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@article{MBB_2017_12_2_a4, author = {Zh. S. Tyulko and V. A. Kutyrkin and M. B. Chaley}, title = {Structural-statistical properties of the flavivirus genomes}, journal = {Matemati\v{c}eska\^a biologi\^a i bioinformatika}, pages = {343--353}, publisher = {mathdoc}, volume = {12}, number = {2}, year = {2017}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/MBB_2017_12_2_a4/} }
TY - JOUR AU - Zh. S. Tyulko AU - V. A. Kutyrkin AU - M. B. Chaley TI - Structural-statistical properties of the flavivirus genomes JO - Matematičeskaâ biologiâ i bioinformatika PY - 2017 SP - 343 EP - 353 VL - 12 IS - 2 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/MBB_2017_12_2_a4/ LA - ru ID - MBB_2017_12_2_a4 ER -
Zh. S. Tyulko; V. A. Kutyrkin; M. B. Chaley. Structural-statistical properties of the flavivirus genomes. Matematičeskaâ biologiâ i bioinformatika, Tome 12 (2017) no. 2, pp. 343-353. http://geodesic.mathdoc.fr/item/MBB_2017_12_2_a4/
[1] Kutyrkin V. A., Chalei M. B., “Model organizatsii kodirovaniya v prokarioticheskikh organizmakh”, Matematicheskaya biologiya i bioinformatika, 11:1 (2016), 24–45 | DOI
[2] Chaley M., Kutyrkin V., “Stochastic model of homogeneous coding and latent periodicity in DNAsequences”, Journal of Theoretical Biology, 390 (2016), 106–116 | DOI | MR
[3] Kutyrkin V. A., Chalei M. B., “Spektralno-statisticheskii podkhod k raspoznavaniyu skrytoi profilnoi periodichnosti v posledovatelnostyakh DNK”, Matematicheskaya biologiya i bioinformatika, 9:1 (2014), 33–62 | DOI
[4] Lvov D. K. (red.), Rukovodstvo po virusologii: Virusy i virusnye infektsii cheloveka i zhivotnykh, Meditsinskoe informatsionnoe agentstvo, M., 2013
[5] 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 Lamballerie X., “Genetic characterization of tick-borne flaviviruses: New insights into evolution, pathogenetic determinants and taxonomy”, Virology, 361 (2007), 80–92 | DOI
[6] Blitvich B. J., Firth A. E., “Insect-specific flaviviruses: a systematic review of their discovery, host range, mode of transmission, superinfection exclusion potential and genomic organization”, Viruses, 7 (2015), 1927–1959 | DOI
[7] Calzolari M., Zé-Zé L., Vazquez A., Seco M. P.S., Amaro F., Dottori M., “Insect-specific flaviviruses, a worldwide widespread group of viruses only detected in insects”, Infection., Genetics and Evolution, 40 (2016), 381–388 | DOI
[8] Holbrook M. R., “Historical Perspectives on Flavivirus Research”, Viruses, 9:5 (2017), 97 | DOI
[9] Subbotina E. L., Loktev V. B., “Molecular evolution of the tick-borne encephalitis and Powassan viruses”, Molecular Biology, 46 (2012), 75–84 | DOI
[10] Yastrebov V. K., Yakimenko V. V., “Omskaya gemorragicheskaya likhoradka: itogi issledovanii (1946–2013)”, Voprosy virusologii, 59:6 (2014), 5–11
[11] Platonov A. E., Avksentev N. A., Avksenteva M. V., Derkach E. V., Platonova O. V., Titkov A. V., Kolyasnikova N. M., “Sotsialno-ekonomicheskoe bremya pyati prirodno-ochagovykh infektsii v Rossiiskoi Federatsii”, Farmakoekonomika. Sovremennaya farmakoekonomika i farmakoepidemiologiya, 8:1 (2015), 47–56
[12] Belikov S. I., Kondratov I. G., Leonova G. N., “Molekulyarno-geneticheskaya kharakteristika i evolyutsiya virusov gruppy kleschevogo entsefalita v dalnevostochnom prirodnom ochage”, Natsionalnye prioritety Rossii, 3:13 (2014), 96–99
[13] Huang Y.-J. S., Higgs S., Horne K. M., Vanlandingham D. L., “Flavivirus-Mosquito Interactions”, Viruses, 6 (2014), 4703–4730 | DOI
[14] Duffy S., Shackelton L. A., Holmes E. C., “Rates of evolutionary change in viruses: patterns and determinants”, Nature Reviews Genetics, 9 (2008), 267–276 | DOI
[15] GenBank, (data obrascheniya 12.06.2017) https://www.ncbi.nlm.nih.gov/genbank/
[16] KEGG: Kyoto Encyclopedia of Genes and Genomes, (data obrascheniya: 10.05.2017) http://www.kegg.jp
[17] Lorenz I. C., Allison S. L., Heinz F. X., Helenius A., “Folding and Dimerization of Tick-Borne Encephalitis Virus Envelope Proteins prM and E in the Endoplasmic Reticulum”, J. of Virology, 76:11 (2002), 5480–5491 | DOI
[18] Chambers T. J., Hahn C. S., Galler R., Rice C. M., “Flavivirus genome organization, expression and replication”, Ann. Rev. Microbiol., 44 (1990), 649–688 | DOI
[19] Dunster L. M., Gibson C. A., Stephenson J. R., Minor P. D., Barrett A. D., “Attenuation of virulence of flaviviruses following passage on HeLa cells”, J. Gen. Virol., 71 (1990), 601–607 | DOI
[20] McMinn P. S., Marshall I. D., Dalgarno L., “Neurovirulence and neuroinvasivenes of Murrey Valley encephalitis virus mutants selected by passage in a monkey kidney cell line”, J. Gen. Virol., 76 (1995), 865–872 | DOI
[21] Combe M., Sanjuán R., “Variation in RNA virus mutation rates across host cells”, PLoS Pathog., 10 (2014), e1003855 | DOI