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首页> 外文期刊>Journal of Clinical Microbiology >Hairpin Primers for Simplified Single-Nucleotide Polymorphism Analysis of Mycobacterium tuberculosis and Other Organisms
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Hairpin Primers for Simplified Single-Nucleotide Polymorphism Analysis of Mycobacterium tuberculosis and Other Organisms

机译:发夹引物用于结核分枝杆菌和其他生物的简化单核苷酸多态性分析

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We describe a novel, simple, rapid, and highly sensitive method to detect single-nucleotide polymorphisms (SNPs) in Mycobacterium tuberculosis and other organisms. Amplification refractory mutation (ARMS) SNP assays were modified by converting the SNP-detecting linear primers in the ARMS assay to hairpin-shaped primers (HPs) through the addition of a 5′ tail complementary to the 3′ end of the linear primer. The improved ability of these primers to detect SNPs in M. tuberculosis was compared in a real-time PCR with SYBR-I green dye. Linear primers resulted in incorrect or indeterminate allele designation for 6 of the 13 SNP alleles tested in seven different SNP assays, while HPs determined the correct SNP in all cases. We compared the cycle threshold differences (ΔCt) between the reactions containing primer-template matches and the reactions containing primer-template mismatches (where a larger ΔCt indicates a more robust assay). The use of HPs dramatically improved the mean ΔCt values for the SNP assays (7.6 for linear primers and 11.2 for HPs). We designed 98 different HP assays for SNPs previously associated with resistance to the antibiotic isoniazid to test the large-scale utility of the HP approach. Assay design was successful in 72.4%, 83.7%, 88.8%, and 92.9% of the assays after one to four rounds of assay design, respectively. HP SNP assays are simple, sensitive, robust, and inexpensive. These advantages favor the application of this technique for SNP assays of M. tuberculosis and other organisms.
机译:我们描述了一种新颖,简单,快速且高度灵敏的方法来检测结核分枝杆菌和其他生物中的单核苷酸多态性(SNP)。通过将与线性引物3'末端互补的5'尾部添加到ARMS分析中,将检测SNP的线性引物转化为发夹形引物(HPs),从而改进了扩增难治性突变(ARMS)SNP分析。这些引物检测 M中SNP的能力提高。用SYBR-I绿色染料在实时PCR中比较了结核。线性引物导致在七个不同的SNP分析中测试的13个SNP等位基因中有6个的等位基因命名错误或不确定,而HP在所有情况下均确定了正确的SNP。我们比较了包含引物-模板匹配的反应和包含引物-模板不匹配的反应(其中较大的Δ C的反应)之间的循环阈值差异(Δ C t t 表示分析更可靠)。 HP的使用显着提高了SNP分析的平均Δ C t 值(线性引物为7.6,HP为11.2)。我们设计了98种不同的HP SNP检测方法,这些方法以前与对抗生素异烟肼的耐药性有关,以测试HP方法的大规模实用性。经过一到四轮分析设计后,分别有72.4%,83.7%,88.8%和92.9%的分析设计成功。 HP SNP测定简单,灵敏,稳定且便宜。这些优点有利于该技术在 M的SNP分析中的应用。结核病和其他生物。

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