Federal Institute for Risk Assessment, Department of Biological Safety, Diedersdorfer Weg 1, Berlin, Germany.
Int J Med Microbiol. 2013 Dec;303(8):410-21. doi: 10.1016/j.ijmm.2013.05.006. Epub 2013 May 28.
Sixty-two Escherichia coli strains carrying the wzxO104-gene from different sources, origins and time periods were analyzed for their serotypes, virulence genes and compared for genomic similarity by pulsed-field gel-electrophoresis (PFGE). The O104 antigen was present in 55 strains and the structurally and genetically related capsular antigen K9 in five strains. The presence of 49 genes associated with enteropathogenic E. coli (EPEC), enteroaggregative E. coli (EAEC) and enterohemorrhagic E. coli (EHEC) was investigated. Fifty-four strains of serotypes O104:H2 (n=1), O104:H4 (n=37), O104:H7 (n=5) and O104:H21 (n=11) produced Shiga-toxins (Stx). Among STEC O104, a close association between serotype, virulence gene profile and genomic similarity was found. EAEC virulence genes were only present in STEC O104:H4 strains. EHEC-O157 plasmid-encoded genes were only found in STEC O104:H2, O104:H7 and O104:H21 strains. None of the 62 O104 or K9 strains carried an eae-gene involved in the attaching and effacing phenotype. The 38 O104:H4 strains formed a single PFGE-cluster (>83.7% similarity). Thirty-one of these strains were from the European O104:H4 outbreak in 2011. The outbreak strains and older O104:H4 strains from Germany (2001), Georgia and France (2009) clustered together at>86.2% similarity. O104:H4 strains isolated between 2001 and 2009 differed for some plasmid-encoded virulence genes compared to the outbreak strains from 2011. STEC O104:H21 and STEC O104:H7 strains isolated in the U.S. and in Europe showed characteristic differences in their Stx-types, virulence gene and PFGE profiles indicating that these have evolved separately. E. coli K9 strains were not associated with virulence and were heterogeneous for their serotypes and PFGE profiles.
对来自不同来源、起源和时间段的 62 株携带 wzxO104 基因的大肠杆菌菌株进行了血清型、毒力基因分析,并通过脉冲场凝胶电泳(PFGE)比较了基因组相似性。在 55 株菌中存在 O104 抗原,在 5 株菌中存在结构和遗传上相关的荚膜抗原 K9。研究了与肠致病性大肠杆菌(EPEC)、肠聚集性大肠杆菌(EAEC)和肠出血性大肠杆菌(EHEC)相关的 49 个基因的存在情况。54 株血清型为 O104:H2(n=1)、O104:H4(n=37)、O104:H7(n=5)和 O104:H21(n=11)的菌株产生志贺毒素(Stx)。在 STEC O104 中,血清型、毒力基因谱和基因组相似性之间存在密切关联。仅在 STEC O104:H4 菌株中发现 EAEC 毒力基因。EHEC-O157 质粒编码基因仅存在于 STEC O104:H2、O104:H7 和 O104:H21 菌株中。在 62 株 O104 或 K9 菌株中均未发现参与附着和侵蚀表型的 eae 基因。38 株 O104:H4 株形成一个单独的 PFGE 簇(>83.7%相似性)。其中 31 株来自 2011 年欧洲 O104:H4 暴发。暴发菌株和来自德国(2001 年)、格鲁吉亚和法国(2009 年)的较老的 O104:H4 菌株聚集在一起,相似度>86.2%。与 2011 年暴发菌株相比,2001 年至 2009 年分离的 O104:H4 菌株在一些质粒编码的毒力基因上存在差异。在美国和欧洲分离的 STEC O104:H21 和 STEC O104:H7 菌株在 Stx 型、毒力基因和 PFGE 图谱上表现出特征性差异,表明它们是单独进化的。大肠杆菌 K9 菌株与毒力无关,其血清型和 PFGE 图谱存在异质性。