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Phylogeny and phenotypes of clinical and environmental Shiga toxin-producing Escherichia coli O174

机译:临床和环境产生志贺毒素的大肠杆菌O174的系统发育和表型

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摘要

Shiga toxin (Stx)-producing Escherichia coli (STEC) of serogroup O174 are human pathogenic intimin gene (eae)-negative STEC. To facilitate diagnosis and subtyping, we genotypically and phenotypically characterized 25 STEC O174 isolates from humans with different clinical outcomes and from animals and the environment. fliC genotyping resulted in four different genotypes (fliC_(H2): n = 5; fliC_(H8): n = 8; fliC_(H21): n = 11; fliC_(H46): n = 1). Twenty-three strains were motile expressing the corresponding H antigen; two nonmotile isolates possessed fliC_(H8). The stx genotypes and non-stx virulence loci, including toxins, serine-proteases and adhesins correlated well with serotypes but showed no differences with respect to the isolates’ origins. Multilocus sequence typing identified seven sequence types that correlated with serotypes. Core gene typing further specified the four serotypes, including a previously unknown O174:H46 combination, and revealed distant relationships of the different serotypes within serogroup O174 and in relation to other haemolytic uremic syndrome (HUS)-associated STEC. Only serotype O174:H21 was associated with HUS. Differences in virulence factors and in the adherence capacity of STEC O174 corroborated this separation into four distinct groups. Our study provides a basis for O174 subtyping, unravels considerable genotypic and phenotypic heterogeneity and sheds light to potential environmental and animal reservoirs.
机译:O174血清群的产志贺毒素(Stx)的大肠杆菌(STEC)是人类致病性内膜素基因(eae)阴性的STEC。为了促进诊断和亚型分析,我们对25种STEC O174分离株进行了基因型和表型鉴定,这些分离株来自具有不同临床结果的人类以及动物和环境。 fliC基因分型导致四种不同的基因型(fliC_(H2):n = 5; fliC_(H8):n = 8; fliC_(H21):n = 11; fliC_(H46):n = 1)。 23个菌株能表达相应的H抗原。两个非运动型分离株拥有fliC_(H8)。 stx基因型和非stx毒力基因座(包括毒素,丝氨酸蛋白酶和粘附素)与血清型具有很好的相关性,但在分离株的起源方面没有差异。多基因座序列分型鉴定出了与血清型相关的七种序列类型。核心基因分型进一步指定了四种血清型,包括以前未知的O174:H46组合,并揭示了O174血清型内不同血清型的远距离关系以及与其他溶血性尿毒症综合征(HUS)相关的STEC的关系。只有O174:H21血清型与HUS相关。 STEC O174的毒力因子和粘附能力方面的差异证实了将这种分离分为四个不同的组。我们的研究为O174的亚型化提供了基础,揭示了大量的基因型和表型异质性,并为潜在的环境和动物库提供了启示。

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