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2008年柯萨奇病毒A组16型昆明分离株KMM08全基因组序列分析 被引量:5

Complete nucleotide sequence of a human coxsackievirus A16 strain KMM08 isolated in Kunming, China in 2008
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摘要 目的分析柯萨奇病毒A组16型(CA16)昆明分离株KMM08全基因序列,了解其遗传特性。方法设计针对CA16引物,提取病毒RNA,RT-PCR扩增和产物直接测序获得序列。利用Mega4.1,RDP3和SimPlot3.5.1等软件分析全基因序列。结果获得KMM08全基因组核苷酸序列长度为7409bp,编码含2193个氨基酸残基的多聚蛋白;与其他CA16参考株核苷酸和氨基酸同源性分别为79.0%~98.2%和94.5%~99.3%,其中SZ—HK08-3与国际标准株G10核苷酸和氨基酸同源性分别79.1%和94.8%;而与肠道病毒71型(EV71)标准株BrCr同源性分别为78.7%和89.0%。在各个区段上,KMM08与SZ.HK08—3的核苷酸和氨基酸同源性分别为97.0%~99.0%和98.0%-100.0%,同源性最高;与G10的核苷酸和氨基酸同源性分别为74.2%~86.9%和90.9%~97.0%;与Ev71BrCr核苷酸和氨基酸同源性分别在65.0%~84.9%和71.0%。95.2%。进化分析发现KMM08属于B基因型的一个分支。RDP3和SimPlot3.5.1软件分析发现Tainan.5079—98序列发现重组信号,而KMM08未发现。结论KMM08分离株为B基因型;CA16与EV71在非结构区发生重组。 Objective To describe the genetic characterization of complete genome from a human coxsackievirus A16 (CA16) strain KMM08, isolated in Yunnan, China, in 2008. Methods By using RT-PCR, the seven fragments contained about 1000 nucleotides in the complete genome were sequenced. The sequences were aligned with other enterovirus sequences downloaded from GenBank using Mega 4.1, RDP3 and SimPlot 3.5.1 software. Results As in other human enterovirus, its genome was 7409 nucleotides in length, encoding for 2193 amino acids. KMM08 strain was closely related to other reference strains of B genotype. In the complete genome, the homology of nucleotide and amino acid among the eleven CA16 isolated strains were 79.0%-98.2% and 94.5%-99.3%, respectively. The rates of homology were 79.1% and 94.8% when comparing with that of G10 strains and 78.7% and 89.0% comparing with that of BrCr strains, respectively. SZ-HK08-3 strain had high homology when compared to other strains. In different segment of genome, the rates of homology were 97.0%-99.0% and 98.0%-100.0% when compared with that of SZ-HK08-3 strains, respectively. The rates of homology were 74.2%-86.9% and 90.9%-97.0% when compared with that of G10 strains, respectively and were 65.0%-84.9% and 71.0%-95.2% when compared with that of BrCr strains. Data from Phylogenetic analysis showed that KMM08 belong to genotype B. The putative recombinant Tainan-5079-98 was detected positive with RDP3 and SimPlot 3.5.1. Conclusion KMM08 strains isolated in Yunnan in 2008 belonged to B genotype of coxsackivirus A16. The possible occurrence of inter-typic recombination would involve EV71 and CA16.
出处 《中华流行病学杂志》 CAS CSCD 北大核心 2012年第2期220-225,共6页 Chinese Journal of Epidemiology
关键词 柯萨奇病毒A组16型 全基因组 序列分析 Coxsackievirus A 16 Complete genome Sequence analysis
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参考文献15

  • 1Wang CY, Li LF, Wu MH, et al. Fatal coxsackievirus A16 infection. Pediatr Infect Dis J ,2004,23(3) :275-276.
  • 2Goto K, Sanefuji M, Kusuhara K, et al. Rhombencephalitis and coxsackievirus A16. Emerg Infect Dis, 2009, 15 (10) : 1689- 1691.
  • 3李琳琳,何雅晴,朱俊萍,薛颖,朱雅芳,徐星晔,金奇.柯萨奇病毒A组16型中国分离株(Cox.A16 SHZH00-1)全基因组序列测定及分析[J].病毒学报,2005,21(3):217-222. 被引量:61
  • 4van der Sanden S,van Eek J, Martin DP, et al. Detection of recombination breakpoints in the genomes of human enterovirus 71 strains isolated in the Netherlands in epidemic and non- epidemic years, 1963-2010. Infect Genet Evol, 2011, 11 (5) : 886-894.
  • 5Lole KS, Bollinger RC, Paranjape RS, et al. Full length human irnmunodeficiency virus type 1 genomes from subtype C-infected serocon verters in India, with evidence of intersubtype recombination. J Virol, 1999,73( 1 ) : 152-160.
  • 6http://www.yncdc.cn/list.aspx? varCatyID=0103.
  • 7Hosoya M, Kawasaki Y, Sato M, et al. Genetic diversity of coxsackievirus A16 associated with hand, foot, and mouth disease epidemics in Japan from 1983 to 2003. J Clin Microbiol, 2007,45( 1 ) : 112-120.
  • 8Yoke-Fun C, AbuBakar S. Phylogenetic evidence for inter-typic recombination in the emergence of human enterovirus 71 subgenotypes. BMC Microbiol, 2006,74(6) : 1-11.
  • 9Zhang Y, Zhu Z, Yang W, et al. An emerging recombinant human enterovirus 71 responsible for the 2008 outbreak of band foot and mouth disease in Fuyang city of China. Virol J, 2010, 94 (7) : 1-9.
  • 10Mirand A, Schuffenecker I, Henquell C, et al. Phylogenetic evidence for a recent spread of two populations of human enterovirus 71 in European countries. J Gen Virol, 2010, 91 (Pt 9) :2263-2277.

