首页> 外文期刊>Indian Journal of Medical Microbiology >Optimization and head-to-head comparison of MISSR-PCR, ERIC-PCR, RAPD and 16S rRNA evolutionary clock for the genotyping of Vibrio cholerae isolated in China
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Optimization and head-to-head comparison of MISSR-PCR, ERIC-PCR, RAPD and 16S rRNA evolutionary clock for the genotyping of Vibrio cholerae isolated in China

机译:MISSR-PCR,ERIC-PCR,RAPD和16S rRNA进化时钟在中国霍乱弧菌基因分型中的优化与比较

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Purpose: To establish a new genotyping method for Vibrio cholerae and compare it with other methods. Materials and Methods: In the current study, a modified inter simple sequence repeat-polymerase chain reaction (MISSR-PCR) system was developed via several rounds of optimisation. Comparison study was then conducted between MISSR-PCR and three other methods, including enterobacterial repetitive intergenic consensus sequences-based PCR (ERIC-PCR), randomly amplified polymorphic DNA (RAPD) and 16S rRNA evolutionary clock, for the detection and genetic tracing of Vibrio cholerae isolated from seafood in China. Result: The results indicated that the MISSR-PCR system could generate the highest polymorphic fingerprinting map in a single round PCR and showed the best discriminatory ability for Vibrio cholerae genotyping by clearly separating toxigenicontoxigenic strains, local/foreign strains, and O1/O139on-O1on-O139 serogroup strains, comparing to ERIC-PCR, RAPD and 16S rRNA evolutionary clock. Moreover, the MISSR-PCR is superior to previously described traditional simple sequence repeat based PCR method on genotyping by more clearly separating different clusters. Conclusion: To the best of our knowledge, this is the first head-to-head comparison of four detection and genotyping methods for Vibrio cholerae The MISSR-PCR system established here could serve as a simple, quick, reliable and cost-effective tool for the genotyping and epidemiological study.
机译:目的:为霍乱弧菌建立一种新的基因分型方法,并将其与其他方法进行比较。材料和方法:在当前研究中,经过几轮优化,开发了改良的内部简单序列重复聚合酶链反应(MISSR-PCR)系统。然后在MISSR-PCR和其他三种方法之间进行了比较研究,包括基于肠细菌重复基因间共有序列的PCR(ERIC-PCR),随机扩增的多态性DNA(RAPD)和16S rRNA进化时钟,用于弧菌的检测和遗传示踪从中国海鲜中分离出的霍乱杆菌。结果:结果表明,MISSR-PCR系统可通过清楚地分离产毒/非产毒菌株,本地/外源菌株和O1 / O139来在单轮PCR中产生最高的多态性指纹图谱,并显示出最佳的霍乱弧菌基因分型能力。 /非O1 /非O139血清群菌株,与ERIC-PCR,RAPD和16S rRNA进化时钟相比。此外,MISSR-PCR通过更清楚地分离不同的簇而优于先前描述的基于基因分型的传统的基于简单序列重复的PCR方法。结论:据我们所知,这是四种霍乱弧菌检测和基因分型方法的首次头对头比较。此处建立的MISSR-PCR系统可以作为一种简单,快速,可靠且经济高效的工具用于基因分型和流行病学研究。

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