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Ixodid ticks parasitizing wild carnivores in Romania

. 2017 Feb ; 71 (2) : 139-149. [epub] 20170126

Language English Country Netherlands Media print-electronic

Document type Journal Article

Links

PubMed 28124749
DOI 10.1007/s10493-017-0108-z
PII: 10.1007/s10493-017-0108-z
Knihovny.cz E-resources

In Romania, data regarding hard-tick diversity and tick-host associations in wild carnivores are scarce. We aimed to identify tick species in wild carnivores and to establish reliable data on tick-host associations. The study was conducted in various Romanian localities from all five ecoregions found in the country. Fourteen species of wild carnivores were examined. Immature and adult ticks were collected and identified using the morphological keys. The frequency and mean intensity of tick infestation, overall and differentiated by species, developmental stage and host were calculated. Of 202 wild carnivores, 68 were parasitized by seven tick species (predominantly Ixodes ricinus, I. hexagonus and Dermacentor reticulatus). The mean intensity of tick infestation was similar in males (6.97, BCa 95% CI 5.15-9.88) and females (5.76, BCa 95% CI 4.15-9.17). The highest prevalence of infested animals was recorded in the pannonian and steppic ecoregions, 66.7 and 52.7%, respectively. In the continental ecoregion the prevalence was 26.7%, whereas in the pontic ecoregion it was 28%. The lowest value, 16.7% was recorded in the alpine ecoregion. In total 430 ticks were collected, and 24.8% (n = 50) of the animals were infested with more than one tick species. Fourteen new tick-host associations were recorded. Our results suggest that anthropogenic changes of the environment lead to the diminishing of the boundaries, between wild and domestic animals, increasing the exposure for both animals and humans, to infective agents, including tick-borne pathogens.

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J Med Entomol. 1994 Mar;31(2):240-56 PubMed

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Rev Sci Tech. 2004 Aug;23(2):497-511 PubMed

Exp Appl Acarol. 2012 Oct;58(2):183-206 PubMed

Vet Parasitol. 2015 Sep 30;213(1-2):12-23 PubMed

Int J Parasitol Parasites Wildl. 2012 Nov 22;2:1-9 PubMed

J Wildl Dis. 2005 Jan;41(1):58-66 PubMed

BMC Vet Res. 2012 Aug 18;8:137 PubMed

Med Vet Entomol. 2014 Dec;28(4):465-9 PubMed

Parasitol Res. 2012 May;110(5):2067-70 PubMed

Z Parasitenkd. 1971;37(3):198-210 PubMed

Vet Parasitol. 2014 Aug 29;204(3-4):430-2 PubMed

Sci Data. 2016 Aug 01;3:160056 PubMed

Acta Vet Hung. 2013 Mar;61(1):42-50 PubMed

Ticks Tick Borne Dis. 2013 Apr;4(3):171-80 PubMed

Vector Borne Zoonotic Dis. 2009 Apr;9(2):207-8 PubMed

Am J Trop Med Hyg. 1991 Jan;44(1):100-7 PubMed

Med Vet Entomol. 1991 Oct;5(4):431-5 PubMed

Vet Parasitol. 2012 Mar 23;184(2-4):248-57 PubMed

Exp Appl Acarol. 2005;36(1-2):149-63 PubMed

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