纳米孔测序
爆发
环介导等温扩增
计算生物学
聚合酶链反应
桑格测序
协议(科学)
DNA测序
鉴定(生物学)
基因组
纳米孔
生物
计算机科学
病毒学
遗传学
医学
基因
DNA
纳米技术
材料科学
植物
病理
替代医学
作者
Sören Hansen,Oumar Faye,Sabri Saeed Sanabani,Martin Faye,Susanne Böhlken-Fascher,Ousmane Faye,Amadou A. Sall,Michaël Bekaert,Manfred Weidmann,Claus‐Peter Czerny,Ahmed Abd El Wahed
标识
DOI:10.1016/j.jcv.2018.07.001
摘要
Outbreaks of fever of unknown origin start with nonspecific symptoms and case definition is only slowly developed and adapted, therefore, identifying the causative agent is crucial to ensure suitable treatment and control measures. As an alternative method for Polymerase Chain Reaction in molecular diagnostics diagnostic, metagenomics can be applied to identify the pathogen responsible for the outbreak through sequencing all nucleic acids present in a sample extract. Sequencing data obtained can identify new or variants of known agents. To develop a rapid and field applicable protocol to allow the identification of the causative agent of an outbreak. We explored a sequencing protocol relying on multiple displacement isothermal amplification and nanopore sequencing in order to allow the identification of the causative agent in a sample. To develop the procedure, a mock sample consisting of supernatant from Zika virus tissue culture was used. The procedure took under seven hours including sample preparation and data analysis using an offline BLAST search. In total, 63,678 sequence files covering around 10,000 bases were extracted. BLAST search revealed the presence of Zika virus. In conclusion, the protocol has potential for point of need sequencing to identify RNA viruses. The whole procedure was operated in a suitcase laboratory. However, the procedure is cooling chain dependent and the cost per sequencing run is still high.
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