Related Experiment Video
Updated: Nov 13, 2025

A Sensitive Visual Method for the Detection of Hydrogen Sulfide Producing Bacteria
Published on: June 27, 2022
Identification of Listeria monocytogenes Contamination in a Ready-to-Eat Meat Processing Plant in China
Hongzhi Zhang1, Fengxia Que2, Biyao Xu1
1Shanghai Municipal Center for Disease Control and Prevention, Shanghai, China.
Abstract:
Listeria monocytogenes is the etiologic agent of listeriosis, which remains a significant public health concern in many countries due to its high case-fatality rate. The constant risk of L. monocytogenes transmission to consumers remains a central challenge in the food production industry. At present, there is very little known about L. monocytogenes contamination in ready-to-eat (RTE) processing plants in China. In this study, L. monocytogenes in an RTE meat processing plant in Shanghai municipality was characterized using pulsed-field gel electrophoresis (PFGE) and whole genome sequencing (WGS). Furthermore, the biofilm formation ability of the pathogen was also tested. Results revealed that L. monocytogenes isolates were present in 12 samples out of the 48 samples investigated. Most of them (66.7%, 8/12) were identified from the processing facilities irrespective of observed hygiene levels of aerobic plate count (APC) and coliforms. Coliforms were present in only one processing area. ST5 (1/2b) isolates were predominant (83.3%, 10/12) and were identified in two dominant pulsotypes (PTs) (three in PT3 and seven in PT4, respectively). Results of the core-genome multi-locus sequence typing (cgMLST) showed that ST5 in three PTs (PT1, PT3, and PT4) had 0-8 alleles, which confirmed that clonal transmission occurred in the RTE meat processing facilities. In addition, the biofilm formation test confirmed that the isolates from the processing facilities could form biofilms, which helped them colonize and facilitate persistence in the environment. These results indicated that common sanitation procedures regularly applied in the processing environment were efficient but not sufficient to remove L. monocytogenes isolates, especially biofilm of L. monocytogenes. Furthermore, the ST5 isolates in this study exhibited 12 alleles with one ST5 clinical isolate, which contributes to the understanding of the potential pathogenic risk that L. monocytogenes in RTE meat processing equipment posed to consumers. Therefore, strong hygienic measures, especially sanitation procedures for biofilms eradication, should be implemented to ensure the safety of raw materials. Meanwhile, continuous surveillance might be vital for the prevention and control of listeriosis caused by L. monocytogenes.
Insights
Listeria monocytogenes contamination was found in a Chinese ready-to-eat meat plant, with isolates forming biofilms and showing clonal transmission. Enhanced sanitation is crucial to prevent listeriosis outbreaks.
Area of Science:
- Food Safety and Microbiology
- Genomic Epidemiology
- Public Health
Background:
- Listeria monocytogenes causes listeriosis, a severe foodborne illness with high mortality.
- Contamination of ready-to-eat (RTE) foods poses a significant risk to consumers.
- Limited data exists on L. monocytogenes contamination in Chinese RTE meat processing plants.
Purpose of the Study:
- To characterize L. monocytogenes contamination in a Shanghai RTE meat processing plant.
- To investigate the genotypic profiles and biofilm formation of L. monocytogenes isolates.
- To assess the effectiveness of current hygiene practices and inform control strategies.
Main Methods:
- Pulsed-field gel electrophoresis (PFGE) and whole genome sequencing (WGS) for genotyping.
- Core-genome multi-locus sequence typing (cgMLST) for clonal transmission analysis.
- Biofilm formation assays to evaluate environmental persistence potential.
Main Results:
- L. monocytogenes was detected in 12 out of 48 samples, predominantly from processing facilities.
- Sequence Type 5 (ST5) isolates (1/2b) were dominant, showing clonal transmission via PFGE and cgMLST.
- Isolates demonstrated biofilm formation capabilities, indicating environmental colonization and persistence.
Conclusions:
- Standard sanitation is insufficient to eliminate L. monocytogenes, particularly biofilms, in RTE meat plants.
- Clonal transmission of ST5 L. monocytogenes highlights the need for targeted control measures.
- Strengthening hygienic practices, focusing on biofilm eradication and continuous surveillance, is essential for food safety.

