Differences in Genetic Diversity of Mammalian Tick-Borne Flaviviruses
Abstract
:1. Introduction
2. Materials and Methods
3. Results
4. Discussion
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Ruzek, D.; Avšič Županc, T.; Borde, J.; Chrdle, A.; Eyer, L.; Karganova, G.; Kholodilov, I.; Knap, N.; Kozlovskaya, L.; Matveev, A.; et al. Tick-Borne Encephalitis in Europe and Russia: Review of Pathogenesis, Clinical Features, Therapy, and Vaccines. Antivir. Res. 2019, 164, 23–51. [Google Scholar] [CrossRef] [PubMed]
- Gritsun, T.S.; Lashkevich, V.A.; Gould, E.A. Tick-Borne Encephalitis. Antivir. Res. 2003, 57, 129–146. [Google Scholar] [CrossRef] [PubMed]
- Varlacher, J.F.; Hägglund, S.; Juremalm, M.; Blomqvist, G.; Renström, L.; Zohari, S.; Leijon, M.; Chirico, J. Tick-borne encephalitis. Sci. Tech. Rev. 2015, 34, 453–466. [Google Scholar] [CrossRef] [Green Version]
- Rónai, Z.; Egyed, L. Survival of Tick-Borne Encephalitis Virus in Goat Cheese and Milk. Food Environ. Virol. 2020, 12, 264–268. [Google Scholar] [CrossRef]
- Phipps, L.P.; Johnson, N. 2022 JMM Profile: Tick-Borne Encephalitis Virus. J. Med. Microbiol. 2022, 71, 1492. [Google Scholar] [CrossRef]
- Kovalev, S.Y.; Mazurina, E.A.; Yakimenko, V.V. Molecular Variability and Genetic Structure of Omsk Hemorrhagic Fever Virus, Based on Analysis of the Complete Genome Sequences. Ticks Tick-Borne Dis. 2021, 12, 101627. [Google Scholar] [CrossRef]
- Beasley, D.W.; Suderman, M.T.; Holbrook, M.R.; Barrett, A.D. Nucleotide Sequencing and Serological Evidence That the Recently Recognized Deer Tick Virus Is a Genotype of Powassan Virus. Virus Res. 2001, 79, 81–89. [Google Scholar] [CrossRef]
- Carpi, G.; Bertolotti, L.; Rosati, S.; Rizzoli, A. 2009 Prevalence and Genetic Variability of Tick-Borne Encephalitis Virus in Host-Seeking Ixodes ricinus in Northern Italy. J. Gen. Virol. 2009, 90, 2877–2883. [Google Scholar] [CrossRef]
- Charrel, R.N.; Zaki, A.M.; Fakeeh, M.; Yousef, A.I.; de Chesse, R.; Attoui, H.; Lamballerie, X. de Low Diversity of Alkhurma Hemorrhagic Fever Virus, Saudi Arabia, 1994–1999. Emerg. Infect. Dis. 2005, 11, 683–688. [Google Scholar] [CrossRef] [PubMed]
- Kuno, G.; Artsob, H.; Karabatsos, N.; Tsuchiya, K.R.; Chang, G.J. Genomic Sequencing of Deer Tick Virus and Phylogeny of Powassan-Related Viruses of North America. Am. J. Trop. Med. Hyg. 2001, 65, 671–676. [Google Scholar] [CrossRef]
- Leonova, G.N.; Kondratov, I.G.; Ternovoi, V.A.; Romanova, E.V.; Protopopova, E.V.; Chausov, E.V.; Pavlenko, E.V.; Ryabchikova, E.I.; Belikov, S.I.; Loktev, V.B. Characterization of Powassan Viruses from Far Eastern Russia. Arch. Virol. 2009, 154, 811–820. [Google Scholar] [CrossRef] [PubMed]
