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Ticks and tick-borne diseases in the city: Role of landscape connectivity and green space characteristics in a metropolitan area

作者:Dieter Heylen, Robin Lasters, Frank Adriaensen, Manoj Fonville, Hein Sprong, Erik Matthysen · 发表于:The Science of The Total Environment · 年份:2019 · DOI:10.1016/j.scitotenv.2019.03.235 · 被引用次数:157 · 研究领域:Vector-borne infectious diseases、Viral Infections and Vectors、Vector-Borne Animal Diseases

. We estimated connectivity using the least-cost algorithm as either the cost distance to the nearest green space, or to a known population of roe deer (Capreolus capreolus), known to be an important tick propagation host. Both connectivity measures turned out to be correlated, reflecting a gradient in green space isolation from the periphery to the urban center. In 87% of plots where ticks were trapped, at least one Borrelia-infected tick was found. The overall Borrelia-prevalence in nymphs was 17.8%, in adults 32.6%. Density of infected ticks decreased with urbanization and increased with connectivity. Nymphs in larger green spaces were more likely to be infected. While density and infection prevalence for adults increased with the amount of neighboring agricultural land, the larval density and nymphal infection prevalence decreased. Interestingly, the proportion of Borrelia genospecies associated with birds or mammals was comparable in rural and (sub)urban areas (bird/mammal: 0.38), suggesting that even in small green spaces Borrelia infections can persist in local host populations.