Genotyping of tick-borne encephalitis and Kemerovo viruses in taiga ticks collected in the Komi Republic
- Authors: Kartashov M.Y.1,2, Mikryukova T.P.1, Krivosheina E.I.1,2, Kuznetsov A.I.1,2, Glushkova L.I.3, Korabel`nikov I.V.4, Egorova Y.I.4, Ternovoi V.A.1, Loktev V.B.1,2,5
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Affiliations:
- State Research Center for Virology and Biotechnology “Vector”
- Novosibirsk State University
- Federal Service for Surveillance in Consumer Rights Protections and Human Well-Being, Department of the Komi Republic
- “Disinfection ”, Federal Service for Surveillance in Consumer Rights Protections and Human Well-Being
- Institute of Cytology and Genetics the Siberian Branch of the RAS
- Issue: Vol 10, No 1 (2020)
- Pages: 159-166
- Section: ORIGINAL ARTICLES
- Submitted: 12.02.2019
- Accepted: 16.09.2019
- Published: 05.04.2020
- URL: https://iimmun.ru/iimm/article/view/1147
- DOI: https://doi.org/10.15789/2220-7619-GOT-1147
- ID: 1147
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Abstract
Over the last years, an increasing rate of ixodes tick bites has been registered in the northern regions of the European Russia. In addition, the number of subjects request medical assistance due to tick bites has been dramatically increased in the Komi Republic. In addition, incidence of tick-borne encephalitis was also increased particularly starting since 2009. However, highly limited data on pathogen genetic diversity related to viral tick-borne infections in this region are currently available. Taiga ticks (Ixodespersulcatus) collected from the Komi Republic southern and central part vegetation were examined to identify and genotype tick-borne viruses. Individual ticks were used to identify by RT-PCR viral RNA coupled to tick-borne encephalitis and Kemerovo viruses. Viral genome fragment sequencing allowed to unambiguously identify these viruses. It was found that viral RNA tick-borne encephalitis was detected in 6.8±1.2% individual ticks. Moreover, tick-linked isolate genotyping based on analyzing E protein gene fragment nucleotide sequence derived from tick-borne encephalitis discovered that 35% and 65% isolates belonged to the Far Eastern and Siberian subtype, respectively. In addition, subsequent phylogenetic analysis demonstrated that at least four variants of the Siberian and Far Eastern subtypes of tick-borne encephalitis virus were detected, which were close to the viruses circulating in the Urals and Siberia. In contrast, prevalence of Kemerovo virus in taiga ticks was 0.8±0.2%. Sequencing of Kemerovo virus RNA-dependent RNA polymerase gene fragment showed around 94% homology with the remainder of the Kemerovo virus strains. Phylogenetic analysis of the Kemerovo virus genome fragments demonstrated at least two subtypes circulating in the Komi Republic. Thus, it was suggested that tick-borne encephalitis virus was introduced relatively recently from the Urals and Siberian region into the natural foci of the Komi Republic. Moreover, genetic differences found in Kemerovo virus strains presume for them a longer lasting evolution throughout the natural foci of this region. In addition, a potential role for birds and their ticks in rapid spreading of viral tick-borne infections in the Komi Republic is also discussed. Thus, the data on genetic diversity of the viral agents related to tick-born encephalitis and Kemerovo fever may be useful for improving their diagnostics, prevention and treatment in the Komi Republic.
About the authors
M. Yu Kartashov
State Research Center for Virology and Biotechnology “Vector”; Novosibirsk State University
Email: mikkartash@yandex.ru
ORCID iD: 0000-0002-7857-6822
Mikhail Yu. Kartashov - PhD (Biology), Senior Researcher, Department of Molecular Virology for Flaviviruses and Viral Hepatitis, SRC for Virology and Biotechnology “Vector”, Koltsovo; Researcher, Biotechnology and Virology Laboratory, NSU.
630559, Novosibirsk Region, Koltsovo, Phone: +7 923 419-31-92 (mobile), Fax: +7 (383) 336-74-09
РоссияT. P. Mikryukova
State Research Center for Virology and Biotechnology “Vector”
Email: mikryukova_tp@vector.nsc.ru
ORCID iD: 0000-0003-4350-4260
PhD (Biology), Senior Researcher, Department Molecular Virology for Flaviviruses and Viral Hepatitis, SRC for Virology and Biotechnology “Vector”.
Koltsovo, Novosibirsk Region РоссияE. I. Krivosheina
State Research Center for Virology and Biotechnology “Vector”; Novosibirsk State University
Email: krivosheina_ei@vector.nsc.ru
Research Assistant, Department of Molecular Virology for Flaviviruses and Viral Hepatitis, SRC for Virology and Biotechnology “Vector”; Master, Chair of Biotechnology, NSU.
