A multi-year assessment of blacklegged tick (Ixodes scapularis) population establishment and Lyme disease risk areas in Ottawa, Canada, 2017-2019

Author:

Burrows Holly,Talbot Benoit,McKay Roman,Slatculescu Andreea,Logan James,Thickstun Charles,Lindsay L. Robbin,Dibernardo Antonia,Koffi Jules K.,Ogden Nicholas H.,Kulkarni Manisha A.ORCID

Abstract

Canadians face an emerging threat of Lyme disease due to the northward expansion of the tick vector,Ixodes scapularis. We evaluated the degree ofI.scapularispopulation establishment andBorrelia burgdorferioccurrence in the city of Ottawa, Ontario, Canada from 2017–2019 using active surveillance at 28 sites. We used a field indicator tool developed by Clow et al. to determine the risk ofI.scapularisestablishment for each tick cohort at each site using the results of drag sampling. Based on results obtained with the field indicator tool, we assigned each site an ecological classification describing the pattern of tick colonization over two successive cohorts (cohort 1 was comprised of ticks collected in fall 2017 and spring 2018, and cohort 2 was collected in fall 2018 and spring 2019). Total annual site-specificI.scapularisdensity ranged from 0 to 16.3 ticks per person-hour. Sites with the highest density were located within the Greenbelt zone, in the suburban/rural areas in the western portion of the city of Ottawa, and along the Ottawa River; the lowest densities occurred at sites in the suburban/urban core.B.burgdorferiinfection rates exhibited a similar spatial distribution pattern. Of the 23 sites for which data for two tick cohorts were available, 11 sites were classified as “high-stable”, 4 were classified as “emerging”, 2 were classified as “low-stable”, and 6 were classified as “non-zero”.B.burgdorferi-infected ticks were found at all high-stable sites, and at one emerging site. These findings suggest that high-stable sites pose a risk of Lyme disease exposure to the community as they have reproducing tick populations with consistent levels ofB.burgdorferiinfection. Continued surveillance forI.scapularis,B.burgdorferi, and range expansion of other tick species and emerging tick-borne pathogens is important to identify areas posing a high risk for human exposure to tick-borne pathogens in the face of ongoing climate change and urban expansion.

Funder

Public Health Agency of Canada

Canadian Institutes of Health Research

Natural Sciences and Engineering Research Council of Canada

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference37 articles.

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5. Ottawa Public Health. Cases of Infectious Disease of Public Health Signfiicance in Ottawa by year, 2014–2018 Ottawa: Ottawa Public Health. https://www.ottawapublichealth.ca/en/reports-research-and-statistics/infectious-diseases.aspx#cases.

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