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Identification of Escherichia coli O157 by Using a Novel Colorimetric Detection Method with DNA Microarrays

机译:新型DNA比色法检测大肠埃希氏菌O157的鉴定

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摘要

Shiga toxin–producing Escherichia coli O157 is a leading cause of foodborne illness worldwide. To evaluate better methods to rapidly detect and genotype E. coli O157 strains, the present study evaluated the use of ampliPHOX, a novel colorimetric detection method based on photopolymerization, for pathogen identification with DNA microarrays. A low-density DNA oligonucleotide microarray was designed to target stx1 and stx2 genes encoding Shiga toxin production, the eae gene coding for adherence membrane protein, and the per gene encoding the O157-antigen perosamine synthetase. Results from the validation experiments demonstrated that the use of ampliPHOX allowed the accurate genotyping of the tested E. coli strains, and positive hybridization signals were observed for only probes targeting virulence genes present in the reference strains. Quantification showed that the average signal-to-noise ratio values ranged from 47.73 ± 7.12 to 76.71 ± 8.33, whereas average signal-to-noise ratio values below 2.5 were determined for probes where no polymer was formed due to lack of specific hybridization. Sensitivity tests demonstrated that the sensitivity threshold for E. coli O157 detection was 100–1000 CFU/mL. Thus, the use of DNA microarrays in combination with photopolymerization allowed the rapid and accurate genotyping of E. coli O157 strains.
机译:产生志贺毒素的大肠杆菌O157是全球食源性疾病的主要原因。为了评估更好的方法来快速检测大肠杆菌O157菌株并对其进行基因分型,本研究评估了ampliPHOX(一种基于光聚合的新型比色检测方法)用于通过DNA微阵列鉴定病原体的用途。一种低密度DNA寡核苷酸微阵列被设计为靶向编码志贺毒素生产的stx1和stx2基因,编码粘附膜蛋白的eae基因以及编码O157-抗原过氧化氢胺合成酶的per基因。验证实验的结果表明,使用ampliPHOX可以对测试的大肠杆菌菌株进行准确的基因分型,并且仅针对靶向参考菌株中存在的毒力基因的探针观察到阳性杂交信号。定量显示平均信噪比值在47.73±7.12至76.71±8.33之间,而对于由于缺乏特异性杂交而没有形成聚合物的探针,其平均信噪比值低于2.5。敏感性测试表明,大肠杆菌O157检测的敏感性阈值为100–1000 CFU / mL。因此,将DNA微阵列与光聚合反应结合使用可以对大肠杆菌O157菌株进行快速而准确的基因分型。

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