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首页> 外文期刊>BMC Veterinary Research >Quadruplex PCR assay for identification of Corynebacterium pseudotuberculosis differentiating biovar Ovis and Equi
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Quadruplex PCR assay for identification of Corynebacterium pseudotuberculosis differentiating biovar Ovis and Equi

机译:四链PCR测定法鉴别假肺棒状杆菌区分生物羊和猪的异种。

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Background Corynebacterium pseudotuberculos is is classified into two biovars, nitrate-negative biovar Ovis which is the etiologic agent of caseous lymphadenitis in small ruminants and nitrate-positive biovar Equi, which causes abscesses and ulcerative lymphangitis in equines. The aim of this study was to develop a quadruplex PCR assay that would allow simultaneous detection and biovar-typing of C. pseudotuberculosis . Methods In the present study, genomes of C. pseudotuberculosis strains were used to identify the genes involved in the nitrate reduction pathway to improve a species identification three-primer multiplex PCR assay. The nitrate reductase gene ( narG ) was included in the PCR assay along with the 16S, rpoB and pld genes to enhance the diagnosis of the multiplex PCR at biovar level. Results A novel quadruplex PCR assay for C. pseudotuberculosis species and biovar identification was developed. The results of the quadruplex PCR of 348 strains, 346 previously well-characterized clinical isolates of C. pseudotuberculosis from different hosts (goats, sheep, horse, cattle, buffalo, llamas and humans), the vaccine strain 1002 and the type strain ATCC 19410T, were compared to the results of nitrate reductase identification by biochemical test. The McNemar’s Chi-squared test used to compare the two methods used for C. pseudotuberculosis biovar identification showed no significant difference ( P =?0.75) [95% CI for odds ratio (0.16–6.14)] between the quadruplex PCR and the nitrate biochemical test. Concordant results were observed for 97.13% (338 / 348) of the tested strains and the kappa value was 0.94 [95% CI (0.90–0.98)]. Conclusions The ability of the quadruplex assay to discriminate between C. pseudotuberculosis biovar Ovis and Equi strains enhances its usefulness in the clinical microbiology laboratory.
机译:背景技术假结核棒杆菌分为两个生物变种,硝酸盐阴性生物变种Ovis是小反刍动物中干酪性淋巴结炎的病原体,而硝酸盐阳性生物变种Equi则在马中引起脓肿和溃疡性淋巴管炎。这项研究的目的是开发一种四链PCR检测方法,该方法可以同时检测假结核分枝杆菌并进行生物分型。方法在本研究中,假单胞菌菌株的基因组用于鉴定硝酸盐还原途径中涉及的基因,以改进物种鉴定的三引物多重PCR分析。硝酸还原酶基因(narG)与16S,rpoB和pld基因一起被包括在PCR分析中,以增强在biovar水平上多重PCR的诊断。结果建立了一种新型的四链PCR检测假单胞菌种和鉴定生物变种的方法。 348个菌株,346个以前特征明确的来自不同宿主(山羊,绵羊,马,牛,水牛,美洲驼和人类),假菌株的假结核梭菌的临床分离株,疫苗菌株1002和类型菌株ATCC 19410的四重PCR结果通过生化试验将 T 与硝酸还原酶的鉴定结果进行了比较。用于比较假结核念珠菌生物变种鉴定的两种方法的McNemar卡方检验显示,四重PCR和硝酸盐生化试剂之间无显着差异(P =?0.75)[优势比(95%CI)(0.16-6.14)] [95]测试。在97.13%(338/348)的菌株中观察到一致的结果,κ值为0.94 [95%CI(0.90-0.98)]。结论四重分析法能够区分假结核念珠菌生物变种Ovis和Equi菌株,增强了其在临床微生物学实验室中的实用性。

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