首页> 外文会议>Bioinformatics and Biomedicine, 2009. BIBM '09 >Determination of Major Lineages of Mycobacterium tuberculosis Complex Using Mycobacterial Interspersed Repetitive Units
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Determination of Major Lineages of Mycobacterium tuberculosis Complex Using Mycobacterial Interspersed Repetitive Units

机译:使用分枝杆菌散布的重复单元确定结核分枝杆菌复合体的主要谱系

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Abstractȁ4;We present a novel Bayesian network (BN) to classify strains of Mycobacterium tuberculosis Complex (MTBC) into six major genetic lineages using mycobacterial interspersed repetitive units (MIRUs), a high-throughput biomarker. MTBC is the causative agent of tuberculosis (TB), which remains one of the leading causes of disease and morbidity world-wide. DNA fingerprinting methods such as MIRU are key components of modern TB control and tracking. The BN achieves high accuracy on four large MTBC genotype collections consisting of over 4700 distinct 12-loci MIRU genotypes. The BN captures distinct MIRU signatures associated with each lineage, explaining the excellent performance of the BN. The errors in the BN support the need for additional biomarkers such as the expanded 24-loci MIRU used in CDC genotyping labs since May 2009. The conditional independence assumption of each locus given the lineage makes the BN easily extensible to additional MIRU loci and other biomarkers.
机译:摘要ȁ4;我们提出了一种新颖的贝叶斯网络(BN),它利用高通量生物标记分枝杆菌散布的重复单元(MIRUs)将结核分枝杆菌复合体(MTBC)的菌株分为六个主要的遗传谱系。 MTBC是结核病(TB)的病原体,它仍然是全球疾病和发病率的主要原因。 DNA指纹识别方法(例如MIRU)是现代结核病控制和追踪的关键组成部分。 BN在四个大型MTBC基因型集合上实现了高精度,该集合由4700多种不同的12位MIRU基因型组成。 BN捕获与每个谱系相关的不同MIRU签名,从而说明了BN的出色性能。 BN中的错误支持对其他生物标记物的需求,例如自2009年5月以来在CDC基因分型实验室中使用的扩展的24位MIRU。假定每个谱系的条件独立性假设,使得BN易于扩展至其他MIRU基因座和其他生物标记物。

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