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通过在SYBR Green实时逆转录聚合酶链反应中增加扩增子大小来提高对南美白对虾桃拉综合征病毒和黄头病毒检测的特异性和灵敏度。

Improvement in the specificity and sensitivity of detection for the Taura syndrome virus and yellow head virus of penaeid shrimp by increasing the amplicon size in SYBR Green real-time RT-PCR.

作者信息

Mouillesseaux Kevin P, Klimpel Kurt R, Dhar Arun K

机构信息

Scripps Research Institute, 10466 North Torrey Pines Road, La Jolla, CA 92037, USA.

出版信息

J Virol Methods. 2003 Aug;111(2):121-7. doi: 10.1016/s0166-0934(03)00167-8.

DOI:10.1016/s0166-0934(03)00167-8
PMID:12880927
Abstract

Real-time RT-PCR using SYBR Green chemistry uses a green fluorescence dye, SYBR Green I, that binds to double stranded DNA (dsDNA) and exhibits enhancement of fluorescence upon binding to the DNA. The indiscriminate binding ability of SYBR Green I dye to dsDNA often results in non-specific products. We have shown that increasing the amplicon size from approximately 50 to approximately 75-100 bp increases the specificity due to higher melting temperature of the amplicon and also enhances the sensitivity of detection of real-time RT-PCR using SYBR Green chemistry while detecting two RNA viruses in laboratory-challenged shrimp, the Taura syndrome virus (TSV), and yellow head virus (YHV). The increased sensitivity of the larger amplicon over the smaller amplicon varied from 1.6 to 6.82-fold (with a median value of 4-fold) for the TSV-infected samples, and 1.80-10.27-fold (with a median value of 4-fold) for the YHV-infected samples. The longer amplicon also has a higher Tm value compared with the shorter amplicon (75.6 vs. 72.0 degrees C for TSV, and 81.3 vs. 72.5 degrees C for YHV). The increased melting temperature of the longer amplicon compared with the shorter amplicon will enable easier discrimination of a specific product from a primer dimer or other non-specific products. The improved method for the detection of TSV and YHV will be applicable not only to the detection of other viral pathogens but also to the quantitative measurement of cellular gene expression by real-time SYBR Green RT-PCR.

摘要

使用SYBR Green化学法的实时逆转录聚合酶链反应(Real-time RT-PCR)采用一种绿色荧光染料SYBR Green I,它能与双链DNA(dsDNA)结合,并在与DNA结合时表现出荧光增强。SYBR Green I染料对dsDNA的非特异性结合能力常常导致产生非特异性产物。我们已经表明,将扩增子大小从约50 bp增加到约75 - 100 bp,由于扩增子的解链温度更高,会提高特异性,同时在检测实验室感染两种RNA病毒(桃拉综合征病毒(TSV)和黄头病毒(YHV))的虾时,还能增强使用SYBR Green化学法的实时逆转录聚合酶链反应的检测灵敏度。对于TSV感染的样本,较大扩增子比较小扩增子的灵敏度提高倍数在1.6至6.82倍之间(中位数为4倍);对于YHV感染的样本,该提高倍数在1.80至10.27倍之间(中位数为4倍)。与较短扩增子相比,较长扩增子也具有更高的解链温度(TSV分别为75.6℃和72.0℃,YHV分别为81.3℃和72.5℃)。与较短扩增子相比,较长扩增子解链温度的升高将使从引物二聚体或其他非特异性产物中更容易区分出特异性产物。检测TSV和YHV的改进方法不仅适用于检测其他病毒病原体,也适用于通过实时SYBR Green逆转录聚合酶链反应对细胞基因表达进行定量测量。

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