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  4. High Prevalence of Virulence-Associated Genes and Length Polymorphism in actA and inlB Genes Identified in Listeria monocytogenes Isolates from Meat Products and Meat-Processing Environments in Poland
 
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High Prevalence of Virulence-Associated Genes and Length Polymorphism in actA and inlB Genes Identified in Listeria monocytogenes Isolates from Meat Products and Meat-Processing Environments in Poland

Type
Journal article
Language
English
Date issued
2024
Author
Kawacka, Iwona
Olejnik-Schmidt, Agnieszka 
Faculty
Wydział Nauk o Żywności i Żywieniu
PBN discipline
food and nutrition technology
Journal
Pathogens
ISSN
2076-0817
DOI
10.3390/pathogens13060444
Web address
https://www.mdpi.com/2076-0817/13/6/444
Volume
13
Number
6
Pages from-to
art. 444
Abstract (EN)
Listeria monocytogenes is a human pathogen that has the ability to cause listeriosis, a disease with possible fatal outcomes. The typical route of infection is ingestion of the bacteria with contaminated food. In this study, 13 virulence-associated genes were examined with PCR in the genomes of 153 L. monocytogenes isolates collected from meat products and processing environments in Poland. All isolates possessed genes from LIPI-1—hly, actA, plcA, plcB and mpl—as well as four internalins: inlA, inlB, inlC, inlJ. Invasion-associated protein iap, as well as genes prfA and sigB, encoding regulatory proteins, were also detected in all isolates. Gene flaA, encoding flagellin, was detected in 113 (74%) isolates. This was the only gene that was not detected in all isolates, as its presence is serotype-dependent. Gene actA showed polymorphism with longer and shorter variants in PCR amplicons. Two isolates were characterized by truncated inlB genes, lacking 141 bp in their sequence, which was confirmed by gene sequencing. All isolates were positive in hemolysis assays, proving the synthesis of functional PrfA and Hly proteins. Four genotypes of L. monocytogenes based on actA polymorphism and two genotypes based on inlB polymorphism were distinguished within the isolates’ collection.
Keywords (EN)
  • food safety

  • gene mutation

  • virulence

  • invasiveness

  • genotyping

License
cc-bycc-by CC-BY - Attribution
Open access date
May 23, 2024
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