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Whole genome sequencing based typing and characterisation of Shiga-toxin producing Escherichia coli strains belonging to O157 and O26 serotypes and isolated in dairy farms

机译:基于全基因组测序的产自志贺菌的O157和O26血清型大肠杆菌菌株的分型和表征并在奶牛场中分离

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摘要

In the present study, the genetic relationships as well as the virulome and resistome of newly sequenced O26 and O157 Shiga-toxin producing E. coli (STEC) isolates, collected from dairy farms in Italy, were investigated in comparison to publicly available genomes collected worldwide. The whole genome of Italian isolates was sequenced on Illumina MiSeq Platform. Reads quality control, de novo draft genome assembly, species confirmation and the 7- loci Multi-Locus Sequence Type assignment were performed using INNUca pipeline. Reference-based SNPs calling was performed on O157 and O26 genomes, separately, mapping contigs to high-quality finished genomes. Virulence and antimicrobial resistance determinants were detected in silico using the tool ABRicate. Phylogenetic reconstructions revealed that genomes clustered mainly based on their 7-loci MLST type. The virulome of tested genomes included 190 determinants. O157 genomes carried chu genes associated to heme mediated iron uptake, whereas O26 genomes harboured genes ybt associated to siderophore mediated iron uptake. Resistome analysis showed the presence of tet(34) on all but one O157 genomes and on only one O26 genomes. Only 4 genomes carried genes associated to multiresistance. In the present study, the genes chu and ybt were identified as potential biomarker for the differentiation of O157 and O26 serotypes.
机译:在本研究中,调查了从意大利奶牛场收集的新测序的O26和O157志贺毒素生产大肠杆菌(STEC)分离株的遗传关系以及病毒组和抵抗组,并将其与全球范围内公开收集的基因组进行了比较。在Illumina MiSeq平台上对意大利分离株的整个基因组进行了测序。使用INNUca流水线执行质量控制读取,基因组草图重新编制,物种确认和7位多位点序列类型分配。基于参考的SNP调用分别在O157和O26基因组上进行,将重叠群映射到高质量的最终基因组。使用工具ABRicate在计算机上检测了毒力和抗菌素耐药性决定因素。系统发育重建表明,基因组主要基于它们的7位MLST类型聚类。测试的基因组的病毒组包括190个决定簇。 O157基因组携带与血红素介导的铁摄取相关的chu基因,而O26基因组则包含与铁载体介导的铁摄取相关的ybt基因。电阻组分析显示,除一个O157基因组外,仅一个O26基因组上都存在tet(34)。只有4个基因组携带与多抗性相关的基因。在本研究中,基因chu和ybt被鉴定为O157和O26血清型分化的潜在生物标记。

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