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采用等位基因特异性实时定量PCR技术对菌株一线耐药基因进行快速筛查突变

Rapid screening mutations of first-line-drug-resistant genes in strains by allele-specific real-time quantitative PCR.

作者信息

Yang Pengpeng, Song Yuzhu, Xia Xueshan, Zhang A-Mei

机构信息

Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming, China.

出版信息

PeerJ. 2019 Apr 1;7:e6696. doi: 10.7717/peerj.6696. eCollection 2019.

Abstract

Tuberculosis (TB) is a worldwide health, economic, and social burden, especially in developing countries. Drug-resistant TB is the most serious type of this burden. Thus, it is necessary to screen drug-resistant mutations by using a simple and rapid detection method. A total of 32 pairs of allele-specific PCR (AS-PCR) primers were designed to screen mutation and/or wild-type alleles of 16 variations in four first-line drug-resistant genes (, , , and ) of TB strains. A pair of primers was designed to amplify 16S rRNA gene and to verify successful amplification. Subsequently, we tested the specificity and sensitivity of these AS-PCR primers. The optimized condition of these AS-PCR primers was first confirmed. All mutations could be screened in general AS-PCR, but only 13 of 16 variations were intuitively investigated by using real-time quantitative PCR (qPCR) and AS-PCR primers. The results of specificity assay suggested that the AS-PCR primers with mutation and/or wildtype alleles could successfully amplify the corresponding allele under optimized PCR conditions. The sensitivity of nine pairs of primers was 500 copy numbers, and the other seven pairs of primers could successfully amplify correct fragments with a template comprising 10 or 10 copy numbers template. An optimized AS-qPCR was established to screen drug-resistant mutations in TB strains with high specificity and sensitivity.

摘要

结核病是一项全球性的健康、经济和社会负担,在发展中国家尤为如此。耐药结核病是这种负担中最严重的类型。因此,有必要使用一种简单快速的检测方法来筛查耐药突变。共设计了32对等位基因特异性PCR(AS-PCR)引物,用于筛查结核菌株四个一线耐药基因(、、和)中16个变异的突变和/或野生型等位基因。设计了一对引物来扩增16S rRNA基因并验证扩增是否成功。随后,我们测试了这些AS-PCR引物的特异性和敏感性。首先确定了这些AS-PCR引物的优化条件。在普通AS-PCR中可以筛查所有突变,但通过实时定量PCR(qPCR)和AS-PCR引物直观研究的16个变异中只有13个。特异性检测结果表明,带有突变和/或野生型等位基因的AS-PCR引物在优化的PCR条件下能够成功扩增相应的等位基因。9对引物的敏感性为500拷贝数,其他7对引物能够用包含10或10拷贝数模板的模板成功扩增正确片段。建立了一种优化的AS-qPCR,用于以高特异性和敏感性筛查结核菌株中的耐药突变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d20/6448557/f65bf63531d7/peerj-07-6696-g001.jpg

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