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首页> 外文期刊>Journal of Virological Methods >Validation of specific quantitative real-time RT-PCR assay panel for Infectious Bronchitis using synthetic DNA standards and clinical specimens
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Validation of specific quantitative real-time RT-PCR assay panel for Infectious Bronchitis using synthetic DNA standards and clinical specimens

机译:使用合成DNA标准和临床标本验证感染性支气管炎的特定定量实时RT-PCR测定面板

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摘要

Infectious bronchitis (IB) is a highly contagious upper respiratory tract disease of chickens caused by infectious bronchitis virus (IBV), which has various serotypes that do not cross-protect. Vaccine control strategies for this virus are only effective when designed around the currently circulating serotypes. It is essential to not only rapidly detect IBV but also to identify the type of virus causing disease. Six TaqMan (TM)-based quantitative real-time RT-PCR assays (Universal, Ark, Mass, DE/GA98, GA07, GA08) were developed and examined the sensitivity and specificity for each assay. Assays were developed targeting the hypervariable region in the S1 gene subunit. The analytical sensitivity of TaqMan (TM)-based quantitative real-time RT-PCR assays (qRT-PCR) assays was evaluated using synthetic DNA standards that were identical with the target sequence and specificity was further validated using clinical and biological specimens. All developed assays performed equivalently when using synthetic DNA templates as standard material, as it achieved linearity over a 5 log(10) dynamic range with a reproducible limit of detection of <= 10 target copies per reaction, with high calculated amplification efficiencies ranging between 90%-115%. Further validation of specificity using clinical and biological specimens was also successful.
机译:传染性支气管炎(IB)是一种高度传染性的上呼吸道疾病,由传染性支气管炎病毒(IBV)引起的鸡,其具有不跨保护的各种血清型。该病毒的疫苗控制策略仅在目前循环的血清型时有效。至关重要,不仅迅速检测到IBV,还必须鉴定导致疾病的病毒类型。基于六个Taqman(TM)的定量实时RT-PCR测定(Universal,Ark,Mass,DE / Ga98,Ga07,Ga08)并检查每个测定的敏感性和特异性。靶向S1基因亚基中的高变区域进行测定。使用合成DNA标准评价Taqman(TM)的定量实时RT-PCR测定(QRT-PCR)测定的分析敏感性,所述合成DNA标准与靶序列相同,使用临床和生物标本进一步验证特异性。当使用合成DNA模板作为标准材料时,所有开发的测定都是等效的,因为它在5个对数(10)的动态范围内实现了线性度,其反应的再现限制了<= 10靶拷贝的重复性,具有高于90之间的高计算放大效率%-115%。使用临床和生物标本的特异性进一步验证也是成功的。

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