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首页> 外文期刊>BMC Genomics >Reference genome and comparative genome analysis for the WHO reference strain for Mycobacterium bovis BCG Danish, the present tuberculosis vaccine
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Reference genome and comparative genome analysis for the WHO reference strain for Mycobacterium bovis BCG Danish, the present tuberculosis vaccine

机译:参考基因组和对比基因组分析,用于释放的人参考菌株BCG丹麦,本结核病疫苗

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Mycobacterium bovis bacillus Calmette-Guérin (M. bovis BCG) is the only vaccine available against tuberculosis (TB). In an effort to standardize the vaccine production, three substrains, i.e. BCG Danish 1331, Tokyo 172-1 and Russia BCG-1 were established as the WHO reference strains. Both for BCG Tokyo 172-1 as Russia BCG-1, reference genomes exist, not for BCG Danish. In this study, we set out to determine the completely assembled genome sequence for BCG Danish and to establish a workflow for genome characterization of engineering-derived vaccine candidate strains. By combining second (Illumina) and third (PacBio) generation sequencing in an integrated genome analysis workflow for BCG, we could construct the completely assembled genome sequence of BCG Danish 1331 (07/270) (and an engineered derivative that is studied as an improved vaccine candidate, a SapM KO), including the resolution of the analytically challenging long duplication regions. We report the presence of a DU1-like duplication in BCG Danish 1331, while this tandem duplication was previously thought to be exclusively restricted to BCG Pasteur. Furthermore, comparative genome analyses of publicly available data for BCG substrains showed the absence of a DU1 in certain BCG Pasteur substrains and the presence of a DU1-like duplication in some BCG China substrains. By integrating publicly available data, we provide an update to the genome features of the commonly used BCG strains. We demonstrate how this analysis workflow enables the resolution of genome duplications and of the genome of engineered derivatives of the BCG Danish vaccine strain. The BCG Danish WHO reference genome will serve as a reference for future engineered strains and the established workflow can be used to enhance BCG vaccine standardization.
机译:细胞杆菌Bacillus Bacillus Bealtete-guérin(Bovis bcg)是唯一针对结核病(TB)的疫苗。努力标准化疫苗生产,三个基底,即BCG丹麦1331,东京172-1和俄罗斯BCG-1作为世卫组织参考菌株。对于BCG东京172-1而言,作为俄罗斯BCG-1,存在参考基因,而不是BCG丹麦语。在这项研究中,我们开始确定BCG丹麦的完全组装的基因组序列,并建立工程衍生疫苗候选菌株的基因组特征的工作流程。通过将第二(Illumina)和第三(PACBIO)生成测序与BCG的综合基因组分析工作流程组合,我们可以构建BCG丹麦1331(07/270)的完全组装的基因组序列(以及作为改进的改进的工程衍生物疫苗候选人,一个SAPM KO),包括分析具有挑战性的长重复区域的分辨率。我们在BCG丹麦语1331中报告了DU1样复制,而此串联重复预先认为被认为仅限于BCG Pasteur。此外,对BCG底皮的公共可用数据的比较基因组分析表明某些BCG巴斯特亚底板中没有DU1以及一些BCG中国底板中的DU1样复制。通过集成公开的数据,我们提供了常用BCG菌株的基因组特征的更新。我们展示了该分析工作流程如何解决基因组重复和BCG丹麦疫苗菌株的工程衍生物的基因组。 BCG丹麦人参考基因组将作为未来的工程菌株的参考,并且可以使用建立的工作流程来增强BCG疫苗标准化。

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