Historical associations and spatiotemporal changes of pathogen presence in ticks in Canada: A systematic review

Author:

Crandall Kirsten E.123ORCID,Millien Virginie23ORCID,Kerr Jeremy T.1ORCID

Affiliation:

1. Department of Biology University of Ottawa Ottawa Ontario Canada

2. Department of Biology McGill University Montréal Quebec Canada

3. Redpath Museum McGill University Montréal Quebec Canada

Abstract

AbstractBackgroundStarting in the early 20th century, ticks and their pathogens have been detected during surveillance efforts in Canada. Since then, the geographic spread of tick vectors and tick‐borne pathogens has steadily increased in Canada with the establishment of tick and host populations. Sentinel surveillance in Canada primarily focuses on Ixodes scapularis, which is the main vector of Borrelia burgdorferi, the bacterium causing Lyme disease. Other tick‐borne pathogens, such as Anaplasma, Babesia, and Rickettsia species, have lower prevalence in Canada, but they are emerging or re‐emerging in tick and host populations.Aims/Materials & MethodsHere, we assessed the historical associations between tick vectors, hosts and pathogens and identified spatiotemporal clusters of pathogen presence in ticks in Canada using data extracted from the literature.ResultsApproximately one‐third of ticks were infected with a pathogen, and these ticks were feeding primarily on bird and mammal hosts. B. burgdorferi was the most detected pathogen and I. scapularis harboured the greatest number of pathogens. We identified several spatial outliers of high pathogen presence in ticks in addition to five spatiotemporal clusters in southern Canada, all of which have long‐established tick populations. Six spatiotemporal clusters of high pathogen presence in ticks were also identified based on surveillance method, with four clusters associated with passive surveillance and two clusters associated with active surveillance.DiscussionOur review represents the first systematic assessment of the literature that identifies historical associations and spatiotemporal changes in tick‐host‐pathogen disease systems in Canada over broad spatial and temporal scales.ConclusionAs distinct spatiotemporal clusters were identified based on surveillance method, it is imperative that surveillance efforts employ standardized methods and data reporting to comprehensively assess the presence, spread and risk of tick‐borne pathogens in tick and host populations.

Funder

Hydro-Québec

Natural Sciences and Engineering Research Council of Canada

Publisher

Wiley

Subject

Infectious Diseases,Public Health, Environmental and Occupational Health,General Veterinary,General Immunology and Microbiology,Epidemiology

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