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A genome-wide association study identifies a horizontally transferred bacterial surface adhesin gene associated with antimicrobial resistant strains

机译:基因组 - 宽的关联研究识别与抗微生物抗性菌株相关的水平转移的细菌表面粘附基因

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Carbapenems are a class of last-resort antibiotics; thus, the increase in bacterial carbapenem-resistance is a serious public health threat. Acinetobacter baumannii is one of the microorganisms that can acquire carbapenem-resistance; it causes severe nosocomial infection, and is notoriously difficult to control in hospitals. Recently, a machine-learning approach was first used to analyze the genome sequences of hundreds of susceptible and resistant A. baumannii strains, including those carrying commonly acquired resistant mechanisms, to build a classifier that can predict strain resistance. A complementary approach is to explore novel genetic elements that could be associated with the antimicrobial resistance of strains, independent of known mechanisms. Therefore, we carefully selected A. baumannii strains, spanning various genotypes, from public genome databases, and conducted the first genome-wide association study (GWAS) of carbapenem resistance. We employed a recently developed method, capable of identifying any kind of genetic variation and accounting for bacterial population structure, and evaluated its effectiveness. Our study identified a surface adhesin gene that had been horizontally transferred to an ancestral branch of A. baumannii, as well as a specific region of that gene that appeared to accumulate multiple individual variations across the different branches of carbapenem-resistant A. baumannii strains.
机译:Carbapenems是一类最后的度假抗生素;因此,细菌碳抗性的增加是严重的公共卫生威胁。 AcineTobacter Baumannii是可以获得Carbapenem抵抗的微生物之一;它会导致严重的医院感染,并且在医院中难以控制。最近,首先使用一种机器学习方法来分析数百种易感和抗性A. Baumannii菌株的基因组序列,包括承载常见的抗性机制的那些,以构建可以预测应变电阻的分类器。一种互补方法是探索与菌株的抗微生物抗性相关的新型遗传元素,与已知机制无关。因此,我们仔细选择了A.Baumannii菌株,跨越各种基因型,来自公共基因组数据库,并进行了第一个基因组抗性的基因组关联研究(Gwas)。我们雇用了最近开发的方法,能够识别任何类型的遗传变异和对细菌种群结构的核算,并评估其有效性。我们的研究确定了一种表面粘合剂基因,其被水平转移到A.Baumannii的祖先分支,以及该基因的特定区域似乎积累了抵抗碳癌抗A. Baumannii菌株的不同分支的多种单独变化。

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