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PLOS ONE  2009 

Reassortment Patterns in Swine Influenza Viruses

DOI: 10.1371/journal.pone.0007366

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Abstract:

Three human influenza pandemics occurred in the twentieth century, in 1918, 1957, and 1968. Influenza pandemic strains are the results of emerging viruses from non-human reservoirs to which humans have little or no immunity. At least two of these pandemic strains, in 1957 and in 1968, were the results of reassortments between human and avian viruses. Also, many cases of swine influenza viruses have reportedly infected humans, in particular, the recent H1N1 influenza virus of swine origin, isolated in Mexico and the United States. Pigs are documented to allow productive replication of human, avian, and swine influenza viruses. Thus it has been conjectured that pigs are the “mixing vessel” that create the avian-human reassortant strains, causing the human pandemics. Hence, studying the process and patterns of viral reassortment, especially in pigs, is a key to better understanding of human influenza pandemics. In the last few years, databases containing sequences of influenza A viruses, including swine viruses, collected since 1918 from diverse geographical locations, have been developed and made publicly available. In this paper, we study an ensemble of swine influenza viruses to analyze the reassortment phenomena through several statistical techniques. The reassortment patterns in swine viruses prove to be similar to the previous results found in human viruses, both in vitro and in vivo, that the surface glycoprotein coding segments reassort most often. Moreover, we find that one of the polymerase segments (PB1), reassorted in the strains responsible for the last two human pandemics, also reassorts frequently.

