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The role of IS6110 in micro- and macroevolution of Mycobacterium tuberculosis lineage 2

机译:IS6110在结核分枝杆菌谱系的微观和显微镜中的作用2

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摘要

The insertion sequence 6110 (IS6110) is the most studied transposable element in the Mycobacterium tuberculosis complex species. The element plays a significant role in genome plasticity of this important human pathogen, but still many causes and consequences of its transposition have not been fully studied. Here, we analyzed insertion sites for 902 Mycobacterium tuberculosis lineage 2 strains using whole-genome sequencing data. In total, 17,972 insertions were found, corresponding to 827 independent positions in the genome of the reference strain H37Rv. To trace the history of IS6110 expansion since proto-Beijing strains up to modern sublineages, we looked at the distribution of IS6110 across the genome-wide SNP-based phylogenetic tree. This analysis demonstrated a stepwise transposition of IS6110 that occurs by "copy-and-paste" mechanism. Additionally, we detected evolutionary-scale and sublineage-specific integration sites, which can be used for typing and for understanding the reasons for the success of the lineage. A significant part of such insertions affected the genes that are essential for the pathogen. Finally, we identified and confirmed deletions that occurred between differently oriented elements, which is uncommon for this family of insertion elements and appears to be another mechanism of genome variability.
机译:插入序列6110(IS6110)是结核分枝杆菌复杂物种中最受研究的可转换元件。该元素在这种重要人体病原体的基因组可塑性中起重要作用,但仍未完全研究其转子的许多原因和后果。在这里,我们使用全基因组测序数据分析了902分枝杆菌谱系谱系2株的插入位点。总共发现17,972个插入,对应于参考菌株H37RV的基因组中的827个独立位置。为了追踪IS6110的历史,自Proto-Beijing Tout To Modern Sublineages,我们研究了跨越基于基于基于基于SNP的系统发育树的IS6110的分布。该分析证明了IS6110的逐步转置,其通过“复制 - 粘贴”机制发生。此外,我们检测到进化规模和upblegeage的集成站点,可用于打字和理​​解谱系成功的原因。这种插入的重要部分影响了病原体至关重要的基因。最后,我们识别和确认在不同取向元件之间发生的缺失,这对于该族的插入元件罕见并且似乎是基因组变异性的另一机制。

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