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首页> 外文期刊>Molecular and Cellular Probes: The Location, Diagnosis and Monitoring of Disease by Specific Molecules and Cell Lines >Multiplex real-time SYBR Green I PCR assay for detection of tetracycline efflux genes of Gram-negative bacteria.
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Multiplex real-time SYBR Green I PCR assay for detection of tetracycline efflux genes of Gram-negative bacteria.

机译:多重实时SYBR Green I PCR检测法可检测革兰氏阴性细菌的四环素外排基因。

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In an effort to find a rapid, efficient, and reliable method for screening and classifying large numbers of tetracycline-resistant bacterial isolates, we developed a multiplex, real-time PCR assay using SYBR Green I and the Roche LightCycler. The assay can rapidly identify eight genes encoding tetracycline resistance efflux pumps including tet(A), tet(B), tet(C), tet(D), tet(E), tet(G), tet(H) and tet(J). Primers were selected for PCR amplification of these eight tetracycline resistance determinant (tet) genes commonly found in Gram-negative organisms. We combined primer pairs together to make a single-tube multiplex PCR reaction followed by melting curve analysis. Amplification of the expected tet gene products was confirmed by both agarose gel electrophoresis and DNA sequence analysis. Based on melting temperature differences, we could identify the different classes of tet genes. To test the multiplex PCR, the assay was used on 107 tetracycline-resistant clinical isolates of various Gram-negative organisms isolated in several locations around the world. About 49.5% of those strains carried a tet(A) gene, 35.5% carried a tet(B), 7.5% carried a tet(J), 5.6% carried a tet(C) and 1.9% carried a tet(D) gene. DNA sequence analysis of the amplicons confirmed that the specificity of the test was 100%. The sensitivity of the multiplex test varied from 10 to 1000CFU per PCR reaction. Our real time PCR assay utilizing SYBR Green I and melting point analysis on the Lightcycler system showed not only a high confidence level in differentiation of the classes of tet genes but also precise reproducibility. Our multiplex PCR tet gene class identification assay offers a significant savings of time and labor in the analysis of large numbers of clinical strains compared with assays using individual gene PCR or traditional phenotype methods.
机译:为了找到一种快速,有效和可靠的方法来筛选和分类大量对四环素具有抗药性的细菌,我们开发了使用SYBR Green I和Roche LightCycler进行的多重实时PCR检测。该测定法可以快速鉴定编码tet(A),tet(B),tet(C),tet(D),tet(E),tet(G),tet(H)和tet( J)。选择引物用于PCR扩增革兰氏阴性生物中常见的这八个四环素抗性决定簇(tet)基因。我们将引物对组合在一起以进行单管多重PCR反应,然后进行熔解曲线分析。琼脂糖凝胶电泳和DNA序列分析均证实了预期的tet基因产物的扩增。根据融化温度的差异,我们可以识别不同类别的tet基因。为了测试多重PCR,该测定法被用于在世界各地几个地方分离的107种四环素抗性临床分离株,这些分离株具有多种革兰氏阴性生物。这些菌株中约有49.5%携带tet(A)基因,35.5%携带tet(B),7.5%携带tet(J),5.6%携带tet(C)和1.9%携带tet(D)基因。扩增子的DNA序列分析证实测试的特异性是100%。每个PCR反应的多重测试灵敏度从10到1000CFU不等。我们利用SYBR Green I进行的实时PCR分析以及在Lightcycler系统上的熔点分析表明,不仅在tet基因类别的分化中具有很高的置信度,而且还具有精确的可重复性。与使用单个基因PCR或传统表型方法的分析相比,我们的多重PCR tet基因类鉴定分析可在大量临床菌株的分析中节省大量时间和精力。

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