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Phylogenetic analysis of Chinese sheeppox and goatpox virus isolates
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  • 作者:Tao Zhou (1)
    Huaijie Jia (1)
    Guohua Chen (1)
    Xiaobing He (1)
    Yongxiang Fang (1)
    Xiaoxia Wang (1)
    Qisai Guan (1)
    Shuang Zeng (1)
    Qing Cui (1)
    Zhizhong Jing (1)
  • 关键词:Sheeppox virus ; Goatpox virus ; P32 gene ; GPCR gene ; RPO30 gene ; Phylogenetic analysis
  • 刊名:Virology Journal
  • 出版年:2012
  • 出版时间:December 2012
  • 年:2012
  • 卷:9
  • 期:1
  • 全文大小:554KB
  • 参考文献:1. Kitching RP, Carn V: Sheep pox and Goat pox. In / Manual of Diagnostic Tests and Vaccines for Terrestrial Animals. OIE Paris; 2010:1鈥?2. [online]. http://www.oie.int/fileadmin/Home/eng/Health_standards/tahm/2.07.14_S_POX_G_POX.pdf
    2. Babiuk S, Bowden TR, Boyle DB, Wallace DB, Kitching RP: Capripoxviruses: an emerging worldwide threat to sheep, goats and cattle. / Transboundary Emerg Dis 2008,55(7):263鈥?72. CrossRef
    3. Lamien CE, Le Goff C, Silber R, Wallace DB, Gulyaz V, Tuppurainen E, Madani H, Caufour P, Adam T, El Harrak M, Luckins AG, Albina E, Diallo A: Use of the Capripoxvirus homologue of Vaccinia virus 30 kDa RNA polymerase subunit (RPO30) gene as a novel diagnostic and genotyping target: Development of a classical PCR method to differentiate Goat poxvirus from Sheep poxvirus. / Vet Microbiol 2011,149(1鈥?):30鈥?9. CrossRef
    4. Bhanuprakash V, Indrani BK, Hosamani M, Singh RK: The current status of sheep pox disease. / Comp Immunol Microbiol Infect Dis 2006,29(1):27鈥?0. CrossRef
    5. Diallo A, Viljoen GJ: Genus Capripoxvirus. In / In Poxviruses. Edited by: Mercer AA, Schmidt A, Weber O. Basel: Birkh盲user; 2007:167鈥?81. CrossRef
    6. Bhanuprakash V, Venkatesan G, Balamurugan V, Hosamani M, Yogisharadhya R, Chauhan RS, Pande A, Mondal B, Singh RK: Pox outbreaks in sheep and goats at Makhdoom (Uttar Pradesh), India: evidence of sheeppox virus infection in goats. / Transbound Emerg Dis 2010,57(5):375鈥?82. CrossRef
    7. Gershon PD, Black DN: A comparison of the genomes of capripoxvirus isolates of sheep, goats, and cattle. / Virology 1988,164(2):341鈥?49. CrossRef
    8. Hosamani M, Mondal B, Tembhurne PA, Bandyopadhyay SK, Singh RK, Rasool TJ: Differentiation of sheep pox and goat poxviruses by sequence analysis and PCR-RFLP of P32 gene. / Virus Genes 2004,29(1):73鈥?0. CrossRef
    9. Tulman ER, Afonso CL, Lu Z, Zsak L, Sur JH, Sandybaev NT, Kerembekova UZ, Zaitsev VL, Kutish GF, Rock DL: The genomes of sheeppox and goatpox viruses. / J Virol 2002,76(12):6054鈥?061. CrossRef
    10. Cao JX, Gershon PD, Black DN: Sequence analysis of HindIII Q2 fragment of capripoxvirus reveals a putative gene encoding a G-protein-coupled chemokine receptor homologue. / Virology 1995,209(1):207鈥?12. CrossRef
    11. Verma S, Verma LK, Gupta VK, Katoch VC, Dogra V, Pal B, Sharma M: Emerging Capripoxvirus disease outbreaks in Himachal Pradesh, a northern state of India. / Transbound Emerg Dis 2011,58(1):79鈥?5. CrossRef
    12. Yan X, Wu G, Li J, Zhu H, Zhang Q: The Analysis on Epidemic Situation of Capripox in China. / Chinese Agricultural Science Bulletin 2010,26(24):6鈥?. in Chinese
    13. Xiong Y, Zhu W, Liu Q, Zheng M, Li H, Guo J: Construction and Expression of Vector Encoding Capripoxvirus P32 Gene with Transmembrane Domain Deletion. / Journal of Agricultural Biotechnology 2008,16(3):385鈥?89. in Chinese
