Cite

1. Costard S, Wieland B, de Glanville W, Jori F, Rowlands R, Vosloo W, Dixon, L. P: African swine fever: How can global spread be prevented? Philos Trans R Soc Lond B Biol Sci. 2009, 364: 2683–2696.10.1098/rstb.2009.0098Search in Google Scholar

2. Yurkov GG, Peskovatskov AP, Shpakov AK, Makarevich VG, Cherevatenko BN, Balabanov VA: The report of results on studying the emergence and transmission of african swine fever (ASF) in Odessa region in 1977/SSiVNIIVViM the Russian Academy of Agricultural Science 2014, 63.Search in Google Scholar

3. Rowlands RJ, Michaud V, Heath L, Hutchings G, Oura C, Vosloo W, Dixon LK: African swine fever virus isolate, Georgia, 2007. Emerg Infect Dis. 2008, 14: 1870–1874.10.3201/eid1412.080591Search in Google Scholar

4. Sánchez-Vizcaíno JM, Mur L, Martínez-López B: African swine fever: an epidemiological update. Transbound Emerg Dis.2012, 59: 27-35.10.1111/j.1865-1682.2011.01293.xSearch in Google Scholar

5. Chapman DAG, Darby AC, Da Silva M, Upton C, Radford AD, Dixon LK: Genomic Analysis of Highly Virulent Georgia 2007/1 Isolate of African Swine Fever Virus. Emerg Infect Dis. 2011, 17(4): 599–605.10.3201/eid1704.101283Search in Google Scholar

6. Epizootic situation on ASF in the Russian Federation, in European and Asian countries in 2007-2018 Availab le online: [http://www.fsvps.ru/fsvps-docs/ru/iac/asf/2018/11-20/05.pdf]Search in Google Scholar

7. Garigliany M, Desmecht D, Tignon M, Cassart D, Lesenfant C, Paternostre J, Linden A: Phylogeographic Analysis of African Swine Fever Virus, Western Europe, 2018. Emerg Infect Dis. 2019, 25(1): 184–186.10.3201/eid2501.181535Search in Google Scholar

8. Milićević V, Kureljušić B, Maksimović ZJ, Savić B, Stanojević S, Milakara E: First occurrence of African Swine Fever in Serbia. Acta Vet.-Beograd 2019, 69 (4): 443-449.10.2478/acve-2019-0038Search in Google Scholar

9. Mellor PS, Kitching RP, Wilkinson PJ: Mechanical transmission of capripox virus and African swine fever virus by Stomoxys calcitrans. Res Vet Sci. 1987, 43(1):109-12.10.1016/S0034-5288(18)30753-7Search in Google Scholar

10. Viñuela E: Molecular biology of African swine fever virus. In: Becker Y (ed) African swine fever. MartinusNijhoff, Boston 1987: 31–49.10.1007/978-1-4613-2343-3_5Search in Google Scholar

11. Zhukov IYu, Shevchenko IV, Igolkin AS, Borisova AV, Egorov AA, Vlasova NN: Identification of Clinical, Anatomical and Histological changes in the ASF and Localization of the Virus in Organs of Infected Animals. Farm Animals 2015, 3: 36-39.Search in Google Scholar

12. Pronin VV, Ryzhova EV, Korneva GV, Kolbasov DV, Belyanin SA: Immunohistochemical Characteristics of the proliferative activity B-lymphocytes of the spleen and the lymph nodes in domestic pigs in the experimental reproduction of the african swine fever. Farm Animals 2013, 1: 22-24.Search in Google Scholar

13. Belyanin SA, Vasilev AP, Kolbasov DV, Tsybanov SZh, Balyshev VM, Kurinnov V.V: Virulence of african swine fever isolates. Veterinaria Kubani 2011, 5: 9-10.Search in Google Scholar

14. Vlasov M.E: Clinical manifestations and disease pathological changes in pigs infected with asf virus isolates from wild boars. Scientific journal of KubSAU (Polythematic online scientific journal of Kuban State Agrarian University) 2017, 134: 1055-1065.10.21515/1990-4665-134-086Search in Google Scholar

15. Chen Changhai, Dong Yongyi, Kai Yan Li Feng, Jiang Xiangjun, Wu Xiaodong: Current situation on ASF in China and Strategies China has adopted since ASF introduction. The field diagnostic report on first case of African swine fever in Jiangsu province. China Animal Health and Epidemiology Center National Research Center for Exotic Animal Diseases 2018: 9-14.Search in Google Scholar

16. Vasiljev AP, Kholod RZ, Lyutkin IS, Ereshchenko DD, Belyanin SA, Kurinnov VV: Spreading of ASF virus in the wild swines population. Problems on Veterinary Sanitation, Hygiene and Ecology (Journal) 2011, 2(6): 58-59.Search in Google Scholar

17. RF patent №2577997 Strain “Kaluga-2014” of the virus for monitoring and studying of pathogenesis of the disease / Balyshev V. M., Kurinnov V. V., Vasiliev A. P.Search in Google Scholar

