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A genome-wide analysis of multidrug-resistant and extensively drug-resistant strains of Mycobacterium tuberculosis Beijing genotype

机译:北京结核分枝杆菌多药耐药和广泛耐药菌株的全基因组分析

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摘要

The Beijing genotype of Mycobacterium tuberculosis (MTB) is one of the most successful MTB lineages that has disseminated in the world. In China, the rate of multidrug-resistant (MDR) tuberculosis is significantly higher than the global average rate, and the Beijing genotype strains take the largest share of MDR strains. To study the genetic basis of the epidemiological findings that Beijing genotype has often been associated with tuberculosis outbreaks and drug resistance, we determined the genome sequences of four clinical isolates: two extensively drug resistant (XDR1219, XDR1221) and two multidrug resistant (WX1, WX3), using whole-genome sequencing. A large number of individual and shared SNPs of the four Beijing strains were identified. Our isolates harbored almost all classic drug resistance-associated mutations. The mutations responsible for drug resistance in the two XDR strains were consistent with the clinical quantitative drug resistance levels. COG analysis revealed that Beijing strains have significantly higher abundances of the mutations responsible for cell wall/membrane/envelope biogenesis (COG M), secondary metabolites biosynthesis, transport and catabolism (COG Q), lipid transport and metabolism (COG I) and defense mechanisms (COG V). The shared mutated genes of the four studied Beijing strains were significantly overrepresented in three DNA repair pathways. Our analyses promote the understanding of the genome polymorphism of the Beijing family strains and provide the molecular genetic basis for their wide dissemination capacity and drug resistance.
机译:北京结核分枝杆菌(MTB)基因型是在世界范围内传播最成功的MTB谱系之一。在中国,耐多药结核病的发病率明显高于全球平均水平,北京基因型菌株在耐多药结核病中所占比例最大。为了研究北京基因型经常与结核病暴发和耐药相关的流行病学发现的遗传基础,我们确定了四种临床分离株的基因组序列:两种广泛耐药(XDR1219,XDR1221)和两种耐药(WX1,WX3) ),使用全基因组测序。鉴定出了四个北京菌株的大量单个和共享SNP。我们的分离株几乎包含所有经典的与耐药性相关的突变。两个XDR菌株中引起耐药性的突变与临床定量耐药性水平一致。 COG分析显示,北京菌株的细胞壁/膜/包膜生物发生(COG M),次生代谢产物生物合成,转运和分解代谢(COG Q),脂质转运和代谢(COG I)的突变明显丰富。 (COG V)。在四个DNA修复途径中,四个研究的北京菌株的共有突变基因被显着过量表达。我们的分析促进了对北京家族菌株基因组多态性的理解,并为其广泛的传播能力和耐药性提供了分子遗传学基础。

著录项

  • 来源
    《Molecular Genetics and Genomics》 |2013年第9期|425-436|共12页
  • 作者单位

    College of Life Sciences Fudan University">(1);

    Shanghai-MOST Key Laboratory of Health and Disease Genomics Chinese National Human Genome Center at Shanghai">(2);

    College of Life Sciences Fudan University">(1);

    Department of Medical Microbiology and Parasitology Shanghai Jiao Tong University School of Medicine">(3);

    Department of Medical Microbiology and Parasitology Shanghai Jiao Tong University School of Medicine">(3);

    Wuxi Hospital of Infection Disease">(4);

    College of Life Sciences Fudan University">(1);

    Shanghai-MOST Key Laboratory of Health and Disease Genomics Chinese National Human Genome Center at Shanghai">(2);

    Shanghai Key Laboratory of Tuberculosis Shanghai Pulmonary Hospital Medical School Tongji University">(5);

    Shanghai Key Laboratory of Tuberculosis Shanghai Pulmonary Hospital Medical School Tongji University">(5);

    College of Life Sciences Fudan University">(1);

    College of Life Sciences Fudan University">(1);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mycobacterium tuberculosis; Resistance; Beijing genotype; Genome; DNA repair;

    机译:结核分枝杆菌;抵抗性;北京基因型基因组DNA修复;

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