Literature DB >> 24510356

Complete genome of Hainan papaya ringspot virus using small RNA deep sequencing.

Yuliang Zhang1, Naitong Yu, Qixing Huang, Guohua Yin, Anping Guo, Xiangfeng Wang, Zhongguo Xiong, Zhixin Liu.   

Abstract

Small RNA deep sequencing allows for virus identification, virus genome assembly, and strain differentiation. In this study, papaya plants with virus-like symptoms collected in Hainan province were used for deep sequencing and small RNA library construction. After in silicon subtraction of the papaya sRNAs, small RNA reads were used to in the viral genome assembly using a reference-guided, iterative assembly approach. A nearly complete genome was assembled for a Hainan isolate of papaya ringspot virus (PRSV-HN-2). The complete PRSV-HN-2 genome (accession no.: KF734962) was obtained after a 15-nucleotide gap was filled by direct sequencing of the amplified genomic region. Direct sequencing of several random genomic regions of the PRSV isolate did not find any sequence discrepancy with the sRNA-assembled genome. The newly sequenced PRSV-HN-2 genome shared a nucleotide identity of 96 and 94 % to that of the PRSV-HN (EF183499) and PRSV-HN-1 (HQ424465) isolates, and together with these two isolates formed a new PRSV clade. These data demonstrate that the small RNA deep sequencing technology provides a viable and rapid mean to assemble complete viral genomes in plants.

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Year:  2014        PMID: 24510356     DOI: 10.1007/s11262-014-1042-3

Source DB:  PubMed          Journal:  Virus Genes        ISSN: 0920-8569            Impact factor:   2.332


  34 in total

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2.  CONFIDENCE LIMITS ON PHYLOGENIES: AN APPROACH USING THE BOOTSTRAP.

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3.  Complete nucleotide sequence of the genomic RNA of tobacco mosaic virus strain Cg.

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Journal:  Virus Genes       Date:  1998       Impact factor: 2.332

4.  The neighbor-joining method: a new method for reconstructing phylogenetic trees.

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Journal:  Mol Biol Evol       Date:  1987-07       Impact factor: 16.240

5.  Complete nucleotide sequence of the rice tungro spherical virus genome of the highly virulent strain Vt6.

Authors:  M Isogai; P Q Cabauatan; C Masuta; I Uyeda; O Azzam
Journal:  Virus Genes       Date:  2000       Impact factor: 2.332

6.  Nucleotide sequence of a 5423 base pairs fragment of the LsNPV genome and comparison with the AcNPV genome.

Authors:  T Jin; Y Qi; B Qi; H Jin; Y Huang
Journal:  Virus Genes       Date:  1997       Impact factor: 2.198

7.  Transgene-specific and event-specific molecular markers for characterization of transgenic papaya lines resistant to Papaya ringspot virus.

Authors:  Ming-Jen Fan; Shu Chen; Yi-Jung Kung; Ying-Huey Cheng; Huey-Jiunn Bau; Tien-Tsai Su; Shyi-Dong Yeh
Journal:  Transgenic Res       Date:  2009-06-14       Impact factor: 2.788

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Authors:  Darren P Martin; Philippe Lemey; Martin Lott; Vincent Moulton; David Posada; Pierre Lefeuvre
Journal:  Bioinformatics       Date:  2010-08-26       Impact factor: 6.937

9.  Deep sequencing of small RNAs in tomato for virus and viroid identification and strain differentiation.

Authors:  Rugang Li; Shan Gao; Alvaro G Hernandez; W Patrick Wechter; Zhangjun Fei; Kai-Shu Ling
Journal:  PLoS One       Date:  2012-05-18       Impact factor: 3.240

10.  Differential gene expression in response to Papaya ringspot virus infection in Cucumis metuliferus using cDNA-amplified fragment length polymorphism analysis.

Authors:  Yu-Tsung Lin; Fuh-Jyh Jan; Chia-Wei Lin; Chien-Hung Chung; Jo-Chu Chen; Shy-Dong Yeh; Hsin-Mei Ku
Journal:  PLoS One       Date:  2013-07-09       Impact factor: 3.240

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  1 in total

1.  Complete Genome Sequence of Papaya Ringspot Virus Isolated from Genetically Modified Papaya in Hainan Island, China.

Authors:  Guangyuan Zhao; Pu Yan; Wentao Shen; Decai Tuo; Xiaoying Li; Peng Zhou
Journal:  Genome Announc       Date:  2015-09-10
  1 in total

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