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The complete genome sequence of Mycobacterium avium subspecies paratuberculosis

机译:鸟分枝杆菌副结核亚种的完整基因组序列

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We describe here the complete genome sequence of a common clone of Mycobacterium avium subspecies paratuberculosis (Map) strain K-10, the causative agent of Johne's disease in cattle and other ruminants. The K-10 genome is a single circular chromosome of 4,829,781 base pairs and encodes 4,350 predicted ORFs, 45 tRNAs, and one rRNA operon. In silico analysis identified > 3,000 genes with homologs to the human pathogen, M. tuberculosis (Mtb), and 161 unique genomic regions that encode 39 previously unknown Map genes. Analysis of nucleoticle substitution rates with Mtb homologs suggest overall strong selection for a vast majority of these shared mycobacterial genes, with only 68 ORFs with a synonymous to nonsynonymous substitution ratio of > 2. Comparative sequence analysis reveals several noteworthy features of the K-10 genome including: a relative paucity of the PE/PPE family of sequences that are implicated as virulence factors and known to be immunostimulatory during Mtb infection; truncation in the EntE domain of a salicyl-AMP ligase (MbtA), the first gene in the mycobactin biosynthesis gene cluster, providing a possible explanation for mycobactin dependence of Map; and Map-specific sequences that are likely to serve as potential targets for sensitive and specific molecular and immunologic diagnostic tests. Taken together, the availability of the complete genome sequence offers a foundation for the study of the genetic basis for virulence and physiology in Map and enables the development of new generations of diagnostic tests for bovine Johne's disease.
机译:我们在这里描述了牛分枝杆菌副结核分枝杆菌(Map)菌株K-10(牛和其他反刍动物中约翰耳氏病的病原体)的常见克隆的完整基因组序列。 K-10基因组是一个具有4,829,781个碱基对的单个环状染色体,编码4,350个预测的ORF,45个tRNA和一个rRNA操纵子。在计算机分析中鉴定出> 3,000个与人类病原体,结核分枝杆菌(Mtb)具有同源性的基因,以及161个独特的基因组区域,它们编码39个以前未知的Map基因。用Mtb同源物分析核苷酸替代率表明,对于这些共有的分枝杆菌基因中的绝大多数,总体上有很强的选择力,只有68个ORF的同义与非同义替代比>2。比较序列分析揭示了K-10基因组的几个值得注意的特征包括:PE / PPE家族相对较少,这些家族涉及毒力因子,已知在Mtb感染期间具有免疫刺激性;水杨基AMP连接酶(MbtA)的EntE结构域中的截短,该基因是分枝杆菌素生物合成基因簇中的第一个基因,为分枝杆菌对Map的依赖性提供了可能的解释;和Map特异序列,有可能用作敏感和特异分子和免疫学诊断测试的潜在靶标。综上所述,完整的基因组序列的可用性为在Map中研究毒力和生理学的遗传基础奠定了基础,并使新一代牛Johne病诊断测试的开发成为可能。

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