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通过连接接头的改良滚环扩增-下一代测序技术对宫崎-巴厘/2007 果蝠正呼肠孤病毒进行快速全基因组测序

Rapid whole genome sequencing of Miyazaki-Bali/2007 Pteropine orthoreovirus by modified rolling circular amplification with adaptor ligation - next generation sequencing.

作者信息

Singh Harpal, Yoshikawa Tomoki, Kobayashi Takeshi, Fukushi Shuetsu, Tani Hideki, Taniguchi Satoshi, Fukuma Aiko, Yang Ming, Sugamata Masami, Shimojima Masayuki, Saijo Masayuki

机构信息

Department of Intelligent Mechanical Systems, Graduate School of Systems Design, Tokyo Metropolitan University, Tokyo, 192-0065, Japan.

Special Pathogens Laboratory, Department of Virology 1, National Institute of Infectious Diseases, Tokyo, 208-0011, Japan.

出版信息

Sci Rep. 2015 Nov 12;5:16517. doi: 10.1038/srep16517.

Abstract

The emergence of orthoreoviruses as the causative agent of human respiratory illness over the past few years has led to a demand to determine their viral genome sequences. The whole genome sequencing of such RNA viruses using traditional methods, such as Sanger dideoxy sequencing following rapid amplification of cDNA ends presents a laborious challenge due to the numerous preparatory steps required before sequencing can commence. We developed a practical, time-efficient novel combination method capable of reducing the total time required from months to less than a week in the determination of whole genome sequence of Pteropine orthoreoviruses (PRV); through a combination of viral RNA purification and enrichment, adaptor ligation, reverse transcription, cDNA circularization and amplification, and next generation sequencing. We propose to call the method "modified rolling circular amplification with adaptor ligation - next generation sequencing (mRCA-NGS)". Here, we describe the technological focus and advantage of mRCA-NGS and its expansive application, exemplified through the phylogenetic understanding of the Miyazaki-Bali/2007 PRV.

摘要

在过去几年里,正呼肠孤病毒成为人类呼吸道疾病的病原体,这引发了对确定其病毒基因组序列的需求。使用传统方法对这类RNA病毒进行全基因组测序,例如在cDNA末端快速扩增后进行桑格双脱氧测序,由于在测序开始前需要大量的准备步骤,这是一项艰巨的挑战。我们开发了一种实用、高效的新型组合方法,能够将测定狐蝠正呼肠孤病毒(PRV)全基因组序列所需的总时间从数月缩短至不到一周;该方法通过病毒RNA纯化与富集、接头连接、逆转录、cDNA环化与扩增以及下一代测序相结合。我们提议将该方法称为“带接头连接的改良滚环扩增 - 下一代测序(mRCA-NGS)”。在此,我们描述了mRCA-NGS的技术重点、优势及其广泛应用,以对宫崎 - 巴厘/2007 PRV的系统发育理解为例进行说明。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f341/4642344/9d8191bf2cd2/srep16517-f1.jpg

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