Imaoka Koichi, Kimura Masanobu, Suzuki Michio, Kamiyama Tsuneo, Yamada Akio
Department of Veterinary Science, National Institute of Infectious Diseases, Tokyo 162-8640, Japan.
Jpn J Infect Dis. 2007 May;60(2-3):137-9.
We have developed a combinatorial polymerase chain reaction (PCR) procedure to identify four major species of the genus Brucella simultaneously. Four pairs of primers targeting the genes encoding a cell surface protein (BCSP31) and outer membrane proteins (omp2b, omp2a and omp31) were prepared. PCR using these primers gave rise to specific patterns of amplification for each Brucella spp. examined in this study. B. abortus could be identified when fragments of BCSP31 and omp2b/2a were amplified by B. abortus-specific primers. B. melitensis could be identified by the amplification of fragments of BCSP31, omp2b/2a and omp31 using pair of primers B4/B5, JRF/JPR-ab and omp31. Identification of B. canis could be achieved when the amplicons of omp2b/2a were detected by B. canis-specific primers, as could the identification of BCSP31 and omp31. If specific amplifications occurred using all pairs of primers, the strain was identified as B. suis. Combinatorial PCR reported here thus appeared to be an ideal method of identifying Brucella spp., the causative pathogen of human brucellosis.
我们开发了一种组合聚合酶链反应(PCR)程序,可同时鉴定布鲁氏菌属的四种主要菌种。制备了四对靶向编码细胞表面蛋白(BCSP31)和外膜蛋白(omp2b、omp2a和omp31)基因的引物。使用这些引物进行的PCR对本研究中检测的每种布鲁氏菌属菌种都产生了特定的扩增模式。当流产布鲁氏菌特异性引物扩增出BCSP31和omp2b/2a片段时,可鉴定出流产布鲁氏菌。使用引物对B4/B5、JRF/JPR-ab和omp31扩增BCSP31、omp2b/2a和omp31片段,可鉴定出羊布鲁氏菌。当犬布鲁氏菌特异性引物检测到omp2b/2a的扩增产物时,可实现犬布鲁氏菌的鉴定,BCSP31和omp31的鉴定也如此。如果使用所有引物对都出现特异性扩增,则该菌株被鉴定为猪布鲁氏菌。因此,本文报道的组合PCR似乎是鉴定人类布鲁氏菌病致病病原体布鲁氏菌属菌种的理想方法。