Sola C, Filliol I, Legrand E, Rastogi N
Unité de la tuberculose et des mycobactéries, Institut Pasteur de Guadeloupe, Morne Jolivière, BP 484, 97165 Pointe-à-Pitre, Guadeloupe.
Pathol Biol (Paris). 2000 Dec;48(10):921-32.
Spoligotyping (for 'spacer-oligonucleotide-typing'), a rapid method for genotyping of Mycobacterium tuberculosis complex using the principle of reverse hybridization, is based on the structure of the direct repeat (DR) locus. The DR locus is made up of a variable number of 36 bp DR repeats that are separated by unique inter-DR sequences of 35 to 41 bp. Fast and highly discriminatory, spoligotyping is an useful alternative to the IS6110-RFLP reference method for molecular typing of M. tuberculosis, in particular for isolates possessing five or few copies of IS6110. In this paper, we review the state of the art of spoligotyping through its main current applications. After a brief introduction to the principle of the technique and its description, we successively review recently published results concerning the molecular epidemiology of tuberculosis in humans and cattle, and discuss the main genotyping strategies currently in use to fingerprint the M. tuberculosis complex organisms. We also describe the recent applications of spoligotyping to study ancient DNA and report on recent developments of this technique to study the biodiversity of the M. tuberculosis complex, its contribution towards improved taxonomy and phylogenetics of the M. tuberculosis complex. Last but not least, potential applications of spoligotyping to study DNA recombination mechanisms are also discussed.
间隔寡核苷酸分型法(Spoligotyping,用于“间隔区寡核苷酸分型”)是一种基于反向杂交原理对结核分枝杆菌复合群进行基因分型的快速方法,它基于直接重复序列(DR)位点的结构。DR位点由可变数量的36bp DR重复序列组成,这些重复序列被35至41bp的独特DR间隔序列隔开。Spoligotyping快速且具有高度鉴别力,是IS6110 - RFLP参考方法的一种有用替代方法,用于结核分枝杆菌的分子分型,特别是对于具有五个或更少IS6110拷贝的分离株。在本文中,我们通过其当前的主要应用来综述Spoligotyping的技术现状。在简要介绍该技术的原理及其描述之后,我们依次综述了最近发表的关于人类和牛结核病分子流行病学的结果,并讨论了目前用于对结核分枝杆菌复合群生物进行指纹识别的主要基因分型策略。我们还描述了Spoligotyping在研究古代DNA方面的最新应用,并报告了该技术在研究结核分枝杆菌复合群生物多样性、对改进结核分枝杆菌复合群的分类学和系统发育学的贡献方面的最新进展。最后但同样重要的是,还讨论了Spoligotyping在研究DNA重组机制方面的潜在应用。