- Ebel, G.D.; Spielman, A.; Telford, S.R. Phylogeny of North American Powassan Virus. J. Gen. Virol. 2001, 82, 1657–1665. [Google Scholar] [CrossRef] [PubMed]
- Brackney, D.E.; Brown, I.K.; Nofchissey, R.A.; Fitzpatrick, K.A.; Ebel, G.D. Homogeneity of Powassan Virus Populations in Naturally Infected Ixodes scapularis. Virology 2010, 402, 366–371. [Google Scholar] [CrossRef] [Green Version]
- Yadav, P.D.; Patil, S.; Jadhav, S.M.; Nyayanit, D.A.; Kumar, V.; Jain, S.; Sampath, J.; Mourya, D.T.; Cherian, S.S. Phylogeography of Kyasanur Forest Disease Virus in India (1957–2017) Reveals Evolution and Spread in the Western Ghats Region. Sci. Rep. 2020, 10, 1966. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Normandin, E.; Solomon, I.H.; Zamirpour, S.; Lemieux, J.; Freije, C.A.; Mukerji, S.S.; Tomkins-Tinch, C.; Park, D.; Sabeti, P.C.; Piantadosi, A. Powassan Virus Neuropathology and Genomic Diversity in Patients with Fatal Encephalitis. Open Forum Infect. Dis. 2020, 7, ofaa392. [Google Scholar] [CrossRef] [PubMed]
- Asghar, N.; Pettersson, J.H.-O.; Dinnetz, P.; Andreassen, Å.; Johansson, M. Deep Sequencing Analysis of Tick-Borne Encephalitis Virus from Questing Ticks at Natural Foci Reveals Similarities between Quasispecies Pools of the Virus. J. Gen. Virol. 2017, 98, 413–421. [Google Scholar] [CrossRef]
- Litov, A.G.; Deviatkin, A.A.; Goptar, I.A.; Dedkov, V.G.; Gmyl, A.P.; Markelov, M.L.; Shipulin, G.A.; Karganova, G.G. Evaluation of the Population Heterogeneity of TBEV Laboratory Variants Using High-Throughput Sequencing. J. Gen. Virol. 2018, 99, 240–245. [Google Scholar] [CrossRef]
- Palanisamy, N.; Akaberi, D.; Lennerstrand, J.; Lundkvist, Å. Comparative Genome Analysis of Alkhumra Hemorrhagic Fever Virus with Kyasanur Forest Disease and Tick-Borne Encephalitis Viruses by the In Silico Approach. Pathog. Glob. Health 2018, 112, 210–226. [Google Scholar] [CrossRef]
- Dodd, K.A.; Bird, B.H.; Khristova, M.L.; Albariño, C.G.; Carroll, S.A.; Comer, J.A.; Erickson, B.R.; Rollin, P.E.; Nichol, S.T. Ancient Ancestry of KFDV and AHFV Revealed by Complete Genome Analyses of Viruses Isolated from Ticks and Mammalian Hosts. PLoS Negl. Trop Dis. 2011, 5, e1352. [Google Scholar] [CrossRef] [Green Version]
- Madani, T.A.; Azhar, E.I.; Abuelzein, E.-T.M.E.; Kao, M.; Al-Bar, H.M.S.; Farraj, S.A.; Masri, B.E.; Al-Kaiedi, N.A.; Shakil, S.; Sohrab, S.S.; et al. Complete Genome Sequencing and Genetic Characterization of Alkhumra Hemorrhagic Fever Virus Isolated from Najran, Saudi Arabia. Intervirology 2014, 57, 300–310. [Google Scholar] [CrossRef]
- Tkachev, S.E.; Babkin, I.V.; Chicherina, G.S.; Kozlova, I.V.; Verkhozina, M.M.; Demina, T.V.; Lisak, O.V.; Doroshchenko, E.K.; Dzhioev, Y.P.; Suntsova, O.V.; et al. Genetic Diversity and Geographical Distribution of the Siberian Subtype of the Tick-Borne Encephalitis Virus. Ticks Tick-Borne Dis. 2020, 11, 101327. [Google Scholar] [CrossRef] [PubMed]