18. Zani L, Forth J H, Forth L, Nurmoja I, Leidenberger S, Henke J, Blome S: Deletion at the 5’-end of Estonian ASFV strains associated with an attenuated phenotype. Sci Rep. 2018, 8(1).10.1038/s41598-018-24740-1591693329695831Search in Google Scholar

19. Nurmoja I, Petrov A, Breidenstein C, Zani L, Forth JH., Beer M., Blome S: Biological characterization of African swine fever virus genotype II strains from north-eastern Estonia in European wild boar. Transbound Emerg Dis. 2017, 64(6): 2034–2041.10.1111/tbed.1261428116841Search in Google Scholar

20. Sánchez-Vizcaíno JM, Mur L, Martínez-López B: African Swine Fever: An Epidemiological Update. Transbound Emerg Dis. 2012, 59: 27–35.10.1111/j.1865-1682.2011.01293.x22225967Search in Google Scholar

21. Reis AL, Parkhouse RME, Penedos AR, Martins C, Leitao A: Systematic analysis of longitudinal serological responses of pigs infected experimentally with African swine fever virus. J General Virol. 2007, 88(9): 2426–2434.10.1099/vir.0.82857-017698651Search in Google Scholar

22. State standard 28573-90. Pigs. Methods of laboratory diagnostics of African plague. M.: STANDARTINFORM 2005, 10.Search in Google Scholar

23. Balysheva VI, Prudnikova EYu, Galnbek TV, Balyshev VM: Continuous cell subline A 4C 2/9K and its application to the african swine fever virus study. Problems Virol. 2015, 60: 43-47.Search in Google Scholar

24. Ashmarin IP, Vasil’ev NN, Ambrosov VA: Rapid Methods of Statistical Processing and Planning of Experiments (2nd ed.) [inRussian]. Leningrad: Izdatel’stvo Leningradskogo universita 1974.Search in Google Scholar

25. Kudryashov DA, Burmakina GS, Titov IA: Oligonucleotide primers and a fluorescent probe with an internal extinguisher, complementary to the African swine fever virus (CP204L) P30 gene site, for use in real-time polymerase chain reaction. IPC7 C12Q 1/68. GNU of VNIISV and M (RF) 2016, No. 2606253. Declared.15.02.2016. Bul. No. 1.Search in Google Scholar

26. Strizhakova OM, Lyska VM, Malogolovkin AS, Novikova MB, Sidlik MV, Nogina IV, Vasil’ev AP: Validation of an ELISA Kit for detection of antibodies against ASF virus in blood or spleen of domestic pigs and wild boars. Sel’skokhozyaistvennaya Biologiya [Agricultural Biology] 2016, 51: 845–852.10.15389/agrobiology.2016.6.845engSearch in Google Scholar

27. Sereda AD, Dubrovskaya OA, Imatdinov AR, Strizhakova OM, Vasil’ev AP, Sindryakova IP, Lunitsin AV: Laboratory diagnostics of chronic and asymptomatic forms of African Swine Fever. Sel’skokhozyaistvennaya Biologiya [Agricultural Biology], 51, 459–466.10.15389/agrobiology.2016.4.459engSearch in Google Scholar

28. Balyshev VM, Kurinnov VV, Tsibanov SG, Kalantaenko UF, Kolbasov DV, Korneva G.V: Biological characteristics of the African swine fever virus isolated in the Russian Federation. Vet J. 2010, 7: 25-27.Search in Google Scholar

29. Zhang Z, Schwartz S, Wagner L, Miller W: A Greedy Algorithm for Aligning DNA Sequences. Journal of Computational Biology 2000, 7(1-2), 203–214.10.1089/1066527005008147810890397Search in Google Scholar

30. Multiple Sequence Alignment Tool Available online: [http://www.ebi.ac.uk/Tools/clustalw/index.html]Search in Google Scholar

31. Gallardo C, Fernández-Pinero J, Pelayo V, Gazaev I, Markowska-Daniel I, Pridotkas G, Arias M: Genetic Variation among African Swine Fever Genotype II Viruses, Eastern and Central Europe. Emerg Infect Dis. 2014, 20(9): 1544–1547.10.3201/eid2009.140554417838925148518Search in Google Scholar

32. Sanna G, Dei Giudici S, Bacciu D, Angioi PP, Giammarioli M, De Mia G.M, Oggiano A: Improved Strategy for Molecular Characterization of African Swine Fever Viruses from Sardinia, Based on Analysis of p30, CD2V and I73R/I329L Variable Regions. Transbound. Emerg. Dis. 2017, 64(4):1280-1286.10.1111/tbed.12504Search in Google Scholar

33. Kolbasov D, Titov I, Tsybanov, Gogin A, Malogolovkin A: African Swine Fever Virus, Siberia, Russia. Emerg Infect Dis. 2017, Apr; 24: 796–798.10.3201/eid2404.171238587526829553323Search in Google Scholar

34. Titov IA, Kudryashov DA, Skhalikova MV, Sigbatullova AK: Analysis of marker genes of African Swine Fever Virus (I73R / I329L; B602L; CD2v) isolates in the territory of the Russian Federation in 2016-2017.Search in Google Scholar

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