| Literature DB >> 33668440 |
Fabrizia Guidi1,2, Massimiliano Orsini3, Alexandra Chiaverini4, Marina Torresi4, Patrizia Centorame4, Vicdalia Aniela Acciari4, Romolo Salini5, Barbara Palombo1, Giorgio Brandi2, Giulia Amagliani2, Giuditta Fiorella Schiavano6, Francesca Romana Massacci1, Stefano Fisichella1, Marco Di Domenico7, Massimo Ancora7, Adriano Di Pasquale7, Anna Duranti1, Cesare Cammà7, Francesco Pomilio4, Giuliana Blasi1.
Abstract
A total of 66 Listeria monocytogenes (Lm) isolated from 2013 to 2018 in a small-scale meat processing plant and a dairy facility of Central Italy were studied. Whole Genome Sequencing and bioinformatics analysis were used to assess the genetic relationships between the strains and investigate persistence and virulence abilities. The biofilm forming-ability was assessed in vitro. Cluster analysis grouped the Lm from the meat plant into three main clusters: two of them, both belonging to CC9, persisted for years in the plant and one (CC121) was isolated in the last year of sampling. In the dairy facility, all the strains grouped in a CC2 four-year persistent cluster. All the studied strains carried multidrug efflux-pumps genetic determinants (sugE, mdrl, lde, norM, mepA). CC121 also harbored the Tn6188 specific for tolerance to Benzalkonium Chloride. Only CC9 and CC121 carried a Stress Survival Islet and presented high-level cadmium resistance genes (cadA1C1) carried by different plasmids. They showed a greater biofilm production when compared with CC2. All the CC2 carried a full-length inlA while CC9 and CC121 presented a Premature Stop Codon mutation correlated with less virulence. The hypo-virulent clones CC9 and CC121 appeared the most adapted to food-processing environments; however, even the hyper-virulent clone CC2 warningly persisted for a long time. The identification of the main mechanisms promoting Lm persistence in a specific food processing plant is important to provide recommendations to Food Business Operators (FBOs) in order to remove or reduce resident Lm.Entities:
Keywords: Listeria monocytogenes; QAC-resistance; WGS; biofilm; bioinformatics analysis; environmental stresses resistance; hyper-virulent clones; hypo-virulent clones; persistent clusters
Year: 2021 PMID: 33668440 DOI: 10.3390/microorganisms9020376
Source DB: PubMed Journal: Microorganisms ISSN: 2076-2607