    14. Yan X, Wu G, Li J, Zhu H, Zhao Z, Cui L, Zhu C, Zhang Q: Diagnosis of an outbreak of sheep pox associated with goatpox viurs and molecular analysis of p32 gene of the virus. / Chinese Veterinary Science 2011,41(01):1鈥?. in Chinese
    15. Venkatesan G, Balamurugan V, Singh RK, Bhanuprakash V: Goat pox virus isolated from an outbreak at Akola, Maharashtra (India) phylogenetically related to Chinese strain. / Trop Anim Health Prod 2010,42(6):1053鈥?056. CrossRef
    16. Le Goff C, Lamien CE, Fakhfakh E, Chadeyras A, Aba-Adulugba E, Libeau G, Tuppurainen E, Wallace DB, Adam T, Silber R, Gulyaz V, Madani H, Caufour P, Hammami S, Diallo A, Albina E: Capripoxvirus G-protein-coupled chemokine receptor: a host-range gene suitable for virus animal origin discrimination. / J Gen Virol 2009,90(8):1967鈥?977. CrossRef
    17. Zhao Z, Wu G, Yan X, Li J, Zhu H, Sun X, Zhang Q: Sheeppox Virus RPO30 Gene Cloning and Sequence Analysis. / Chinese Agricultural Science Bulletin 2011, 7:304鈥?08. in Chinese
    18. Nei M, Kumar S: / Molecular Evolution and Phylogenetics. New York: Oxford University Press; 2000:128鈥?32.
    19. Tamura K, Dudley J, Nei M, Kumar S: MEGA4: Molecular Evolutionary Genetics Analysis (MEGA) software version 4.0. / Mol Biol Evol 2007, 24:1596鈥?599. CrossRef
    20. Felsenstein J: Confidence limits on phylogenies: An approach using the bootstrap. / Evolution 1985, 39:783鈥?91. CrossRef
    21. ClustalW2-Multiple Sequence Alignment [http://www.ebi.ac.uk/Tools/msa/clustalw2/]
    22. TreeView [http://taxonomy.zoology.gla.ac.uk/rod/treeview.html]
  • 作者单位:Tao Zhou (1)
    Huaijie Jia (1)
    Guohua Chen (1)
    Xiaobing He (1)
    Yongxiang Fang (1)
    Xiaoxia Wang (1)
    Qisai Guan (1)
    Shuang Zeng (1)
    Qing Cui (1)
    Zhizhong Jing (1)

    1. State Key Laboratory of Veterinary Etiological Biology, Key Laboratory of Veterinary Public Health of Agricultural Ministry, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou, 730046, China
  • ISSN:1743-422X
文摘
Background Sheeppox virus (SPPV) and goatpox virus (GTPV), members of the Capripoxvirus genus of the Poxviridae family are causative agents of sheep pox and goat pox respectively, which are important contagious diseases and endemic in central and northern Africa, the Middle and Far East, and the Indian sub-continent. Both sheep pox and goat pox can cause wool and hide damage, and reduce the production of mutton and milk, which may result in significant economic losses and threaten the stockbreeding. In this study, three SPPVs and two GTPVs were collected from China in 2009 and 2011. We described the sequence features and phylogenetic analysis of the P32 gene, GPCR gene and RPO30 gene of the SPPVs and GTPVs to reveal their genetic relatedness. Results Sequence and phylogenetic analysis showed that there was a close relationship among SPPV/GanS/2/2011/China, SPPV/GanS/1/2011/China and SPPV/NingX/2009/China. They were clustered on the same SPPV clade. GTPV/HuB/2009/China and GS-V1 belonged to the GTPV lineage. GS-V1 was closely related to other GTPV vaccine strains. GTPV/HuB/2009/China and GS-V1 were clustered with GTPVs from China and some southern Asian countries. Conclusion This study may expand the datum for spread trend research of Chinese SPPVs and GTPVs, meanwhile provide theoretical references to improve the preventive and control strategy.

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