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一种快速检测和分离即食蔬菜中肠出血性大肠杆菌(EHEC)血清群 O26、O103、O111、O118、O121、O145 和 O157 菌株以及聚集性 EHEC O104:H4 菌株的快速程序。

A rapid procedure for the detection and isolation of enterohaemorrhagic Escherichia coli (EHEC) serogroup O26, O103, O111, O118, O121, O145 and O157 strains and the aggregative EHEC O104:H4 strain from ready-to-eat vegetables.

机构信息

National Reference Laboratory for Escherichia coli, Unit 41: Microbial Toxins, Germany.

出版信息

Int J Food Microbiol. 2012 Jan 3;152(1-2):19-30. doi: 10.1016/j.ijfoodmicro.2011.10.009. Epub 2011 Oct 21.

Abstract

Human infections with Enterohaemorrhagic Escherichia coli strains (EHEC) as agents of Haemorrhagic Colitis (HC) and Haemolytic Uraemic Syndrome (HUS) are frequently associated with the consumption of EHEC contaminated foodstuffs of different origins. EHEC O26, O103, O111, O118, O121, O145 and O157 strains are responsible for the majority of HC and HUS cases worldwide. In May 2011, the emerging aggregative EHEC O104:H4 strain caused a large outbreak with high HUS incidence in northern Germany. Contaminated sprouted seeds were suspected to be the vehicles of transmission. The examination of vegetables retailed for raw consumption revealed low numbers of E. coli (<100 cfu/g) together with high titres of Enterobacteriaceae and Pseudomonas (approx. 5.6 × 10⁷ cfu/g). Specific methods of EHEC detection adapted to vegetables are not yet published. Therefore, we have developed a rapid and sensitive method for detecting low EHEC contamination in vegetables (1-10 cfu/25 g) with artificially EHEC contaminated ready-to-eat salads. A 6-hour enrichment period in BRILA-broth was sufficient to detect 1-10 EHEC from spiked samples after plating 0.1 ml portions of enrichment culture on selective TBX-agar and CHROMagar STEC plates that were incubated at 44 °C overnight. Unlike EHEC strains, the growth of bacteria of the plant flora was substantially inhibited at 44 °C. DNA for real-time PCR detection of EHEC characteristic genes (stx(1), stx(2), eae, ehxA, and O-antigen associated) was prepared with bacteria grown on TBX-agar plates. The storage of EHEC inoculated salad samples for 72 h at 6 °C resulted in a significant reduction (mean value 14.6%) of detectable EHEC, suggesting interference of EHEC with the resident plant microflora. CHROMagar STEC was evaluated as a selective medium for the detection of EHEC strains. Growth on CHROMagar STEC was closely associated with EHEC O26:[H11], O111:[H8], O118:H16, O121:[H19], O145:[H28], O157:[H7] and aggregative EHEC O104:H4 strains and with the presence of the terB gene (tellurite resistance). TerB sequences were found in 87.2% of 235 EHEC but only in only 12.5% of 567 non-EHEC strains. EHEC strains which did not grow on CHROMagar STEC were negative for terB as frequently observed with EHEC O103:H2 (52.9%) and sorbitol-fermenting O157:NM strains (100%). The enrichment and detection method was applied in the examination of sprouted seeds incriminated as vehicles in the EHEC O104:H4 outbreak in Germany. Aggregative EHEC O104:H4 could be detected and isolated from a sample of sprouted seeds which was suspected as vector of transmission of EHEC O104 to humans.

摘要

人类感染肠出血性大肠杆菌(EHEC)菌株(EHEC)作为出血性结肠炎(HC)和溶血性尿毒综合征(HUS)的病原体,通常与食用不同来源的 EHEC 污染的食物有关。EHEC O26、O103、O111、O118、O121、O145 和 O157 菌株是导致全球大多数 HC 和 HUS 病例的原因。2011 年 5 月,新兴的聚集性 EHEC O104:H4 菌株在德国北部引发了一起大规模暴发,HUS 发病率很高。受污染的发芽种子被怀疑是传播的媒介。对零售用于生食的蔬菜进行检查,发现大肠杆菌数量很少(<100 cfu/g),同时肠杆菌科和假单胞菌数量很高(约 5.6×10⁷ cfu/g)。适应蔬菜的特定 EHEC 检测方法尚未公布。因此,我们开发了一种快速灵敏的方法,用于检测人工污染的即食沙拉中低水平的 EHEC 污染(1-10 cfu/25 g)。在 BRILA 肉汤中进行 6 小时的富集期,然后在选择性 TBX-琼脂和 CHROMagar STEC 平板上接种 0.1 ml 部分富集培养物,在 44°C 过夜孵育后,即可从添加的样品中检测到 1-10 个 EHEC。与 EHEC 菌株不同,植物菌群的细菌在 44°C 时的生长受到显著抑制。用在 TBX-琼脂平板上生长的细菌制备用于实时 PCR 检测 EHEC 特征基因(stx(1)、stx(2)、eae、ehxA 和 O 抗原相关)的 DNA。将接种的 EHEC 沙拉样品在 6°C 下储存 72 小时,导致可检测的 EHEC 数量显著减少(平均值 14.6%),这表明 EHEC 与定植植物微生物区系相互干扰。CHROMagar STEC 被评估为用于检测 EHEC 菌株的选择性培养基。在 CHROMagar STEC 上的生长与 EHEC O26:[H11]、O111:[H8]、O118:H16、O121:[H19]、O145:[H28]、O157:[H7]和聚集性 EHEC O104:H4 菌株以及 terB 基因(碲酸盐抗性)密切相关。在 235 株 EHEC 中有 87.2%存在 TerB 序列,而在 567 株非 EHEC 中有 12.5%存在 TerB 序列。如 EHEC O103:H2(52.9%)和耐山梨醇的 O157:NM 菌株(100%)中经常观察到的那样,不在 CHROMagar STEC 上生长的 EHEC 菌株通常为 terB 阴性。富集和检测方法应用于德国 EHEC O104:H4 暴发中受污染的发芽种子的检查。从受污染的发芽种子中可检测和分离出疑似 EHEC O104 传播给人类的传播媒介的聚集性 EHEC O104:H4。

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