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首页> 外文期刊>Infection, Genetics and Evolution: Journal of Molecular Epidemiology and Evolutionary Genetics in Infectious Diseases >Genotyping of the Mycobacterium tuberculosis complex using MIRUs: association with VNTR and spoligotyping for molecular epidemiology and evolutionary genetics
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Genotyping of the Mycobacterium tuberculosis complex using MIRUs: association with VNTR and spoligotyping for molecular epidemiology and evolutionary genetics

机译:使用MIRUs对结核分枝杆菌复合体进行基因分型:与VNTR和分子遗传学和进化遗传学的spoligotyping相关。

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摘要

The recent introduction of molecular methods has gained increased acceptance as a powerful tool for epidemiology and phylogeny of tuberculosis (TB). In this investigation, the efficiency of molecular typing using mycobacterial interspersed repetitive units (MIRUs) was assessed on a set of 116 Mycobacterium tuberculosis complex clinical isolates from 11 different geographic origins. The results obtained were compared with spoligotyping and variable number of tandem DNA repeats (VNTRs) typing data. Eighty-nine different MIRU profiles were obtained on the sample studied. Spoligotyping- or VNTR-defined clusters were split into subclusters by MIRU typing. Conversely, almost all of the clinical isolates clustered by MIRUs were shown to belong to spoligotyping-based defined clusters. The calculation of the discriminative power by the Hunter-Gaston index (HGI) for VNTR. spoligotyping and MIRU typing gave the values of, respectively, 0.959, 0.965 and 0.988, showing the high discriminative power of the MIRUs. The allelic diversity of the sample was calculated for each of the MIRU-VNTR loci; five MIRU loci (MIRU nos. 10, 23, 26, 31 and 40) were "highly discriminant", four (MIRU nos. 4, 16, 24 and 39) were "moderately discriminant", and three (MIRU nos. 2,20 and 27) were "poorly discriminant". Among the three complementary VNTRs (exact tandem repeats ETR-A, ETR-B and ETR-C), ETR-A was the most discriminant locus. A combined numerical analysis of spoligolyping, VNTR and MIRU typing results partly corroborated a recently hypothesized evolutionary scenario for the M. tuberculosis complex. M. canettii would be the first branch to have diverged from a common M. tuberculosis complex ancestor. The East-African Indian (EAI) clade eould be the first family to have diverged thereafter. A third branching separated a M. africanum-M. bovis clade, followed by a node separating Beijing versus non-Beijing M. tuberculosis. The Beijing clade was distinct from the Central Asian 1 (CAS1) family. Among non-Beijing strains,branches such as the Latin-American and Mediterranean (LAM), X and Haarlem clades diverged later. In conclusion, the results obtained show the congruence between clades defined by spoligotyping, and MIRU-VNTR, and underline the potential of these methodsfor M. tuberculosis phylogeny reconstruction. We also conclude that MIRU typing is a very promising method that may be used in a "two PCR-based" genotyping strategy, in conjunction to conventional epidemiological investigations.
机译:分子方法的最新引入已被越来越多地接受,认为它是结核病(TB)流行病学和系统发育的有力工具。在这项调查中,使用分枝杆菌散布的重复单元(MIRUs)对来自11个不同地理起源的116例结核分枝杆菌复杂临床分离株进行分子分型的效率进行了评估。将获得的结果与sgogotyping和可变数目的串联DNA重复序列(VNTRs)类型数据进行比较。在研究的样品上获得了89个不同的MIRU轮廓。通过MIRU输入,将Spoligotyping或VNTR定义的集群分为多个子集群。相反,几乎所有由MIRU聚类的临床分离株均显示属于基于寡核苷酸分型的定义聚类。通过VNTR的Hunter-Gaston指数(HGI)计算判别力。 spoligotyping和MIRU分型分别给出0.959、0.965和0.988的值,显示出MIRU的高判别力。对于每个MIRU-VNTR基因座,计算样品的等位基因多样性;五个MIRU位点(第10、23、26、31和40个MIRU位)为“高度判别”,四个(第4、16、24和39个MIRU位)为“中度判别”,第三个(第2个MIRU位为2)。 20和27)“差”。在三个互补的VNTR(精确的串联重复ETR-A,ETR-B和ETR-C)中,ETR-A是最有区别的基因座。隔离分析,VNTR和MIRU分型结果的组合数值分析在一定程度上证实了结核分枝杆菌复合体最近假想的进化方案。 canettii分支将是第一个脱离普通结核分枝杆菌复杂祖先的分支。此后,东非印第安人(EAI)进化枝应该是第一个分裂的家庭。第三个分支分离了非洲分枝杆菌。牛分支,随后将北京与非北京结核分枝杆菌分开。北京进化枝不同于中亚1(CAS1)家族。在非北京菌株中,诸如拉丁美洲和地中海(LAM),X和哈勒姆进化枝等分支后来发生了分歧。总而言之,获得的结果表明,由血吸虫分型法定义的进化枝与MIRU-VNTR之间的一致性,并强调了这些方法在结核分枝杆菌系统发育重建中的潜力。我们还得出结论,MIRU分型是一种非常有前途的方法,可与常规的流行病学研究一起用于“基于两个PCR的”基因分型策略。

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