二级参考文献11

  • 1Wang C,Li L,Wu M,et al. Fatal coxsackievirus A16 infection[J].Pediatr Infect Dis J,2004,23:275 - 276.
  • 2Hartig P C,Madge G E,Webb S R. Diversity within a human isolate of coxsackieivirus B4: relationship to viral - induced diabetes[J ]. J Med Virol, 1983,11 ( 1 ): 23 - 30.
  • 3Huber S A, Haisch C, Lodge P A. Coxsackievirus induced myocarditis:model for picornavirus induced autoimmunity[J ]. Semia Virol,1990,1:289 - 296.
  • 4Poyry T, Hyypia T, Horsnell C, et al. Molecular analysis of coxsackievirus A16 reveals a new genetic group of enteroviruses[J]. Virology, 1994,202(2) :982 - 987.
  • 5Yan J,Su I,Chen P,et al. Complete genome analysis of enterovirus 71 isolated from an outbreak in Taiwan and rapid identification of enterovirus 71 and coxackievirus A16 by RT- PCR[J]. J Med Virol,2001,65:331 - 339.
  • 6Brown B A,Oberste M S, Alexander J P,et al. Molecular epidemiology and evolution of enterovirus 71 strains isolated from 1970 to 1998[J]. J Virol, 1999,73:9969 - 9975.
  • 7McMinn P, Lindsay K, perera D, et al. Phylogenetic analysis of enterovirus 71 strains isolated during linked epidemics in Malaysia, Singapore and Western Australia [ J ]. J Virol, 2001,75 ( 16 ): 7732 -7738.
  • 8Perera D, Podin Y,Akin W, et al. Incorrect identification of recent Asian strains of Coxsackievirus A16 as human enterovirus 71: Improved primers for the specific detection of human enterovirus 71 by RT PCR[J]. BMC Infect Dis,2004,4:11 - 21.
  • 9Brown B A, Pallansch M A. Complete nucleotide sequence of enterovirus 71 is distinct from poliovirus[J]. Virus Res, 1995,39:195- 205.
  • 10Shih S R, Ho M S, Lin K H, et al. Genetic analysis of enterovirus 71 isolated from fatal and non-fatal cases of hand-foot-and-mouth disease during an epidemic in Taiwan, 1998 [J ]. Virus Res, 2000,68:127 - 136.

共引文献60

同被引文献30

  • 1张丽,李岩,徐爱强,宋立志,刘尧,纪峰,王海岩,肖作奎,张济,董薇.一起埃可病毒30型所致无菌性脑膜炎爆发的流行病学分析[J].中国计划免疫,2005,11(6):457-460. 被引量:10
  • 2何曙春,熊传龙,吴家兵,彭大元,赵月萍.安徽省六安市一起埃可病毒6型脑膜炎暴发的调查[J].中华流行病学杂志,2007,28(7):663-666. 被引量:10
  • 3Papa A, Skoura L, Dumaidi K, et al. Molecular epidemiology of Echovirus 6 in Greece. Eur J Clin Microbiol Infect Dis, 2009,28 (6) :683-687.
  • 4Lee HY, Chen C J, Huang YC, et al. Clinical features of echovirus 6 and 9 infections in children. J Clin Virol, 2010,49 (3) : 175-179.
  • 5Centers for Disease Control and Preventi0n(CDC). Enterovirus and human parechovirus sur Nonpolio veillance---United States, 2006- 2008. MMWR Morb Mortal Wkly Re!o, 2010,59(48) : 1577-1580.
  • 6Man N, Zhao L, Zhu Z, et al. An aseptic meningitis outbreak caused by echovirus 6 in Anhui province, China. J Med Virol, 2010,82(3) :441-445.
  • 7Oberste MS, Maher K, Pallansch MA, et al. Evidence for frequent recombination within species human enterovirus B based on complete genomic sequences of all thirty-seven serotypes. J Virol, 2004,78 (2) : 855 -867.
  • 8Lukashev AN, Lashkevich VA, Ivanova OE, et al. Recombination in circulating human enterovirus B: independent evolution of structural and non-structural genome regions. J Gen Virol, 2005, 86(Pt 12) :3281-3290.
  • 9Iturfiza-G6mara M, Megson B, Gray J, et al. Molecular detection and characterization of human enteroviruses directly from clinical samples using RT-PCR and DNA sequencing. J Med Virol, 2006,78 (2) : 243 -253.
  • 10L6vOque N,Norder H, Zreik Y, et al. Echovirus 6 strains derived from a clinical isolate show differences in haemagglutination ability and cell entr?j pathway. Virus Res, 2007,30 (1-2) : 1-9.

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