Woo T H, Patel B K, Cinco M, Smythe L D, Norris M A, Symonds M L, Dohnt M F, Piispanen J
School of Biomolecular and Biomedical Sciences, Faculty of Science, Griffith University, Brisbane, QLD, Australia.
J Microbiol Methods. 1999 Feb;35(1):23-30. doi: 10.1016/s0167-7012(98)00095-5.
Sequence analysis of 16S rRNA genes extracted from nucleic acids databases enabled the identification of a Leptospira biflexa (L. biflexa) signature sequence, against which a reverse primer designated L613, was designed. This primer, when used in conjunction with a universal bacterial specific forward primer designated Fd1, enabled the development of a LightCycler-based PCR protocol in which fluorescence emission due to binding of SYBR Green I dye to amplified products could be detected and monitored. A melting temperature (Tm), determined from the melting curve of the amplified product immediately following the termination of thermal cycling, confirmed that the product was that of L. biflexa. Agarose gel electrophoresis therefore was not necessary for identification of PCR products. The PCR protocol was very rapid, and consisted of 30 cycles with a duration of 20 s for each cycle with the monitoring of the melting curve requiring an additional 3 min. The whole protocol was completed in less than 20 min. The PCR protocol was also specific and enabled the identification of 18 strains of L. biflexa, whilst excluding 14 strains of L. interrogans and Leptonema illini. Two examples of its utility in improving work flow of a Leptospira reference laboratory are presented in this article. The use of a simple boiling method for extraction of DNA from all the members of the Leptospiraceae family DNA further simplifies the procedure and makes its use conducive to diagnostic laboratories.
对从核酸数据库中提取的16S rRNA基因进行序列分析,从而鉴定出双曲钩端螺旋体(L. biflexa)的特征序列,并据此设计了反向引物L613。当该引物与通用细菌特异性正向引物Fd1结合使用时,可开发基于LightCycler的PCR方案,通过该方案可检测和监测SYBR Green I染料与扩增产物结合导致的荧光发射。根据热循环终止后立即获得的扩增产物熔解曲线确定的熔解温度(Tm),证实该产物为双曲钩端螺旋体的产物。因此,琼脂糖凝胶电泳对于PCR产物的鉴定并非必需。该PCR方案速度非常快,包括30个循环,每个循环持续20秒,监测熔解曲线还需要额外3分钟。整个方案在不到20分钟内即可完成。该PCR方案也具有特异性,能够鉴定18株双曲钩端螺旋体,同时排除14株问号钩端螺旋体和伊利诺伊细螺旋体。本文给出了该方案在改善钩端螺旋体参考实验室工作流程方面的两个应用实例。采用简单的煮沸法从钩端螺旋体科所有成员中提取DNA,进一步简化了操作过程,有利于诊断实验室使用。