Zhou Bin, Lin Xudong, Wang Wei, Halpin Rebecca A, Bera Jayati, Stockwell Timothy B, Barr Ian G, Wentworth David E
Virology, J. Craig Venter Institute, Rockville, Maryland, USA.
J Clin Microbiol. 2014 May;52(5):1330-7. doi: 10.1128/JCM.03265-13. Epub 2014 Feb 5.
Although human influenza B virus (IBV) is a significant human pathogen, its great genetic diversity has limited our ability to universally amplify the entire genome for subsequent sequencing or vaccine production. The generation of sequence data via next-generation approaches and the rapid cloning of viral genes are critical for basic research, diagnostics, antiviral drugs, and vaccines to combat IBV. To overcome the difficulty of amplifying the diverse and ever-changing IBV genome, we developed and optimized techniques that amplify the complete segmented negative-sense RNA genome from any IBV strain in a single tube/well (IBV genomic amplification [IBV-GA]). Amplicons for >1,000 diverse IBV genomes from different sample types (e.g., clinical specimens) were generated and sequenced using this robust technology. These approaches are sensitive, robust, and sequence independent (i.e., universally amplify past, present, and future IBVs), which facilitates next-generation sequencing and advanced genomic diagnostics. Importantly, special terminal sequences engineered into the optimized IBV-GA2 products also enable ligation-free cloning to rapidly generate reverse-genetics plasmids, which can be used for the rescue of recombinant viruses and/or the creation of vaccine seed stock.
尽管乙型流感病毒(IBV)是一种重要的人类病原体,但其高度的基因多样性限制了我们对其全基因组进行通用扩增以用于后续测序或疫苗生产的能力。通过新一代方法生成序列数据以及快速克隆病毒基因对于基础研究、诊断、抗病毒药物和对抗IBV的疫苗而言至关重要。为了克服扩增多样且不断变化的IBV基因组的困难,我们开发并优化了相关技术,可在单个管/孔中从任何IBV毒株扩增完整的分节段负链RNA基因组(IBV基因组扩增[IBV-GA])。使用这种强大的技术,我们生成并测序了来自不同样本类型(如临床标本)的1000多种不同IBV基因组的扩增子。这些方法灵敏、稳健且不依赖序列(即能通用扩增过去、现在和未来的IBV),这有助于新一代测序和先进的基因组诊断。重要的是,优化后的IBV-GA2产品中设计的特殊末端序列还能实现无需连接的克隆,从而快速生成反向遗传质粒,可用于拯救重组病毒和/或创建疫苗种子库。