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Direct and Indirect Role of Migratory Birds in Spreading CCHFV and WNV: A Multidisciplinary Study on Three Stop-Over Islands in Italy

Abstract

The annual movements of migratory birds can contribute to the spread of African ticks and tick-borne pathogens of potential public health concern across Europe. The aim of the study was to investigate their role in the possible introduction of African ticks and tick-borne pathogens into European countries during spring migration. A total of 2344 ticks were collected during three spring seasons from 1079 birds captured on three Italian stop-over islands during their northbound migration. Once identified, each tick was tested by RT-PCR for the presence of Crimean-Congo hemorrhagic fever (CCHFV), West Nile (WNV), and Usutu (USUV) viruses. Moreover, carcasses of birds found dead were collected and tested for the possible presence of WNV and USUV. Results confirmed a higher contribution of trans-Saharan migrants compared to intra-Palearctic ones and the prevalence of African tick species in the sample. CCHFV was detected for the second time in Italy in a , and WNV was found in two ticks of the same genus, all carried by trans-Saharan birds. WNV lineage 1 was also found in the organs of a Garden warbler. These results confirm the role of migratory birds in carrying African ticks, as well as viruses of zoonotic importance, from Africa into Europe.

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References
1.
De Liberato C, Frontoso R, Magliano A, Montemaggiori A, Autorino G, Sala M . Monitoring for the possible introduction of Crimean-Congo haemorrhagic fever virus in Italy based on tick sampling on migratory birds and serological survey of sheep flocks. Prev Vet Med. 2018; 149:47-52. DOI: 10.1016/j.prevetmed.2017.10.014. View

2.
Rizzoli A, Jimenez-Clavero M, Barzon L, Cordioli P, Figuerola J, Koraka P . The challenge of West Nile virus in Europe: knowledge gaps and research priorities. Euro Surveill. 2015; 20(20). DOI: 10.2807/1560-7917.es2015.20.20.21135. View

3.
Capek M, Literak I, Kocianova E, Sychra O, Najer T, Trnka A . Ticks of the Hyalomma marginatum complex transported by migratory birds into Central Europe. Ticks Tick Borne Dis. 2014; 5(5):489-93. DOI: 10.1016/j.ttbdis.2014.03.002. View

4.
Bakirci S, Sarali H, Aydin L, Eren H, Karagenc T . Distribution and seasonal activity of tick species on cattle in the West Aegean region of Turkey. Exp Appl Acarol. 2011; 56(2):165-78. DOI: 10.1007/s10493-011-9502-0. View

5.
Hornok S, Horvath G . First report of adult Hyalomma marginatum rufipes (vector of Crimean-Congo haemorrhagic fever virus) on cattle under a continental climate in Hungary. Parasit Vectors. 2012; 5:170. PMC: 3436687. DOI: 10.1186/1756-3305-5-170. View