Genetic analysis of human H2N2 and early H3N2 influenza viruses, 1957-1972: evidence for genetic divergence and multiple reassortment events

被引:134
作者
Lindstrom, SE [1 ]
Cox, NJ [1 ]
Klimov, A [1 ]
机构
[1] Ctr Dis Control & Prevent, Influenza Branch, Div Viral & Rickettsial Dis, Natl Ctr Infect Dis, Atlanta, GA 30333 USA
关键词
influenza; H2N2; H3N2; genome constellation; evolution; reassortment;
D O I
10.1016/j.virol.2004.06.009
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Phylogenic analysis of all gene segments of human H2N2 viruses isolated from 1957 to 1968 was undertaken to better understand the evolution of this virus subtype. Human H3N2 viruses isolated from 1968 to 1972 were also examined to investigate genetic events associated with their emergence in humans and to identify the putative H2N2 ancestral virus. All gene segments of human H2N2 viruses demonstrated divergent evolution into two distinct clades (I and II) among late H2N2 isolates. Also, all gene segments of 1968 H3N2 viruses that were retained from human H2N2 viruses were most similar to clade I H2N2 genes. However, genes of both clades were found among H3N2 isolates of 1969-1971. Unique phylogenic topologies reflected multiple reassortment events among late H2N2 or H3N2 viruses that resulted in a variety of different genome constellations. These results suggest that H2N2 viruses continued to circulate after 1968 and that establishment of H3N2 viruses in humans was associated with multiple reassortment events that contributed to their genetic diversity. Published by Elsevier Inc.
引用
收藏
页码:101 / 119
页数:19
相关论文
共 50 条
[1]   LOCATION OF ANTIGENIC SITES ON THE 3-DIMENSIONAL STRUCTURE OF THE INFLUENZA N2 VIRUS NEURAMINIDASE [J].
AIR, GM ;
ELS, MC ;
BROWN, LE ;
LAVER, WG ;
WEBSTER, RG .
VIROLOGY, 1985, 145 (02) :237-248
[2]   RECOMBINATION OF HUMAN INFLUENZA-A VIRUSES IN NATURE [J].
BEAN, WJ ;
COX, NJ ;
KENDAL, AP .
NATURE, 1980, 284 (5757) :638-640
[3]   EVOLUTION OF HUMAN INFLUENZA-A VIRUSES OVER 50 YEARS - RAPID, UNIFORM RATE OF CHANGE IN NS GENE [J].
BUONAGURIO, DA ;
NAKADA, S ;
PARVIN, JD ;
KRYSTAL, M ;
PALESE, P ;
FITCH, WM .
SCIENCE, 1986, 232 (4753) :980-982
[4]   STRUCTURE OF THE CATALYTIC AND ANTIGENIC SITES IN INFLUENZA-VIRUS NEURAMINIDASE [J].
COLMAN, PM ;
VARGHESE, JN ;
LAVER, WG .
NATURE, 1983, 303 (5912) :41-44
[5]   RECEPTOR SPECIFICITY IN HUMAN, AVIAN, AND EQUINE H2 AND H3 INFLUENZA-VIRUS ISOLATES [J].
CONNOR, RJ ;
KAWAOKA, Y ;
WEBSTER, RG ;
PAULSON, JC .
VIROLOGY, 1994, 205 (01) :17-23
[6]   The molecular epidemiology of influenza viruses [J].
Cox, NJ ;
Bender, CA .
SEMINARS IN VIROLOGY, 1995, 6 (06) :359-370
[7]   IDENTIFICATION OF SEQUENCE CHANGES IN THE COLD-ADAPTED, LIVE ATTENUATED INFLUENZA VACCINE STRAIN, A/ANN-ARBOR/6/60 (H2N2) [J].
COX, NJ ;
KITAME, F ;
KENDAL, AP ;
MAASSAB, HF ;
NAEVE, C .
VIROLOGY, 1988, 167 (02) :554-567
[8]   COMPLETE STRUCTURE OF A-DUCK-UKRAINE-63 INFLUENZA HEMAGGLUTININ GENE - ANIMAL VIRUS AS PROGENITOR OF HUMAN-H3 HONG-KONG 1968 INFLUENZA HEMAGGLUTININ [J].
FANG, RX ;
JOU, WM ;
HUYLEBROECK, D ;
DEVOS, R ;
FIERS, W .
CELL, 1981, 25 (02) :315-323
[9]   EVOLUTIONARY TREES FROM DNA-SEQUENCES - A MAXIMUM-LIKELIHOOD APPROACH [J].
FELSENSTEIN, J .
JOURNAL OF MOLECULAR EVOLUTION, 1981, 17 (06) :368-376
[10]  
FELSENSTEIN J, 1985, EVOLUTION, V39, P783, DOI 10.1111/j.1558-5646.1985.tb00420.x