Zhao Jianing, Wang Yiwei, Li Dairong, Liu Jiawen, Zhang Xuemei, He Yujuan, Wang Hong, Cao Ju, Yin Yibing, Xu Wenchun
Department of Laboratory Medicine, College of Laboratory Medicine, Chongqing Medical University, 1 Yixueyuan Road, Yuzhong District, Chongqing, 400016, People's Republic of China.
World J Microbiol Biotechnol. 2014 Aug;30(8):2189-97. doi: 10.1007/s11274-014-1638-8. Epub 2014 Mar 25.
Rapid and accurate identification of mycobacteria to the species level is important to provide epidemiological information and to guide the appropriate treatment, especially identification of the Mycobacterium tuberculosis (MTB) which is the leading pathogen causing tuberculosis. The genetic marker named as Mycobacterium tuberculosis specific sequence 90 (mtss90) was screened by a bioinformatics software and verified by a series of experiments. To test its specificity, 266 strains of microorganisms and human cells were used for the mtss90 conventional PCR method. Moreover, the efficiency of mtss90 was evaluated by comparing 16S rDNA (Mycobacterium genus-specific), IS6110 (specific identification of MTB complex), mtp40 (MTB-specific) and PNB/TCH method (traditional bacteriology testing) in Mycobacterium strains. All MTB isolates were mtss90 positive. No amplification was observed from any other tested strains with M. microti as an exception. Compared with the traditional PNB/TCH method, the coincidence rate was 99.1 % (233/235). All of the mtss90 positive strains were IS6110 and 16S rDNA positive, indicating a 100 % coincidence rate (216/216) between mtss90 and these two genetic markers. Additionally, mtss90 had a better specificity than mtp40 in the identification of MTB. Lastly, a real-time PCR diagnostic assay was developed for the rapid identification of MTB. In conclusion, mtss90 may be an efficient alternative marker for species-specific identification of MTB and could be used for the diagnosis of tuberculosis combined with other genetic markers.
将分枝杆菌快速准确地鉴定到种水平对于提供流行病学信息和指导恰当治疗非常重要,尤其是对导致结核病的主要病原体结核分枝杆菌(MTB)的鉴定。通过生物信息学软件筛选出名为结核分枝杆菌特异性序列90(mtss90)的遗传标记,并通过一系列实验进行了验证。为测试其特异性,使用266株微生物和人类细胞进行mtss90常规PCR方法检测。此外,通过比较分枝杆菌菌株中的16S rDNA(分枝杆菌属特异性)、IS6110(MTB复合群特异性鉴定)、mtp40(MTB特异性)和PNB/TCH方法(传统细菌学检测)来评估mtss90的效率。所有MTB分离株mtss90均为阳性。除微小分枝杆菌外,其他任何测试菌株均未观察到扩增。与传统的PNB/TCH方法相比,符合率为99.1%(233/235)。所有mtss90阳性菌株IS6110和16S rDNA均为阳性,表明mtss90与这两个遗传标记之间的符合率为100%(216/216)。此外,在MTB鉴定中,mtss90比mtp40具有更好的特异性。最后,开发了一种实时PCR诊断检测方法用于MTB的快速鉴定。总之,mtss90可能是MTB种特异性鉴定的一种有效替代标记,可与其他遗传标记结合用于结核病的诊断。