- Deviatkin, A.A.; Kholodilov, I.S.; Belova, O.A.; Bugmyrin, S.V.; Bespyatova, L.A.; Ivannikova, A.Y.; Vakulenko, Y.A.; Lukashev, A.N.; Karganova, G.G. Baltic Group Tick-Borne Encephalitis Virus Phylogeography: Systemic Inconsistency Pattern between Genetic and Geographic Distances. Microorganisms 2020, 8, 1589. [Google Scholar] [CrossRef] [PubMed]
- Holbrook, M.R.; Ni, H.; Shope, R.E.; Barrett, A.D.T. Amino Acid Substitution(s) in the Stem-Anchor Region of Langat Virus Envelope Protein Attenuates Mouse Neurovirulence. Virology 2001, 286, 54–61. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Davis, E.H.; Beck, A.S.; Strother, A.E.; Thompson, J.K.; Widen, S.G.; Higgs, S.; Wood, T.G.; Barrett, A.D.T. Attenuation of Live-Attenuated Yellow Fever 17D Vaccine Virus Is Localized to a High-Fidelity Replication Complex. mBio 2019, 10, e02294-19. [Google Scholar] [CrossRef] [Green Version]
- Wilm, A.; Aw, P.P.K.; Bertrand, D.; Yeo, G.H.T.; Ong, S.H.; Wong, C.H.; Khor, C.C.; Petric, R.; Hibberd, M.L.; Nagarajan, N. LoFreq: A Sequence-Quality Aware, Ultra-Sensitive Variant Caller for Uncovering Cell-Population Heterogeneity from High-Throughput Sequencing Datasets. Nucleic Acids Res. 2012, 40, 11189–11201. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Aebi, M. N-Linked Protein Glycosylation in the ER. Biochim. Biophys. Acta (BBA)-Mol. Cell Res. 2013, 1833, 2430–2437. [Google Scholar] [CrossRef] [Green Version]
- Kemenesi, G.; Bányai, K. Tick-Borne Flaviviruses, with a Focus on Powassan Virus. Clin. Microbiol. Rev. 2018, 32, e00106-17. [Google Scholar] [CrossRef] [Green Version]
- Lin, D.; Li, L.; Dick, D.; Shope, R.E.; Feldmann, H.; Barrett, A.D.T.; Holbrook, M.R. Analysis of the Complete Genome of the Tick-Borne Flavivirus Omsk Hemorrhagic Fever Virus. Virology 2003, 313, 81–90. [Google Scholar] [CrossRef] [Green Version]
- Zakotnik, S.; Knap, N.; Bogovič, P.; Zorec, T.M.; Poljak, M.; Strle, F.; Avšič-Županc, T.; Korva, M. Complete Genome Sequencing of Tick-Borne Encephalitis Virus Directly from Clinical Samples: Comparison of Shotgun Metagenomic and Targeted Amplicon-Based Sequencing. Viruses 2022, 14, 1267. [Google Scholar] [CrossRef]
- Dodd, K.A.; Bird, B.H.; Jones, M.E.B.; Nichol, S.T.; Spiropoulou, C.F. Kyasanur Forest Disease Virus Infection in Mice Is Associated with Higher Morbidity and Mortality than Infection with the Closely Related Alkhurma Hemorrhagic Fever Virus. PLoS ONE 2014, 9, e100301. [Google Scholar] [CrossRef]
