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海南番木瓜花叶病毒全长cDNA克隆及序列分析 被引量:1

Complete Genomic Sequence of Papaya mosaic virus Isolate from Hainan Island,China
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摘要 提取海南果园番木瓜病叶样品总RNA,反转录得到cDNA第一链,基于已报道的番木瓜花叶病毒(Papaya mosaic virus,PaMV)全长基因组序列,设计引物,PCR扩增PaMV-CP基因序列,通过测序和序列比对分析确定发病植物感染了PaMV。再通过RT-PCR扩增PaMV全长cDNA序列,克隆及测序结果表明,所获得的cDNA全长为6 656 bp,与国外报道的PaMV分离物全长核苷酸序列的相似性达99.6%。 The complete genomic sequence of Papaya mosaic virus of Hainan isolate (PaMV-HN, GenBank: JX524226), a member of the genus Potexvirus, was determined, which shared with a 99.6% nucleotide sequence identity with the PaMV isolate from USA (GenBank: NC_ 001748). The complete genomic sequence of PaMV-HN was 6 656 nucleotides long and the genome contained five typically conserved open reading frames found in members of the genus Potexvirus.
出处 《热带作物学报》 CSCD 北大核心 2013年第2期297-300,共4页 Chinese Journal of Tropical Crops
基金 国家自然科学基金项目(No.30560082 31000844) 海南省重点科技计划(No.ZDXM20120027)
关键词 番木瓜花叶病毒 全长CDNA 克隆 序列分析 PaMV Full-length cDNA Cloning Sequece analysis
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参考文献16

  • 1Sit T L, Abouhaidar M G, Holy S. Nucleotide sequence of Papaya mosaic virus RNA[J]. J Gen Virol, 1989, 70: 2325-2331.
  • 2Conover R A. Virus diseases of the papaya in Florida[J]. Phytopathology, 1962, 52: 6.
  • 3AbouHaidar M G., Bancroft J B. The structure of the 5'- terminus of Papaya mosaic virus RNA [J]. Journal of General Virology, 1978, 39: 559-563.
  • 4AbouHaidar M G. Nucleotide sequence of the capsid protein gene and 3' non-coding region of Papaya mosaic virus RNA[J]. Journal of General Virology, 1988, 69: 219-226.
  • 5Sit T L, AbouHaidar M G, Holy S. Nucleotide sequence of Papaya mosaic virus RNA[J]. Journal of General Virology, 1989, 70: 2325-2331.
  • 6Short M N, Turner D S, March J F, et al. The primary structure of Papaya mosaic virus Coat Protein[J]. Virology, 1986, 152: 280-283.
  • 7Mackie G A, Johnston R, Bancroft J B. Single and double- stranded viral RNAs in plants infected with the potexviruses Papaya mosaic virus and foxtail mosaic virus[J]. Intervirology, 1988, 29: 170-177.
  • 8Lu Y W, Shen W T, Zhou P. Complete genomic sequence of a Papaya ringspot virus isolate from Hainan Island[J]. China. Arch Virol, 2008, 153: 991-993.
  • 9Yamaya J, Yoshioka M, Meshi T, et al. Expression of tobaccomosaic virus RNA in transgenic plants[J]. Mol Gen Genet, 1988, 211: 520-525.
  • 10Johansen E, Rasmussen 0 F, Heide M, et al. Nucleotide sequence of pea seed-borne mosaic potyvirus coat protein gene[J]. Virus Genes, 1991, 5(4): 377-380.

