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Pseudomonas aeruginosa as a Potential Contaminant of Packed Fresh-Cut Lettuce in a Controlled Atmosphere. The Role of Phenotypes muc+/muc–
- Source :
- Biointerface Research in Applied Chemistry 11 (2021): 8716–8724. doi:10.33263/BRIAC112.87168724, info:cnr-pdr/source/autori:Alessandra Scano 1, Antonio Barberis 2, Germano Orrù 1,2,*, Sara Fais 1, Francesca Puggioni 1, Ylenia Spissu 2, Pier Andrea Serra 1,3, Guy D'hallewin 2/titolo:Pseudomonas aeruginosa as a Potential Contaminant of Packed Fresh-Cut Lettuce in a Controlled Atmosphere. The Role of Phenotypes muc+%2Fmuc-/doi:10.33263%2FBRIAC112.87168724/rivista:Biointerface Research in Applied Chemistry/anno:2021/pagina_da:8716/pagina_a:8724/intervallo_pagine:8716–8724/volume:11
- Publication Year :
- 2020
- Publisher :
- AMG Transcend Association, 2020.
-
Abstract
- In order to shed light on contamination risks along the ready-to-eat chain of fresh commodities by emerging foodborne pathogens, we investigated the biofilm development in vitro of two Pseudomonas aeruginosa strains on fresh-cut lettuce (Lactuca sativa L. var. Iceberg). The experiment was performed employing a floating bioreactor system where modified atmosphere package conditions were mimicked, and fresh-cut lettuce disks of 2 cm2 were put into contact with a 106 CFU/mL of a phenotypic mucoid P. aeruginosa phenotype (muc+) or a non-mucoid one (muc-). Following a simulated 2-day refrigerated-shelf quantitative Real-Time PCR, designed on a target gene region of the 16S rRNA gene, defined the different muc phenotypes behavior on biofilm in lettuce phyllo-plane. Between the two strains, a development difference of nearly 1.0 log CFU/cm2 occurred, with the muc+ phenotype being the most settled and adherent. This result clearly showed a distinct contamination risk according to P. aeruginosa phenotype and the need to develop real-time, specific, fast, and easy to use detection protocols along with specific sanitation systems for modified atmosphere package ready-to-eat commodities.
Details
- ISSN :
- 20695837
- Volume :
- 11
- Database :
- OpenAIRE
- Journal :
- Biointerface Research in Applied Chemistry
- Accession number :
- edsair.doi.dedup.....050325631cc3a84bb189aab4d0388bcb
- Full Text :
- https://doi.org/10.33263/briac112.87168724