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Multiplex polymerase chain reaction for identification of Escherichia coli Escherichia albertii and Escherichia fergusonii

机译:多重聚合酶链反应用于鉴定大肠埃希氏菌艾氏大肠埃希氏菌和弗氏埃希氏菌

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摘要

Escherichia coli, Escherichia albertii, and Escherichia fergusonii are closely related bacteria that can cause illness in humans, such as bacteremia, urinary tract infections and diarrhea. Current identification strategies for these three species vary in complexity and typically rely on the use of multiple phenotypic and genetic tests. To facilitate their rapid identification, we developed a multiplex PCR assay targeting conserved, species-specific genes. We used the Daydreamer™ (Pattern Genomics, USA) software platform to concurrently analyze whole genome sequence assemblies (WGS) from 150 Enterobacteriaceae genomes (107 E. coli, 5 Shigella spp., 21 E. albertii, 12 E. fergusonii and 5 other species) and design primers for the following species-specific regions: a 212 bp region of the cyclic di-GMP regulator gene (cdgR, AW869_22935 from genome K-12 MG1655, ) for E. coli/Shigella; a 393 bp region of the DNA-binding transcriptional activator of cysteine biosynthesis gene (EAKF1_ch4033 from genome KF1, ) for E. albertii; and a 575 bp region of the palmitoleoyl-acyl carrier protein (ACP)-dependent acyltransferase (EFER_0790 from genome ATCC 35469, ) for E. fergusonii. We incorporated the species-specific primers into a conventional multiplex PCR assay and assessed its performance with a collection of 97 Enterobacteriaceae strains. The assay was 100% sensitive and specific for detecting the expected species and offers a quick and accurate strategy for identifying E. coli, E. albertii, and E. fergusonii in either a single reaction or by in silico PCR with sequence assemblies.
机译:大肠埃希氏菌,阿尔伯埃希氏菌和弗格森埃希氏菌是密切相关的细菌,它们可能导致人类疾病,例如菌血症,尿路感染和腹泻。当前对这三个物种的鉴定策略在复杂性上有所不同,并且通常依赖于使用多种表型和遗传测试。为了促进它们的快速鉴定,我们开发了针对保守的物种特异性基因的多重PCR分析法。我们使用Daydreamer™(美国模式基因组学)软件平台同时分析了150个肠杆菌科基因组(107个大肠杆菌,5个志贺氏菌,阿尔伯特氏菌21个,弗格森氏菌12个和其他5个)的全基因组序列组装(WGS)。物种和以下物种特异性区域的设计引物:大肠杆菌/志贺氏菌的环状双GMP调节基因(cdgR,来自基因组K-12 MG1655的AW869_22935)的212 bp区域;半胱氨酸生物合成基因(来自基因组KF1的EAKF1_ch4033)的DNA结合转录激活因子的393 bp区域;和棕榈糖油酰基-酰基载体蛋白(ACP)依赖性酰基转移酶(来自基因组ATCC 35469的EFER_0790)的575 bp区域。我们将物种特异性引物整合到常规的多重PCR分析中,并通过收集97种肠杆菌科菌株评估其性能。该测定法具有100%的灵敏性,并且对检测预期物种具有特异性,并提供了一种快速准确的策略,可在单个反应中或通过计算机PCR与序列装配识别大肠杆菌,艾伯特氏大肠杆菌和弗格森氏大肠杆菌。

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