Literature DB >> 18727366

[Detection of the West Nile Virus and its genetic typing in ixodid ticks (Parasitiformes: Ixodidae) in Tomsk City and its suburbs].

N S Moskvitina, V N Romanenko, V A Ternovoĭ, N V Ivanova, E V Protopopova, L B Kravchenko, Iu V Kononova, V N Kuranova, E V Chausov, S S Moskvitin, N L Pershikova, S I Gashkov, S N Konovalova, N P Bol'shakova, V B Loktev.   

Abstract

Four tick species, Ixodes persulcatus, I. pavlovskyi, I. trianguliceps, and Dermacentor reticulatus, were found in Tomsk and its suburbs in 2006. The species I. pavlovskyi was found to be dominant in the localities situated in Tomsk City, and I. persulcatus was dominant in its suburbs. Viral RNA and viral antigen of the West Nile virus (WNV) were detected in the ticks I. pavlovskyi and I. persulcatus collected in the city and its suburbs by the RT PCR method and enzyme immunoassay with monoclonal antibodies against protein E of the WNV. Average rate of the WNV infected ticks varied from 5.2 up to 11.7% in different localities. Identification of the nucleotide sequence of the protein E gene fragment allowed classifying the cDNA obtained as genotype Ia of the WNV. The sequences are proved similar to the strain LEIV-Vlg99-27889-human of the WNV isolated in Volgograd. The obtained data showed that natural foci of the WNV virus can appear in the city and its suburbs probably involving two dominant tick species. The WNV infected imagoes, larvae, and nymphs of I. persulcatus and I. pavlovskyi were collected from small mammals, lizards, and birds. Therefore we presume that these hosts can be involved in the circulation and distribution of WNV on the territory of Tomsk Region.

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Year:  2008        PMID: 18727366

Source DB:  PubMed          Journal:  Parazitologiia        ISSN: 0031-1847


  5 in total

1.  West nile virus.

Authors:  Georg Pauli; Ursula Bauerfeind; Johannes Blümel; Reinhard Burger; Christian Drosten; Albrecht Gröner; Lutz Gürtler; Margarethe Heiden; Martin Hildebrandt; Bernd Jansen; Thomas Montag-Lessing; Ruth Offergeld; Rainer Seitz; Uwe Schlenkrich; Volkmar Schottstedt; Johanna Strobel; Hannelore Willkommen
Journal:  Transfus Med Hemother       Date:  2013-07-04       Impact factor: 3.747

2.  West Nile virus adaptation to ixodid tick cells is associated with phenotypic trade-offs in primary hosts.

Authors:  Alexander T Ciota; Anne F Payne; Laura D Kramer
Journal:  Virology       Date:  2015-04-09       Impact factor: 3.616

3.  Generation of a Lineage II Powassan Virus (Deer Tick Virus) cDNA Clone: Assessment of Flaviviral Genetic Determinants of Tick and Mosquito Vector Competence.

Authors:  Joan L Kenney; Michael Anishchenko; Meghan Hermance; Hannah Romo; Ching-I Chen; Saravanan Thangamani; Aaron C Brault
Journal:  Vector Borne Zoonotic Dis       Date:  2018-05-21       Impact factor: 2.133

4.  On the potential roles of ticks and migrating birds in the ecology of West Nile virus.

Authors:  Karl Hagman; Christos Barboutis; Christian Ehrenborg; Thord Fransson; Thomas G T Jaenson; Per-Eric Lindgren; Ake Lundkvist; Fredrik Nyström; Jonas Waldenström; Erik Salaneck
Journal:  Infect Ecol Epidemiol       Date:  2014-01-15

5.  The complete sequence of a West Nile virus lineage 2 strain detected in a Hyalomma marginatum marginatum tick collected from a song thrush (Turdus philomelos) in eastern Romania in 2013 revealed closest genetic relationship to strain Volgograd 2007.

Authors:  Jolanta Kolodziejek; Mihai Marinov; Botond J Kiss; Vasile Alexe; Norbert Nowotny
Journal:  PLoS One       Date:  2014-10-03       Impact factor: 3.240

  5 in total

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