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贝叶斯群体结构分析揭示了在先前定义不明确的结核分枝杆菌T组中存在系统发育地理学上特定的亚谱系。

Bayesian population structure analysis reveals presence of phylogeographically specific sublineages within previously ill-defined T group of Mycobacterium tuberculosis.

作者信息

Reynaud Yann, Zheng Chao, Wu Guihui, Sun Qun, Rastogi Nalin

机构信息

WHO Supranational TB Reference Laboratory, Tuberculosis and Mycobacteria Unit, Institut Pasteur de la Guadeloupe, Morne Jolivière Abymes, Guadeloupe, France.

College of Life Sciences, Sichuan University, Chengdu, Sichuan, China.

出版信息

PLoS One. 2017 Feb 6;12(2):e0171584. doi: 10.1371/journal.pone.0171584. eCollection 2017.

Abstract

Mycobacterium tuberculosis genetic structure, and evolutionary history have been studied for years by several genotyping approaches, but delineation of a few sublineages remains controversial and needs better characterization. This is particularly the case of T group within lineage 4 (L4) which was first described using spoligotyping to pool together a number of strains with ill-defined signatures. Although T strains were not traditionally considered as a real phylogenetic group, they did contain a few phylogenetically meaningful sublineages as shown using SNPs. We therefore decided to investigate if this observation could be corroborated using other robust genetic markers. We consequently made a first assessment of genetic structure using 24-loci MIRU-VNTRs data extracted from the SITVIT2 database (n = 607 clinical isolates collected in Russia, Albania, Turkey, Iraq, Brazil and China). Combining Minimum Spanning Trees and Bayesian population structure analyses (using STRUCTURE and TESS softwares), we distinctly identified eight tentative phylogenetic groups (T1-T8) with a remarkable correlation with geographical origin. We further compared the present structure observed with other L4 sublineages (n = 416 clinical isolates belonging to LAM, Haarlem, X, S sublineages), and showed that 5 out of 8 T groups seemed phylogeographically well-defined as opposed to the remaining 3 groups that partially mixed with other L4 isolates. These results provide with novel evidence about phylogeographically specificity of a proportion of ill-defined T group of M. tuberculosis. The genetic structure observed will now be further validated on an enlarged worldwide dataset using Whole Genome Sequencing (WGS).

摘要

多年来,已经通过几种基因分型方法对结核分枝杆菌的遗传结构和进化历史进行了研究,但一些亚谱系的划分仍存在争议,需要更好地表征。4 系(L4)中的 T 组尤其如此,该组最初是使用 spoligotyping 技术将一些特征不明确的菌株汇集在一起进行描述的。尽管传统上不认为 T 菌株是一个真正的系统发育群体,但如使用单核苷酸多态性(SNP)所示,它们确实包含一些具有系统发育意义的亚谱系。因此,我们决定研究使用其他可靠的遗传标记是否可以证实这一观察结果。因此,我们首先使用从 SITVIT2 数据库中提取的 24 位点 MIRU-VNTR 数据(n = 607 株临床分离株,分别从俄罗斯、阿尔巴尼亚、土耳其、伊拉克、巴西和中国收集)对遗传结构进行了评估。结合最小生成树和贝叶斯群体结构分析(使用 STRUCTURE 和 TESS 软件),我们明确识别出八个暂定的系统发育组(T1-T8),它们与地理起源具有显著相关性。我们进一步将观察到的当前结构与其他 L4 亚谱系(n = 416 株属于 LAM、哈勒姆、X、S 亚谱系的临床分离株)进行了比较,并表明 8 个 T 组中有 5 个在系统发育地理学上似乎定义明确, 而其余 3 组则与其他 L4 分离株部分混合。这些结果为结核分枝杆菌中一部分定义不明确的 T 组的系统发育地理学特异性提供了新证据。现在将使用全基因组测序(WGS)在更大规模的全球数据集上进一步验证观察到的遗传结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0fa/5293260/3aaa88403413/pone.0171584.g001.jpg

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