二级参考文献40

  • 1Smolenska L, Roberts IM, Learmonth D, Porter A J, Harris W J, Wilson TM, Santa CruzS. Production of a functional single chain antibody attached to the surface of a plant virus. FEBS Lett, 1998, 441(3):379 - 382.
  • 2Zelada AM, Calamante G, de la Paz Santangelo M, Bigi F,Verna F, Mentaberry A, Cataldi A. Expression of tuberculosis antigen ESAT-6 in Nicotiana tabacum using a potato virus X-based vector. Tuberculosis, 2006, 86(3-4):263 -- 267.
  • 3Fernandez-Fernandez MR, Mourino M, Rivera J, Rodriguez F, Plana-Duran J, Garcia JA. Protection of rabbits against rabbit hemorrhagic disease virus by immunization with the VP60 protein expressed in plants with a potyvirus-based vector. Virology, 2001, 280(2): 283--291.
  • 4Gleba Y, Klimyuk V, Marillonnet S. Magnifection--a new platform for expressing recombinant vaccines in plants.Vaccine, 2005, 23(17-18): 2042--2048.
  • 5Zhang GC, Leung C, Murdin L, Rovinski B, White KA. In planta expression of HIV-1 p24 protein using an RNA plant virus-based expression vector. Mol Biotechnol, 2000,14(2): 99-- 107.
  • 6Gopinath K, Wellink J, Porta C, Taylor KM, Lomonossoff GP, van Kammen A. Engineering cowpea mosaic virus RNA-2 into a vector to express heterologous proteins in plants. Virology, 2000, 267(2): 159--173.
  • 7Nichols ME, Stanislaus T, Keshavarz-Moore E, Young HA. Disruption of leaves and initial extraction of wild-type CPMV virus as a basis for producing vaccines from plants. J Biotechnol, 2002, 92(3): 229--235..
  • 8Porta C, Lomonossoff GP. Viruses as vectors for the expression of foreign sequences in plants.Biotechnol Genet Eng Rev, 2002, 19: 245--291.
  • 9Hamamoto H, Sugiyama Y, Nakagawa N, Hashida E, Matsunaga Y, Takemoto S, Watanabe Y, Okada Y. A new tobacco mosaic virus vector and its use for the systemic production of angiotensin-I-converting enzyme inhibitorin transgenic tobacco and tomato. Bio Technology, 1993,11(8): 930--932.
  • 10Chatterji A, Burns LL, Taylor SS, Lomonossoff GP,Johnson JE, Lin T, Porta C. Cowpea mosaic virus: from the presentation of antigenic peptides to the display of active biomaterials. Intervirology, 2002, 45(4-6): 362--370.

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同被引文献15

  • 1金羽,文景芝.植物病毒检测方法研究进展[J].黑龙江农业科学,2005(3):37-40. 被引量:30
  • 2Pureifull D E, Edwardson J R, Hiebert E, et al. Papaya ringspot virus[J]. CMI/AAB Descriptions of plant viruses, 1984, 292 (84) : 8.
  • 3Naqvi S. Diseases of fruits and vegetables[M]. New York: Springer, 2004.
  • 4Narayanasamy P. Microbial Plant Pathogens-Detection and Disease Diagnosis: Viral and Viroid Pathogens[M]. New York: Springer Science & Business Media, 2010.
  • 5Gonsalves D, Ishii M. Purification and serology of papaya ringspot virus[J]. Phytopathology, 1980, 70:1 028-1 032.
  • 6Bau H J, Kung Y J, Raja J A J, et al. Potential threat of a new pathotype of Papaya leaf distortion mosaic virus infecting transgenic papaya resistant to Papaya rinsspot vires[J]. Phytopathology, 2008, 98(7): 848-856.
  • 7Noa-Carrazana J C, Gonz61ez-de-Le6n D, Ruiz-Castro B S, et aL Distribution of Papaya ringspot virus and Papaya mosaic virus in papaya plants(Car/ca paya)in Mexico[J]. Plant disease, 2006, 90(8): 1 004-1 011.
  • 8Tanada J M, Elvira P R V, Dolores L M, et ol. Detection of mixed virus infection with Papaya ringspot virus(PRSV)in papaya (Carica pcaya L)grown in Luzon, Philippines[J]. Philippine Journal of Crop Science, 2009, 34(1): 62-74.
  • 9Tuo D, Shen W, Yan P, et aL Complete genome sequence of an isolate of papaya leaf distortion mosaic virus from commercialized PRSV-resistant transgenic papaya in China[J]. Acta virologica, 2012, 57(4): 452-455.
  • 10代永欣,牛建新,杨相昆,王林.核果类果树病毒病检测研究进展[J].新疆农业科学,2008,45(1):52-55. 被引量:1

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