Original Article
Lee DH, Criado MF, Swayne DE. Pathobiological Origins and Evolutionary History of Highly Pathogenic Avian Influenza Viruses. Cold Spring Harb Perspect Med 2021;11:a038679.
10.1101/cshperspect.a03867931964650Sonnberg S, Webby RJ, Webster RG. Natural history of highly pathogenic avian influenza H5N1. Virus Res 2013; 178:63-77.
10.1016/j.virusres.2013.05.00923735535PMC3787969Global Consortium for H5N8 and Related Influenza Viruses. Role for migratory wild birds in the global spread of avian influenza H5N8. Science 2016;354:213-7.
10.1126/science.aaf885227738169PMC5972003Lee DH, Bertran K, Kwon JH, Swayne DE. Evolution, global spread, and pathogenicity of highly pathogenic avian influenza H5Nx clade 2.3.4.4. J Vet Sci 2017;18:269-80.
10.4142/jvs.2017.18.S1.26928859267PMC5583414Thi Nguyen D, Shepard SS, Burke DF, Jones J, Thor S, Nguyen LV, et al. Antigenic characterization of highly pathogenic avian influenza A (H5N1) viruses with chicken and ferret antisera reveals clade-dependent variation in hemagglutination inhibition profiles. Emerg Microbes Infect 2018;7:100.
10.1038/s41426-018-0100-729855467PMC5981457Bai R, Sikkema RS, Li CR, Munnink BBO, Wu J, Zou L, et al. Antigenic Variation of Avian Influenza A (H5N6) Viruses, Guangdong Province, China, 2014-2018. Emerg Infect Dis 2019;25:1932-45.
10.3201/2510.19027431538920PMC6759240Swayne DE, Pavade G, Hamilton K, Vallat B, Miyagishima K. Assessment of national strategies for control of high- pathogenicity avian influenza and low-pathogenicity notifiable avian influenza in poultry, with emphasis on vaccines and vaccination. Rev Sci Tech 2011;30:839-70.
10.20506/rst.30.3.208122435196Spackman E, Swayne DE, Pantin-Jackwood MJ, Wan XF, Torchetti MK, Hassan M, et al. Variation in protection of four divergent avian influenza virus vaccine seed strains against eight clade 2.2.1 and 2.2.1.1. Egyptian H5N1 high pathogenicity variants in poultry. Influenza Other Respir Viruses 2014;8:654-62.
10.1111/irv.1229025277652PMC4262281Smith DJ, Lapedes AS, de Jong JC, Bestebroer TM, Rimmelzwaan GF, Osterhaus AD, et al. Mapping the antigenic and genetic evolution of influenza virus. Science 2004;305:371-6.
10.1126/science.109721115218094Youk S, Lee DH, Ferreira HL, Afonso CL, Absalon AE, Swayne DE, et al. Rapid evolution of Mexican H7N3 highly pathogenic avian influenza viruses in poultry. PLoS One 2019;14:e0222457.
10.1371/journal.pone.022245731513638PMC6742402Ke C, Mok CKP, Zhu W, Zhou H, He J, Guan W, et al. Human Infection with Highly Pathogenic Avian Influenza A (H7N9) Virus, China. Emerg Infect Dis 2017;23:1332-40.
10.3201/eid2308.17060028580899PMC5547808Gao R, Cao B, Hu Y, Feng Z, Wang D, Hu W, et al. Human infection with a novel avian-origin influenza A (H7N9) virus. N Engl J Med 2013;368:1888-97.
10.1056/NEJMoa130445923577628Lee DH, Park JK, Kwon JH, Yuk SS, Erdene-Ochir TO, Jang YH, et al. Efficacy of single dose of a bivalent vaccine containing inactivated Newcastle disease virus and reassortant highly pathogenic avian influenza H5N1 virus against lethal HPAI and NDV infection in chickens. PLoS One 2013;8:e58186.
10.1371/journal.pone.005818623469269PMC3585801Hoffmann E, Stech J, Guan Y, Webster RG, Perez DR. Universal primer set for the full-length amplification of all influenza A viruses. Arch Virol 2001;146:2275-89.
10.1007/s00705017000211811679Sohpal VK, Dey A, Singh A. MEGA biocentric software for sequence and phylogenetic analysis: a review. Int J Bioinform Res Appl 2010;6:230-40.
10.1504/IJBRA.2010.03407220615832Hasegawa M, Kishino H, Yano T. Dating of the human-ape splitting by a molecular clock of mitochondrial DNA. J Mol Evol 1985;22:160-74.
10.1007/BF021016943934395Rowe T, Abernathy RA, Hu-Primmer J, Thompson WW, Lu X, Lim W, et al. Detection of antibody to avian influenza A (H5N1) virus in human serum by using a combination of serologic assays. J Clin Microbiol 1999;37:937-43.
10.1128/JCM.37.4.937-943.199910074505PMC88628Pedersen JC. Hemagglutination-inhibition test for avian influenza virus subtype identification and the detection and quantitation of serum antibodies to the avian influenza virus. Methods Mol Biol 2008;436:53-66.
10.1007/978-1-59745-279-3_818370041Wang ZG, Jiang WM, Liu S, Hou GY, Li JP, Wang ZY, et al. Increased substitution rate in H5N1 avian influenza viruses during mass vaccination of poultry. Chinese Science Bulletin 2012;57:2419-24.
10.1007/s11434-012-5215-yCattoli G, Fusaro A, Monne I, Coven F, Joannis T, El-Hamid HSA, et al. Evidence for differing evolutionary dynamics of A/H5N1 viruses among countries applying or not applying avian influenza vaccination in poultry. Vaccine 2011;29:9368-75.
10.1016/j.vaccine.2011.09.12722001877- Publisher :The Korean Society for Microbiology and The Korean Society of Virology
- Publisher(Ko) :대한미생물학회‧대한바이러스학회
- Journal Title :JOURNAL OF BACTERIOLOGY AND VIROLOGY
- Volume : 51
- No :1
- Pages :21-27
- Received Date : 2021-02-03
- Revised Date : 2021-03-29
- Accepted Date : 2021-03-29
- DOI :https://doi.org/10.4167/jbv.2021.51.1.021


JOURNAL OF BACTERIOLOGY AND VIROLOGY