References

[1]  Taubenberger JK, Reid AH, Lourens RM, Wang R, Jin G, et al. (2005) Characterization of the 1918 influenza virus polymerase genes. Nature 437(7060): 889–93.
[2]  Rabadan R, Levine AJ, Robins H (2006) Comparison of avian and human influenza A viruses reveals a mutational bias on the viral genomes. J Virol 80(23): 11887–91.
[3]  Lindstrom SE, Cox NJ, Klimov A (2004) Genetic analysis of human H2N2 and early H3N2 influenza viruses, 1957–1972: evidence for genetic divergence and multiple reassortment events. Virology 328(1): 101–19.
[4]  Scholtissek C, Rohde W, Von Hoyningen V, Rott R (1978) On the origin of the human influenza virus subtypes H2N2 and H3N2. Virology 87(1): 13–20.
[5]  Myers KP, Olsen CW, Gray GC (2007) Cases of Swine Influenza in Humans: A Review of the Literature. Clin Infect Dis 44(8): 1084–1088.
[6]  Shinde V, Bridges CB, Uyeki TM, Shu B, Balish A, et al. (2009) N Engl J Med 360(25): 2616–25.
[7]  Center for Disease Control (2009) Swine Influenza A (H1N1) Infection in Two Children - Southern California, March - April 2009. MMWR 58(15): 400–402.
[8]  Center for Disease Control (2009) Outbreak of Swine-Origin Influenza A (H1N1) Virus Infection - Mexico, March–April 2009. MMWR 58(Dispatch): 1–3.
[9]  Trifonov V, Khiabanian H, Greenbaum B, Rabadan R (2009) The origin of the recent swine influenza A(H1N1) virus infecting humans. Euro Surveill 14(17): pii = 19193.
[10]  Komar N, Olsen B (2008) Avian Influenza Virus (H5N1) Mortality Surveillance. Emerg Infect Dis 14(7): 1176–1178.
[11]  Brown IA (2000) The epidemiology and evolution of influenza viruses in pigs. Vet Microbiol 74(1–2): 29–46.
[12]  Scholtissek C (1990) Pigs as the ‘mixing vessel’ for the creation of new pandemic influenza A viruses. Med Princip Prac 2: 65–71.
[13]  Nakajima K, Desselberger U, Palese P (1978) Recent human influenza A (H1N1) viruses are closely related genetically to strains isolated in 1950. Nature 274(5669): 334–339.
[14]  Scholtissek C, von Hoyningen V, Rott R (1978) Genetic relatedness between the new 1977 epidemic strains (H1N1) of influenza and human influenza strains isolated between 1947 and 1957 (H1N1). Virology 89(2): 613–617.
[15]  Webby RJ, Swenson SL, Krauss SL, Gerrish PJ, Goyal SM, et al. (2000) Evolution of swine H3N2 influenza viruses in the United States. J Virol 74(18): 8243–51.
[16]  Zhou NN, Senne DA, Landgraf JS, Swenson SL, Erickson G, et al. (1999) Genetic reassortment of avian, swine, and human influenza A viruses in American pigs. J Virol 73(10): 8851–6.
[17]  Vincent AL, Ma W, Lager KM, Janke BH, Richt JA (2008) Swine influenza viruses: a North American perspective. Adv Virus Res 72: 127–54.
[18]  Marozin S, Gregory V, Cameron K, Bennett M, Valette M, et al. (2002) Antigenic and genetic diversity among swine influenza A H1N1 and H1N2 viruses in Europe. J Gen Virol 83(Pt 4): 735–745.
[19]  Qi X, Lu CP (2006) Genetic characterization of novel reassortant H1N2 influenza A viruses isolated from pigs in southeastern. Arch Virol 151(11): 2289–99.
[20]  Zell R, Motzke S, Krumbholz A, Wutzler P, Herwig V, et al. (2008) Novel reassortant of swine influenza H1N2 virus in Germany. J Gen Virol 89(PT 1): 271–276.
[21]  Saito T, Suzuki H, Maeda K, Inai K, Takemae N, et al. (2006) Molecular characterization of an H1N2 swine influenza virus isolated in Miyazaki, Japan, in 2006. J Vet Med Sci 70(4): 423–7.
[22]  Ludwig S, Stitz L, Planz O, Van H, Fitch WM, et al. (1995) European swine virus as a possible source for the next influenza pandemic? Virology 212(2): 555–61.
[23]  Castrucci MR, Donatelli I, Sidoli L, Barigazzi G, Kawaoka Y, et al. (1993) Genetic reassortment between avian and human influenza A viruses in Italian pigs. Virology 193(1): 503–6.
[24]  Chutinimitkul S, Thippamom N, Damrongwatanapokin S, Payungporn S, Thanawongnuwech R, et al. (2008) Genetic characterization of H1N1, H1N2 and H3N2 swine influenza virus in Thailand. Arch Virol 153(6): 1049–56.
[25]  Yoo GJ, Kim CJ, Choi YK (2008) Seroprevalence and genetic evolutions of swine influenza viruses under vaccination pressure in Korean swine herds. Virus Res 138 (1–2): 43–49.
[26]  Karasin AI, Brown IH, Carman S, Olsen CW (2000) Isolation and characterization of H4N6 avian influenza viruses from pigs with pneumonia in Canada. J Virol 74(19): 9322–7.
[27]  Bao Y, Bolotov P, Dernovoy D, Kiryutin B, Zaslavsky L, et al. (2008) The Influenza Virus Resource at the National Center for Biotechnology Information. J Virol 82(2): 596–601.
[28]  Lubeck MD, Palese P, Schulman JL (1979) Nonrandom association of parental genes in influenza A virus recombinants. Virology 95(1): 269–74.
[29]  Rabadan R, Levin AJ, Krasnitz M (2008) Non-random reassortment in human influenza A viruses. Influenza and Other Respiratory Viruses 2(1): 9–22.
[30]  Downie JC (2004) Reassortment of influenza A virus genes linked to PB1 polymerase gene. International Congress Series 1263: 714–718.
[31]  Krasnitz M, Levine AJ, Rabadan R (2008) Anomalies in the Influenza Virus Genome Database: New Biology or Laboratory Errors? J Virol 82(17): 8947–8950.
[32]  Boni MF, Zhou Y, Taubenberger JK, Holmes EC (2008) Homologous Recombination Is Very Rare or Absent in Human Influenza A Virus. J Virol 82(10): 4807–4811.
[33]  Rao CR (1982) Diversity and dissimilarity coefficients: a unified approach. Theor Popul Biol 21(1): 24–43.
[34]  Altschul SF, Madden TL, Schaffer AA, Zhang J, Zhang Z, et al. (1997) Gapped BLAST and PSI-BLAST: a new generation of protein database search programs. Nucleic Acids Res 25: 3389–3402.
[35]  Marsh GA, Rabadan R, Levine AJ, Palese P (2008) Highly conserved regions of influenza a virus polymerase gene segments are critical for efficient viral RNA packaging. J Virol 82(5): 2295–304.
[36]  Karasin AI, Schutten MM, Cooper LA, Smith CB, Subbarao K, et al. (2000) Genetic characterization of H3N2 influenza viruses isolated from pigs in North America, 1977–1999: evidence for wholly human and reassortant virus genotypes. Virus Res 68(1): 71–85.
[37]  Karasin AI, Landgraf J, Swenson S, Erickson G, Goyal S, et al. (2002) Genetic characterization of H1N2 influenza A viruses isolated from pigs throughout the United States. J Clin Microbiol 40(3): 1073–1079.
[38]  Lekcharoensuk P, Lager KM, Vemulapalli R, Woodruff M, Vincent AL, et al. (2006) Novel swine influenza virus subtype H3N1, United States. Emerg Infect Dis 12(5): 787–94.
[39]  Ma W, Vincent AL, Gramer MR, Brockwell CB, Lager KM, et al. (2007) Identification of H2N3 influenza A viruses from swine in the United States. Proc Natl Acad Sci U S A 104(52): 20949–20954.
[40]  Karasin AI, Carman S, Olsen CW (2006) Identification of human H1N2 and human-swine reassortant H1N2 and H1N1 influenza A viruses among pigs in Ontario, Canada (2003 to 2005). J Clin Microbiol 44(3): 1123–6.
[41]  Olsen CW, Karasin AI, Carman S, Li Y, Bastien N, et al. (2006) Triple reassortant H3N2 influenza A viruses, Canada. Emerg Infect Dis 12 (7): 1132–1135.

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