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Real-Time PCR Assay To Differentiate Listeriolysin S-Positive and -Negative Strains of Listeria monocytogenes

机译:实时荧光定量PCR检测李斯特菌单核细胞增生李斯特氏菌S阳性和阴性菌株

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Due to the severity of the food-borne infection listeriosis, strict legislation governs the detectable and permissible limits at which Listeria monocytogenes is permitted in foods. These requirements, coupled with the ubiquitous nature of L. monocytogenes strains and the potential for epidemic outbreaks, mean that the pathogen can devastate affected sectors of the food industry. Although almost all L. monocytogenes strains have the potential to cause listeriosis, those implicated in the vast majority of epidemics belong to a subset of strains belonging to evolutionary lineage I. It has been established that a significant proportion of these strains, including those implicated in the majority of outbreaks, produce an additional hemolysin, designated listeriolysin S (LLS), which may be responsible for the enhanced virulence of these strains. In order to ultimately establish this definitively, it is important to first be able to rapidly discriminate between LLS-positive and -negative strains. Here, after essential genes within the LLS-encoding cluster, Listeria pathogenicity island 3, were identified by deletion mutagenesis, a real-time PCR assay which targets one such gene, llsX , was developed as a means of identifying LLS-positive L. monocytogenes . The specificity of the assay was validated against a panel of 40 L. monocytogenes strains (20 of which were LLS positive) and 25 strains representative of other Listeria species. Furthermore, 1 CFU of an LLS-positive strain per 25 g/ml of spiked foods was detected in less than 30 h when the assay was coupled with culture enrichment. The detection limit of this assay was 10 genome equivalents.
机译:由于食源性李斯特菌病的严重性,严格的法律规定了食品中允许单核细胞增生李斯特菌的可检测和允许极限。这些要求,加上单核细胞增生李斯特菌菌株的普遍性以及流行病爆发的可能性,意味着病原体可以破坏食品工业的受影响部门。尽管几乎所有的单核细胞增生李斯特氏菌菌株都可能引起李斯特菌病,但与绝大多数流行病有关的那些菌株属于属于进化谱系I的菌株的子集。已经确定的是,这些菌株中有很大一部分,包括与之相关的菌株。在大多数爆发中,会产生另外的溶血素,称为李斯特菌溶血素S(LLS),这可能是这些菌株毒力增强的原因。为了最终明确地确定这一点,重要的是首先能够快速区分LLS阳性菌株和阴性菌株。在这里,通过缺失诱变鉴定出在LLS编码簇中的必需基因李斯特菌致病岛3之后,开发了针对一个这样的基因llsX的实时PCR检测方法,以鉴定LLS阳性的单核细胞增生李斯特氏菌。 。针对一组40个单核细胞增生李斯特菌菌株(其中20个为LLS阳性)和25个代表其他李斯特菌属的菌株验证了该测定的特异性。此外,当该分析与培养物富集相结合时,在不到30小时的时间内,每25克/毫升加标食品中检测到1 CFU的LLS阳性菌株。该测定的检测极限是10个基因组当量。

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