- Ebel, G.D. Update on Powassan Virus: Emergence of a North American Tick-Borne Flavivirus. Annu. Rev. Entomol. 2010, 55, 95–110. [Google Scholar] [CrossRef] [PubMed]
- Oliver, J.H.; Owsley, M.R.; Hutcheson, H.J.; James, A.M.; Chen, C.; Irby, W.S.; Dotson, E.M.; McLain, D.K. Conspecificity of the Ticks Ixodes scapularis and I. dammini (Acari: Ixodidae). J. Med. Entomol. 1993, 30, 54–63. [Google Scholar] [CrossRef] [PubMed]
- Huang, S.-W.; Hung, S.-J.; Wang, J.-R. Application of Deep Sequencing Methods for Inferring Viral Population Diversity. J. Virol. Methods 2019, 266, 95–102. [Google Scholar] [CrossRef] [PubMed]
Virus Abbreviation | Virus Strain & Passage History | Comparison Accession # | % Nt Identity | Synonymous Changes | Nonsynonymous Changes | ||
---|---|---|---|---|---|---|---|
Nt | AA | Nt | AA | ||||
AHFV/Zaki-1 | AHFV/Zaki-1 smb P1, smb P2, Vero P4, Vero E6 P2, BHK-SA P1 | JF416957.1 | 99 | 4793 | NS3-V63 | ||
KFDV/P9605 | KFDV/P9605 smb P9, Vero E6 P2, BHK-SA P1 | JF416958.1 | 99 | 6690 | NS4A-T75A | ||
DTV/IPS-001_I | DTV/IPS-001 smb P1, Vero E6 P1 | HM440559.1 | 99 | 189 | C-P26 | 2650 | NS1-A72T |
387 | C-R92 | 4604 | NS3-S9L | ||||
789 | prM-D111 | 4711 | NS3-T45A | ||||
1326 | E-A127 | 8888 | NS5-S414L | ||||
1491 | E-V182 | ||||||
2562 | NS1-L42 | ||||||
2757 | NS1-K107 | ||||||
2823 | NS1-P129 | ||||||
4452 | NS2B-E89 | ||||||
4770 | NS3-E64 | ||||||
4779 | NS3-V67 | ||||||
4881 | NS3-A101 | ||||||
5322 | NS3-F248 | ||||||
5895 | NS3-E439 | ||||||
7455 | NS4B-N188 | ||||||
8124 | NS5-T159 | ||||||
8373 | NS5-L242 | ||||||
9174 | NS5-E509 | ||||||
9276 | NS5-I543 | ||||||
9969 | NS5-R774 | ||||||
DTV/IPS-001_II | DTV/IPS-001 smb P3, BHK-21 P1 | HM440559.1 | 99 | 189 | C-P26 | 2650 | NS1-A72T |
387 | C-R92 | 4604 | NS3-S9L | ||||
789 | prM-D111 | 4711 | NS3-T45A | ||||
1326 | E-A127 | 8888 | NS5-S414L | ||||
1491 | E-V182 | ||||||
2562 | NS1-L42 | ||||||
2757 | NS1-K107 | ||||||
2823 | NS1-P129 | ||||||
4452 | NS2B-E89 | ||||||
4770 | NS3-E64 | ||||||
4779 | NS3-V67 | ||||||
4881 | NS3-A101 | ||||||
5322 | NS3-F248 | ||||||
5895 | NS3-E439 | ||||||
7455 | NS4B-N188 | ||||||
8124 | NS5-T159 | ||||||
8373 | NS5-L242 | ||||||
9174 | NS5-E509 | ||||||
9276 | NS5-I543 | ||||||
9969 | NS5-R774 | ||||||
DTV/NPS001 | DTV/NPS001/CT-390 smb P1, Vero P1 | HM440559.1 | 99 | 189 | C-P26 | 2650 | NS1-A72T |
387 | C-R92 | 4604 | NS3-S9L | ||||
789 | prM-D111 | 4711 | NS3-T45A | ||||
1326 | E-A127 | 8888 | NS5-S414L | ||||
1491 | E-V182 | ||||||
2562 | NS1-L42 | ||||||
2757 | NS1-K107 | ||||||
2823 | NS1-P129 | ||||||
4452 | NS2B-E89 | ||||||
4770 | NS3-E64 | ||||||
4779 | NS3-V67 | ||||||
4881 | NS3-A101 | ||||||
5322 | NS3-F248 | ||||||
5895 | NS3-E439 | ||||||
5943 | NS3-T455 | ||||||
7455 | NS4B-N188 | ||||||
8124 | NS5-T159 | ||||||
