| Literature DB >> 26854371 |
Qiufen Zhang1, Baoshan Wan1, Aiping Zhou2, Jinjing Ni1, Zhihong Xu1, Shuxian Li1, Jing Tao3, YuFeng Yao4.
Abstract
Mycobacterium tuberculosis (M.tb) is one of the most prevalent bacterial pathogens in the world. With geographical wide spread and hypervirulence, Beijing/W family is the most successful M.tb lineage. China is a country of high tuberculosis (TB) and high multiple drug-resistant TB (MDR-TB) burden, and the Beijing/W family strains take the largest share of MDR strains. To study the genetic basis of Beijing/W family strains' virulence and drug resistance, we performed the whole genome sequencing of M.tb strain W146, a clinical Beijing/W genotype MDR isolated from Wuxi, Jiangsu province, China. Compared with genome sequence of M.tb strain H37Rv, we found that strain W146 lacks three large fragments and the missing of furA-katG operon confers isoniazid resistance. Besides the missing of furA-katG operon, strain W146 harbored almost all known drug resistance-associated mutations. Comparison analysis of single nucleotide polymorphisms (SNPs) and indels between strain W146 and Beijing/W genotype strains and non-Beijing/W genotype strains revealed that strain W146 possessed some unique mutations, which may be related to drug resistance, transmission and pathogenicity. These findings will help to understand the large sequence polymorphisms (LSPs) and the transmission and drug resistance related genetic characteristics of the Beijing/W genotype of M.tb.Entities:
Keywords: Beijing/W genotype; Genome sequencing; Isoniazid resistance; Large sequence polymorphisms; Mycobacterium tuberculosis
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Year: 2016 PMID: 26854371 DOI: 10.1016/j.gene.2016.02.003
Source DB: PubMed Journal: Gene ISSN: 0378-1119 Impact factor: 3.688