Genomic analysis of high copy-number sequences for the targeted detection of Listeria species using a flow-through surveillance system

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Abstract

The bacterial foodborne pathogen Listeria monocytogenes has been implicated in fresh produce outbreaks with a significant economic impact. Given that L. monocytogenes is widespread in the environment, food production facilities constantly monitor for the presence of Listeria species. To develop a surveillance platform for food processing facilities, this study conducted a comparative genomic analysis for the identification of conserved high copy sequences in the ribosomal RNA of Listeria species. Simulated folding was performed to assess RNA accessibility in the identified genomic regions targeted for detection, and the developed singleplex assay accurately detected cell amounts lower than 5 cells, while no signals were detected for non-targeted bacteria. The singleplex assay was subsequently tested with a flow-through system, consisting of a DNA aptamer-capture step, followed by sample concentration and mechanical lysis for the detection of Listeria species. Validation experiments indicated the continuous flow-through system accurately detected Listeria species at low cell concentrations.

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Quiñones, B., Yambao, J. C., De Guzman, V. S., Lee, B. G., & Medin, D. L. (2021). Genomic analysis of high copy-number sequences for the targeted detection of Listeria species using a flow-through surveillance system. Archives of Microbiology, 203(6), 3667–3682. https://doi.org/10.1007/s00203-021-02388-2

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