8373 | NS5-L242 | ||||||
9174 | NS5-E509 | ||||||
9276 | NS5-I543 | ||||||
9969 | NS5-R774 | ||||||
LGTV/TP21_I | LGTV/TP21 smb P8, Vero P1, LLC-MK-2 P1 | AF253419.1 | 100 | ||||
LGTV/TP21_II | LGTV/TP21 smb P8, Vero P2 | AF253419.1 | 100 | ||||
LGTV/TP21_III | LGTV/TP21 smb P9, Vero P1 | AF253419.1 | 99 | 1437 | E-T156I | ||
OHFV/Guriev | OHFV/Guriev | AB507800.1 | 99 | 3741 | NS2A-I75 | 5710 | NS3-V371I |
BHK-21 P2, BHK-S P2 | 6721 | NS4A-L87 | |||||
POWV/LB | POWV/LB LLC-MK-2 P2* | L06436.1 | 99 | 6537 | NS4A-L31 | 1340 | E-Y132H |
POWV/LEIV-5530 | POWV/LEIV-5530 smb P1, Vero P2, LLC-MK-2 P1 | KT224351.1 | 99 | 1312 | E-H132Y | ||
TBEV-FE/Sofjin | TBEV-FE/Sofjin BHK-21 P1, BHK-SA P1 | JF819648.2 | 99 | 1638 | E-L223 | 869 | M-M41I |
3398 | NS1-C313 | 1170 | E-N67D | ||||
3812 | NS2A-S99 | 1429 | E-V153A | ||||
3986 | NS2A-L157 | 6097 | NS3-T500I | ||||
4484 | NS2B-R93 | 6561 | NS4A-Q34E | ||||
5384 | NS3-I262 | 7161 | NS4B-S85A | ||||
5654 | NS3-D352 | 7533 | NS4B-L209F | ||||
6626 | NS4A-V55 | 10263 | NS5-S868A | ||||
7874 | NS5-Y70 | ||||||
8996 | NS5-L444 | ||||||
9164 | NS5-S500 | ||||||
10169 | NS5-R835 | ||||||
10208 | NS5-C848 | ||||||
TBEV-Eur/Hypr | TBEV-Eur/Hypr Vero CCL-81 P1, BHK-SA P1 | MT228627.1 | 99 | 1188 | E-A72 | 283 | C-A51T |
1623 | E-R217 | 538 | prM-A19S | ||||
2103 | E-P377 | 1976 | E-T335R | ||||
2142 | E-H390 | 2426 | E-G485V | ||||
4416 | NS2B-E70 | 3952 | NS2A-T146A | ||||
4524 | NS2B-S106 | 8000 | NS5-A111V | ||||
5913 | NS3-E438 | ||||||
6384 | NS3-R595 | ||||||
6870 | NS4A-F136 | ||||||
8415 | NS5-G249 | ||||||
8844 | NS5-R393 | ||||||
8893 | NS5-L410 |
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Carpio, K.L.; Thompson, J.K.; Widen, S.G.; Smith, J.K.; Juelich, T.L.; Clements, D.E.; Freiberg, A.N.; Barrett, A.D.T. Differences in Genetic Diversity of Mammalian Tick-Borne Flaviviruses. Viruses 2023, 15, 281. https://doi.org/10.3390/v15020281
Carpio KL, Thompson JK, Widen SG, Smith JK, Juelich TL, Clements DE, Freiberg AN, Barrett ADT. Differences in Genetic Diversity of Mammalian Tick-Borne Flaviviruses. Viruses. 2023; 15(2):281. https://doi.org/10.3390/v15020281
Chicago/Turabian StyleCarpio, Kassandra L., Jill K. Thompson, Steven G. Widen, Jennifer K. Smith, Terry L. Juelich, David E. Clements, Alexander N. Freiberg, and Alan D. T. Barrett. 2023. "Differences in Genetic Diversity of Mammalian Tick-Borne Flaviviruses" Viruses 15, no. 2: 281. https://doi.org/10.3390/v15020281
APA StyleCarpio, K. L., Thompson, J. K., Widen, S. G., Smith, J. K., Juelich, T. L., Clements, D. E., Freiberg, A. N., & Barrett, A. D. T. (2023). Differences in Genetic Diversity of Mammalian Tick-Borne Flaviviruses. Viruses, 15(2), 281. https://doi.org/10.3390/v15020281