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Design and testing of multiplex RT-PCR primers for the rapid detection of influenza A virus genomic segments: Application to equine influenza virus

机译:用于快速检测甲型流感病毒基因组片段的多重RT-PCR引物的设计和测试:在马流感病毒中的应用

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The avian influenza A virus causes respiratory infections in animal species. It can undergo genomic recombination with newly obtained genetic material through an interspecies transmission. However, the process is an unpredictable event, making it difficult to predict the emergence of a new pandemic virus and distinguish its origin, especially when the virus is the result of multiple infections. Therefore, identifying a novel influenza is entirely dependent on sequencing its whole genome. Occasionally, however, it can be time-consuming, costly, and labor-intensive when sequencing many influenza viruses. To compensate for the difficulty, we developed a rapid, cost-effective, and simple multiplex RT-PCR to identify the viral genomic segments. As an example to evaluate its performance, H3N8 equine influenza virus (EIV) was studied for the purpose. In developing this protocol to amplify the ETV eight-segments, a series of processes, including phylogenetic analysis based on different influenza hosts, in silico analyses to estimate primer specificity, coverage, and variation scores, and investigation of host-specific amino acids, were progressively conducted to reduce or eliminate the negative factors that might affect PCR amplification. Selectively, EN specific primers were synthesized with dual priming oligonucleotides (DPO) system to increase primer specificity. As a result, 16 primer pairs were selected to screen the dominantly circulating H3N8 EIV 8 genome segments: PA (3), PB2 (1), PA (3), NP (3), NA8 (2), HA3 (1), NS (1), and M (2). The diagnostic performance of the primers was evaluated with eight sets composing of four segment combinations using viral samples from various influenza hosts. The PCR results suggest that the multiplex RT-PCR has a wide range of applications in detection and diagnosis of newly emerging EIVs. Further, the proposed procedures of designing multiplex primers are expected to be used for detecting other animal influenza A viruses. (C) 2015 The Authors. Published by Elsevier B.V.
机译:甲型禽流感病毒引起动物呼吸道感染。它可以通过种间传播与新获得的遗传物质进行基因组重组。但是,该过程是不可预测的事件,因此很难预测新的大流行病毒的出现和区分其起源,特别是当该病毒是多种感染的结果时。因此,鉴定新型流感完全取决于对整个流感基因组进行测序。但是,有时在对许多流感病毒进行测序时可能会耗时,昂贵且费力。为了弥补这一困难,我们开发了一种快速,经济高效且简单的多重RT-PCR来鉴定病毒基因组片段。作为评估其性能的一个例子,为此目的研究了H3N8马流感病毒(EIV)。在开发此协议以扩增ETV八段片段时,进行了一系列过程,包括基于不同流感宿主的系统发育分析,计算机模拟分析以评估引物特异性,覆盖范围和变异分数,以及研究宿主特异性氨基酸。逐步进行以减少或消除可能影响PCR扩增的负面因素。选择性地,使用双重引物寡核苷酸(DPO)系统合成EN特异性引物以增加引物特异性。结果,选择了16对引物来筛选主要循环的H3N8 EIV 8个基因组片段:PA(3),PB2(1),PA(3),NP(3),NA8(2),HA3(1), NS(1)和M(2)。使用来自各种流感宿主的病毒样品,用八组组成的四个片段组合评估了引物的诊断性能。 PCR结果表明,多重RT-PCR在新兴EIV的检测和诊断中具有广泛的应用。此外,预期的设计多重引物的提议程序将用于检测其他动物甲型流感病毒。 (C)2015作者。由Elsevier B.V.发布

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