Winogradsky Institute of Microbiology, Russian Academy of Sciences.
Acta Naturae. 2010 Apr;2(1):82-8.
We developed a novel PCR-fingerprinting system for differentiation of enterobacterial strains using a single oligonucleotide primer IS1tr that matches the inverted terminal repeats of the IS1 insertion element. Compared to widely used BOX-PCR and ribotyping methods, our system features higher resolution allowing differentiation of closely related isolates that appear identical in BOX-PCR and ribotyping but differ in their phage sensitivity. The IS1-profiling system is less sensitive to the quality of the material and equipment used. At the same time, BOX-PCR is more universal and suitable for bacterial strain grouping and reconstruction of the low-distance phylogeny. Thus, our system represents an important supplement to the existing set of tools for bacterial strain differentiation; it is particularly valuable for a detailed investigation of highly divergent and rapidly evolving natural bacterial populations and for studies on coliphage ecology. However, some isolates could not be reliably differentiated by IS1-PCR, because of the low number of bands in their patterns. For improvement of IS1-fingerprinting characteristics, we offer to modify the system by introducing the second primer TR8834 hybridizing to the sequence of a transposase gene that is widely spread in enterobacterial genomes.
我们开发了一种新的 PCR 指纹系统,用于使用与 IS1 插入元件的反向末端重复序列匹配的单个寡核苷酸引物 IS1tr 来区分肠杆菌菌株。与广泛使用的 BOX-PCR 和核糖体分型方法相比,我们的系统具有更高的分辨率,能够区分在 BOX-PCR 和核糖体分型中看起来相同但在噬菌体敏感性方面存在差异的密切相关的分离株。IS1 分析系统对所用材料和设备的质量不太敏感。同时,BOX-PCR 更通用,适用于细菌菌株分组和重建低距离系统发育。因此,我们的系统是细菌菌株分化现有工具集的重要补充;它对于高度分化和快速进化的自然细菌种群的详细研究以及对噬菌体生态学的研究特别有价值。然而,由于某些分离株的图谱中条带数量较少,因此无法通过 IS1-PCR 可靠地区分。为了改进 IS1 指纹特征,我们建议通过引入第二个引物 TR8834 来修改该系统,该引物与广泛存在于肠杆菌基因组中的转座酶基因的序列杂交。