevalence in questing Ixodes ricinus nymphs in southern Scandinavia, 2016 ' , Scientific Reports , vol. 10 , no. 1 , 19376 .
Publication Year :
2020

Abstract

Tick-borne pathogens cause diseases in animals and humans, and tick-borne disease incidence is increasing in many parts of the world. There is a need to assess the distribution of tick-borne pathogens and identify potential risk areas. We collected 29,440 tick nymphs from 50 sites in Scandinavia from August to September, 2016. We tested ticks in a real-time PCR chip, screening for 19 vector-associated pathogens. We analysed spatial patterns, mapped the prevalence of each pathogen and used machine learning algorithms and environmental variables to develop predictive prevalence models. All 50 sites had a pool prevalence of at least 33% for one or more pathogens, the most prevalent being Borrelia afzelii, B. garinii, Rickettsia helvetica, Anaplasma phagocytophilum, and Neoehrlichia mikurensis. There were large diferences in pathogen prevalence between sites, but we identifed only limited geographical clustering. The prevalence models performed poorly, with only models for R. helvetica and N. mikurensis having moderate predictive power (normalized RMSE from 0.74–0.75, R2 from 0.43–0.48). The poor performance of the majority of our prevalence models suggest that the used environmental and climatic variables alone do not explain pathogen prevalence patterns in Scandinavia, although previously the same variables successfully predicted spatial patterns of ticks in the same area.

Details

Database :
OAIster
Journal :
Kjær , L J , Klitgaard , K , Soleng , A , Edgar , K S , Lindstedt , H E H , Paulsen , K M , Andreassen , Å K , Korslund , L , Kjelland , V , Slettan , A , Stuen , S , Kjellander , P , Christensson , M , Teräväinen , M , Baum , A , Jensen , L M & Bødker , R 2020 , ' Spatial patterns of pathogen prevalence in questing Ixodes ricinus nymphs in southern Scandinavia, 2016 ' , Scientific Reports , vol. 10 , no. 1 , 19376 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1233158635
Document Type :
Electronic Resource