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Analysis of whole genome sequencing for the Escherichia coli O157:H7 typing phages

机译:大肠杆菌O157:H7型噬菌体的全基因组测序分析

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摘要

Background:\udShiga toxin producing Escherichia coli O157 can cause severe bloody diarrhea and haemolytic uraemic syndrome. Phage typing of E. coli O157 facilitates public health surveillance and outbreak investigations, certain phage types are more likely to occupy specific niches and are associated with specific age groups and disease severity. The aim of this study was to analyse the genome sequences of 16 (fourteen T4 and two T7) E. coli O157 typing phages and to determine the genes responsible for the subtle differences in phage type profiles.\ud\udResults:\udThe typing phages were sequenced using paired-end Illumina sequencing at The Genome Analysis Centre and the Animal Health and Veterinary Laboratories Agency and bioinformatics programs including Velvet, Brig and Easyfig were used to analyse them. A two-way Euclidian cluster analysis highlighted the associations between groups of phage types and typing phages. The analysis showed that the T7 typing phages (9 and 10) differed by only three genes and that the T4 typing phages formed three distinct groups of similar genomic sequences: Group 1 (1, 8, 11, 12 and 15, 16), Group 2 (3, 6, 7 and 13) and Group 3 (2, 4, 5 and 14). The E. coli O157 phage typing scheme exhibited a significantly modular network linked to the genetic similarity of each group showing that these groups are specialised to infect a subset of phage types.\ud\udConclusion:\udSequencing the typing phage has enabled us to identify the variable genes within each group and to determine how this corresponds to changes in phage type.
机译:背景:产产志贺毒素的大肠杆菌O157可引起严重的血性腹泻和溶血性尿毒症。大肠杆菌O157的噬菌体分型有助于公共卫生监测和疾病暴发调查,某些噬菌体类型更可能占据特定的生态位,并与特定的年龄组和疾病严重性相关。这项研究的目的是分析16个(14个T4和2个T7)大肠杆菌O157型噬菌体的基因组序列,并确定造成噬菌体类型概况细微差异的基因。\ ud \ ud结果:\ ud在基因组分析中心和动物健康与兽医实验室局使用配对末端Illumina测序技术进行了测序,并使用包括Velvet,Brig和Easyfig在内的生物信息学程序对其进行了分析。双向欧几里德聚类分析突出了噬菌体类型组与分型噬菌体之间的关联。分析表明,T7型噬菌体(9和10)仅相差三个基因,而T4型噬菌体形成了三个相似基因组序列的不同组:组1(1、8、11、12和15、16),组2(3、6、7和13)和第3组(2、4、5和14)。大肠杆菌O157噬菌体分型方案展示了一个与每个组的遗传相似性相关的显着模块化网络,表明这些组专门感染了一部分噬菌体类型。\ ud \ ud结论:\ ud对噬菌体进行分型排序使我们能够识别确定各组中的可变基因,并确定其与噬菌体类型变化的对应关系。

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