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首页> 外文期刊>Journal of Veterinary Research >Evaluation of real-time PCR based on SYBR Green I fluorescent dye for detection of Bacillus anthracis strains in biological samples
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Evaluation of real-time PCR based on SYBR Green I fluorescent dye for detection of Bacillus anthracis strains in biological samples

机译:基于Sybr Green I荧光染料的实时PCR评价检测生物样品中的杆菌菌株

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Introduction: The aim of the study was the application and evaluation of real-time PCRs based on the fluorescence of SYBR Green I intercalating dye for the detection of three Bacillus anthracis genes in contaminated liver and blood samples. The goals for detection were rpoB gene as a chromosomal marker, pag gene located on plasmid pXO1, and capC gene located on plasmid pXO2. Material and Methods: Five B. anthracis strains were used for the experiments. Additionally, single strains of other species of the genus Bacillus, i.e. B. cereus, B. brevis, B. subtilis, and B. megaterium, and strains of six other species were used for evaluation of the specificity of the tests. Three SYBR Green I real-time PCRs were conducted allowing confirmation of B. anthracis in the biological samples. Results: The observation of amplification curves in real-time PCRs enabled the detection of the chromosomally encoded rpoB gene, pag gene, and capC gene of B. anthracis. The specificity of the tests was confirmed by estimation of the melting temperature of the PCR products. The sensitivity and linearity of the reactions were determined using regression coefficients. Strains of other microbial species did not reveal real-time PCR products. Conclusion: All real-time PCRs for the detection of B. anthracis in biological samples demonstrated a significant sensitivity and high specificity.
机译:介绍:该研究的目的是基于SYBR Green I嵌入染料的荧光来检测污染肝脏和血液样品中的三个杆菌蒽基因的实时PCR的应用和评估。检测的目标是RPOB基因作为染色体标记物,位于质粒pXO1上的PAG基因,以及位于质粒PXO2上的CAPC基因。材料和方法:五种B.炭疽病菌株用于实验。另外,芽孢杆菌属的单个菌株,即B.Cereus,B.Brevis,B.枯草芽孢杆菌和B. Megirlium,以及六种其他物种的菌株用于评估测试的特异性。进行三个SYBR Green I实时PCR,允许确认生物样品中的B.炭疽病。结果:实时PCR中扩增曲线的观察使得染色体编码的RPOB基因,PAG基因和B.Nethracis的CAPC基因的检测能够检测。通过估计PCR产物的熔化温度来证实测试的特异性。使用回归系数测定反应的敏感性和线性。其他微生物物种的菌株没有揭示实时PCR产物。结论:在生物样品中检测B.炭疽病的所有实时PCR表现出显着的敏感性和高特异性。

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