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侵染番茄的中国番木瓜曲叶病毒基因组结构特征 被引量:9

Genomic Characterization of Isolate of Papaya Leaf Curl China Virus in Solanum lycopersicon
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摘要 从云南元谋采集表现曲叶症状的番茄样品中分离粉虱传双生病毒(Whitefly-transmitted geminivirus,WTGs)分离物YN678。序列分析表明其DNA-A为单链环状,全序列长度为2739 bp,编码6个ORFs。BLAST比对发现,该分离物与双生病毒科菜豆金色黄花叶病毒属的中国番木瓜曲叶病毒HeNZM1分离物(PaLCuCNV-[HeNZM1])最为接近,相似性为98.5%,表明番茄中的分离物YN678是PaLCuCNV的1个分离物。利用WTGs卫星分子DNAβ特异引物Beta01/Beta02进行PCR扩增、克隆和测序,在YN678中扩增到DNAβ分子,全长为1357 bp,该序列与中国番茄黄曲叶病毒YN149分离物(TYLCCNV-[YN149])伴随的DNAβ相似性最高,达到99.1%。这是首次从云南番茄中分离到中国番木瓜曲叶病毒。 Begomovirus isolate YN678 was obtained from Solanum lycopersicon plants showing leaf curl symptoms collected in Yuanmou,Yunnan province.Complete sequence of the single circular DNA-A molecule comprised 2739 nucleotides and contains six open reading frames.Comparison and analysis showed that total DNA-A of YN678 was most closely related to Papaya leaf curl China virus(PaLCuCNV) with 98.5 % nucleotide sequences identity isolated from HeNZM1.It was concluded that isolate YN678 infecting Solanum lycopersicon was one of PaLCuCNV isolates.Satellite DNA molecule DNAβ was found to be associated with YN678 using the primers beta01 and beta02.The DNAβ of YN678 contained 1357 nucleotides having the hightest nucleotide sequence identity(99.1 %) with DNAβ associated with TYLCCNV-YN149.This was the first report of Solanum lycopersicon infected with PaLCuCNV in Yunnan.
出处 《西南农业学报》 CSCD 北大核心 2010年第6期1917-1922,共6页 Southwest China Journal of Agricultural Sciences
基金 国家自然科学基金地区联合资助项目(30860163 2008GAO28)
关键词 中国番木瓜曲叶病毒 中国番茄黄曲叶病毒 番茄 DNA-A DNAΒ Papaya leaf curl China virus Tomato yellow leaf curl China virus Solanum lycopersicon DNA-A DNAβ
作者简介 王玉(1982-),女,山东人,硕士研究生,主要从事植物病毒学方面的研究 为通讯作者,E-mail:zhongkm99@sina.com
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  • 1XIE Yan,ZHOU Xueping,ZHANG Zhongkai,QI Yijun.Tobacco curly shoot virus isolated in Yunnan is a distinct species of Begomovirus[J].Chinese Science Bulletin,2002,47(3):197-200. 被引量:54
  • 2蔡健和,洪益国,黄福新,王小凤,田波.中国南瓜曲叶双生病毒的生物学、血清学和分子杂交的研究[J].中国病毒学,1994,9(3):222-225. 被引量:28
  • 3Harrison B D, Robinson D J. Natural genomic and antigenic variation in whitefly-transmitted geminiviruses (Begomoviruses).Annual Review of Phytopathology, 1999, 37: 369-398.
  • 4Rybick E P, Briddon R W, Brown J K. Family Geminiviridale. In:Van Regenmortel M H V, Fauquet C M, Bishop D H Leds. Virus Taxonomy: Seventh Report of the International Committee on Taxonomy of Viruses. New York: Academic Press, 2000, 285-297.
  • 5Lazarowitz D G. Geminivirus :genome structure and gene function.Critical Reviews in Plant Sciences, 1992, 11(4): 327-349.
  • 6Moffat A S. Plant pathology: geminivirus emerges as serious crop theat. Science, 1999, 286:1835.
  • 7Saxena S, Hallan V, Singh B Sane P. Leaf curl disease of Carica papaya from India may be caused by a bipartite geminivirus. Plant Disease. 1998, 82(1): 126.
  • 8Wang X G, Xie Y, Zhou X P. Molecular characterization of two distinct begomoviruses from papaya in China. Virus Genes Dordrecht,2004,(29)3:303-309.
  • 9Padidam M, Beachy R N, Fauquet C M. Tomato leaf curl geminivirus from India has a bipartite genome and coat protein is not essential for infectivity. Journal General of Virology, 1995, 76:25-35.
  • 10Zhou X P, Liu Y, Calvert L, Munoz C, Otim-Nape G W, Robinson D J, Harrison B D. Evidence that DNA-A of a geminivirus associated with severe cassava mosaic disease in Uganda has arisen by interspecific recombination. Journal of General Virology, 1997, 78:2101-2111.

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