Koltsovo, Novosibirsk Region
РоссияA. I. Kuznetsov
State Research Center for Virology and Biotechnology “Vector”; Novosibirsk State University
Email: kuznetsov_ai@vector.nsc.ru
Research Assistant, Department of Molecular Virology for Flaviviruses and Viral Hepatitis, SRC for Virology and Biotechnology “Vector”; Master, Chair of Information Biology, NSU.
Novosibirsk РоссияL. I. Glushkova
Federal Service for Surveillance in Consumer Rights Protections and Human Well-Being, Department of the Komi Republic
Email: gigprof@list.ru
PhD, MD (Medicine), Professor, Head of the Komi Republic Department of FS for Surveillance in Consumer Rights Protections and Human Well-Being.
Syktyvkar
РоссияI. V. Korabel`nikov
“Disinfection ”, Federal Service for Surveillance in Consumer Rights Protections and Human Well-Being
Email: gigprof@list.ru
PhD, MD (Medicine), Professor, Head of the “Disinfection”, FS for Surveillance in Consumer Rights Protections and Human Well-Being.
Syktyvkar
РоссияYu. I. Egorova
“Disinfection ”, Federal Service for Surveillance in Consumer Rights Protections and Human Well-Being
Email: gigprof@list.ru
Entomologist, “Disinfection”, FS for Surveillance in Consumer Rights Protections and Human Well- Being.
Syktyvkar
РоссияV. A. Ternovoi
State Research Center for Virology and Biotechnology “Vector”
Email: tern@vector.nsc.ru
ORCID iD: 0000-0003-1275-171X
PhD (Biology), Head of the Laboratory of Molecular Epidemiology of Highly Dangerous Infections, Department of Molecular Virology for Flaviviruses and Viral Hepatitis SRC for Virology and Biotechnology “Vector”.
Koltsovo, Novosibirsk Region
РоссияV. B. Loktev
State Research Center for Virology and Biotechnology “Vector”; Novosibirsk State University; Institute of Cytology and Genetics the Siberian Branch of the RAS
Author for correspondence.
Email: valeryloktev@gmail.com
ORCID iD: 0000-0002-0229-321X
PhD, MD (Biology), Professor, Head of the Department of Molecular Virology for Flaviviruses and Viral Hepatitis, SRC for Virology and Biotechnology “Vector”.
Koltsovo, Novosibirsk Region
РоссияReferences
- Глушкова Л.И., Корабельников И.В., Егорова Ю.И., Терновой В.А., Протопопова Е.В., Микрюкова Т.П., Кононова Ю.В., Чаусов Е.В., Локтев В.Б. Возбудители инфекционных заболеваний в организме таежного клеща на территории Республики Коми // Дезинфекционное дело. 2012. № 1. С. 52—55.
- Глушакова Л.И., Корабельников И.В., Терновой В.А., Протопопова Е.В., Микрюкова Т.П., Кононова Ю.В., Коновалова С.Н., Тупота Н.Л., Карташов М.Ю., Чаусов Е.В., Локтев В.Б., Егорова Ю.И. Выявление возбудителей заболеваний в Ixodes persulcatus на территории Республики Коми // Сибирский медицинский журнал. 2012. T. 111, № 4. С. 88—91.
- Микрюкова Т.П., Чаусов Е.В., Коновалова С.Н., Кононова Ю.В., Протопопова Е.В., Карташов М.Ю., Терновой В.А., Глушкова Л.И., Корабельников И.В., Егорова Ю.И., Локтев В.Б. Генетическое разнообразие вируса клещевого энцефалита в клещах Ixodes persulcatus в северо-восточном регионе Европейской части России // Паразитология. 2014. T. 48, № 2. С. 131—149.
- Сафонова М.В., Дедков В.Г., Гмыль А.П., Карганова Г.Г., Сперанская А.С., Неверов А.Д., Федонин Г.Г., Валдохина А.В., Пимкина Е.В., Маркелов М.Л., Шипулин Г.А. Изучение генетического разнообразия вируса Кемерово // Национальные приоритеты России. 2016. № 4 (22). C. 96—100.
