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首页> 外文期刊>Journal of Veterinary Science >Combination of multiplex reverse transcription recombinase polymerase amplification assay and capillary electrophoresis provides high sensitive and high-throughput simultaneous detection of avian influenza virus subtypes
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Combination of multiplex reverse transcription recombinase polymerase amplification assay and capillary electrophoresis provides high sensitive and high-throughput simultaneous detection of avian influenza virus subtypes

机译:多重逆转录重组酶聚合酶扩增测定和毛细管电泳的组合提供了高敏感和高通量的同时检测禽流感病毒亚型

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摘要

The pandemic of avian influenza viruses (AIVs) in Asia has caused enormous economic loss in poultry industry and human health threat, especially clade 2.3.4.4 H5 and H7 subtypes in recent years. The endemic chicken H6 virus in Taiwan has also brought about human and dog infections. Since wild waterfowls is the major AIV reservoir, it is important to monitor the diversified subtypes in wildfowl flocks in early stage to prevent viral reassortment and transmission. To develop a more efficient and sensitive approach is a key issue in epidemic control. In this study, we integrate multiplex reverse transcription recombinase polymerase amplification (RT-RPA) and capillary electrophoresis (CE) for high-throughput detection and differentiation of AIVs in wild waterfowls in Taiwan. Four viral genes were detected simultaneously, including nucleoprotein (NP) gene of all AIVs, hemagglutinin (HA) gene of clade 2.3.4.4 H5, H6 and H7 subtypes. The detection limit of the developed detection system could achieve as low as one copy number for each of the four viral gene targets. Sixty wild waterfowl field samples were tested and all of the four gene signals were unambiguously identified within 6 h, including the initial sample processing and the final CE data analysis. The results indicated that multiplex RT-RPA combined with CE was an excellent alternative for instant simultaneous AIV detection and subtype differentiation. The high efficiency and sensitivity of the proposed method could greatly assist in wild bird monitoring and epidemic control of poultry.
机译:亚洲禽流感病毒(AIV)的大流行病在近年来造成了家禽行业和人类健康威胁中的经济损失巨大的经济损失,尤其是近年来的2.3.4.4 H5和H7亚型。台湾的地方性鸡H6病毒也带来了人类和狗感染。由于野生水禽是主要的AIV储层,因此在早期阶段监测野禽群中的多样化亚型是重要的,以防止病毒重配和传输。发展更有效和敏感的方法是疫情控制中的关键问题。在该研究中,我们整合了多重逆转录重组酶聚合酶扩增(RT-RPA)和毛细管电泳(CE)以进行台湾野生水禽AIV的高通量检测和分化。同时检测到四种病毒基因,包括所有AIV的核蛋白(NP)基因,H6.4.4 H5,H6和H7亚型的血凝素(HA)基因。显影检测系统的检测极限可以实现四种病毒基因靶标的拷贝数低。测试了六十个野生水禽场样品,并在6小时内明确地识别出所有四种基因信号,包括初始样品处理和最终的CE数据分析。结果表明,多重RT-RPA与CE结合是即时同时AIV检测和亚型分化的优异替代方案。所提出的方法的高效率和敏感性可以极大地有助于野生鸟类监测和禽流地控制。

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