- Dai X., Shang G., Lu S., Yang J., Xu J. A new subtype of eastern tick-borne encephalitis virus discovered in Qinghai-Tibet Plateau, China. Emerg. Microbes Infect., 2018, vol. 74, no. 7. doi: 10.1038/s41426-018-0081-6
- Dedkov V.G., Markelov M.L., Gridneva K.A., Bekova M.V., Gmyl A.P., Kozlovskaya L.I., Karganova G.G., Romanova L.Iu., Pogodina V.V., Yakimenko V.V., Shipulin G.A. Prevalence of Kemerovo virus in ixodid ticks from the Russian Federation. Ticks Tick-Borne Dis., 2014, vol. 5, no. 6, pp. 651—655. doi: 10.1016/j.ttbdis.2014.04.017
- Dilcher M., Hasib L., Lechner M., Wieseke N., Middendorf M., Marz M., Koch A., Spiegel M., Dobler G., Hufert F.T., Weidmann M. Genetic characterization of Tribec virus and Kemerovo virus, two tick-transmitted human-pathogenic Orbiviruses. Virology, 2012, vol. 423, no. 1, pp. 68—76. doi: 10.1016/j.virol.2011.11.020
- Ecker M., Allison S.L., Meixner T., Heinz F.X. Sequence analysis and genetic classification of tick-born encephalitis viruses from Europe and Asia. J. Gen. Virol., 1999, vol. 80 (Pt.1), pp. 179-185. doi: 10.1099/0022-1317-80-1-179
- Grard G., Moureau G., Charrel R.N., Lemasson J.J., Gonzalez J.P., Gallian P., Gritsun T.S., Holmes E.C., Gould E.A., de Lam-ballerie X. Genetic characterization of tick-borne flaviviruses: new insights into evolution, pathogenetic determinants and taxonomy. Virology, 2007, vol. 361, no. 1, pp. 80-92. doi: 10.1016/j.virol.2006.09.015
- Gritsun T.S., Lashkevich V.A., Gould E.A. Tick-born encephalitis. Antiviral Res., 2003, vol. 57, no. 1-2, pp. 129-146. doi: 10.1016/S0166-3542(02)00206-1
- Hubalek Z., Rudolf I. Tick-borne viruses in Europe. Parasitol. Res., 2012, vol. 111, no. 1,pp. 9-36. doi: 10.1()()7/s()()436-()12-291()-1
- Kumar S., Stecher G., Tamura K. (2015) MEGA7: Molecular Evolutionary Genetics Analysis version 7.0 for Bigger Datasets. Mol. Biol. Evol, 2015, vol. 33, no. 7, pp. 1870-1874. doi: 10.1093/molbev/msw054
- Major L., Linn M.L., Slade R.W., Schroder W.A., Hyatt A.D., Gardner J., Cowley J., Suhrbier A. Ticks associated with Macquarie island penguins carry arboviruses from four genera. PLoS One, 2009, vol. 4, no. 2. doi: 10.1371/journal.pone.0004375
- Mikryukova T.P., Moskvitina N.S., Kononova Y.V., Korobitsyn I.G., Kartashov M.Y., Tyuten’kov O.Y., Protopopova E.V., Romanenko V.N., Chausov E.V., Gashkov S.I., Konovalova S.N., Moskvitin S.S., Tupota N.L., Sementsova A.O., Ternovoi V.A., Loktev V.B. Surveillance of tick-borne encephalitis virus in wild birds and ixodes ticks in Tomsk city and its suburbs (Western Siberia). Ticks and Tick-Borne Dis., 2014, vol. 5, no. 2, pp. 145—151. doi: 10.1016/j.ttbdis.2013.10.004
- Okonechnikov K., Golosova O., Fursov M., the UGENE team. Unipro UGENE: a unified bioinformatics toolkit. Bioinformatics, 2012, vol. 28, no. 8, pp. 1166—1167. doi: 10.1093/bioinformatics/bts091
- Tkachev S.E., Tikunov A.Y., Babkin I.V., Livanova N.N., Livanov S.G., Panov V.V., Yakimenko V.V., Tantsev A.K., Taranenko D.E., Tikunova N.V. Occurrence and genetic variability of Kemerovo virus in Ixodes ticks from different regions of Western Siberia, Russia and Kazakhstan. Infect. Genet. Evol, 2017, vol. 47, pp. 56—63. doi: 10.1016/j.meegid.2016.11.007
- Tokarevich N.K., Tronin A.A., Blinova O.V., Buzinov R.V., Boltenkov V.P., Yurasova E.D., Nurse J. The impact of climate change on the expansion of Ixodes persulcatus habitat and the incidence of tick-borne encephalitis in the north of European Russia. Glob. Health Action, 2011, no. 4: 8448. doi: 10.3402/gha.v4i0.8448
- Tokarevich N., Tronin A., Gnativ B., Revich B., Blinova O., Evengard B. Impact of air temperature variations on the ixodid ticks habitat and tick-borne encephalitis incidence in the Russian Arctic: the case of Komi Republic. Int. J. Circumpolar. Health, 2017, vol. 76, no. 1:1298882. doi: 10.1080/22423982.2017.1298882