First Evidence of Division and Accumulation of Viable but Nonculturable Pseudomonas fluorescens Cells on Surfaces Subjected to Conditions Encountered at Meat Processing Premises
- 1 May 2007
- journal article
- research article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 73 (9) , 2839-2846
- https://doi.org/10.1128/aem.02267-06
Abstract
Cleaning and disinfection of open surfaces in food industry premises leave some microorganisms behind; these microorganisms build up a resident flora on the surfaces. Our goal was to explore the phenomena involved in the establishment of this biofilm. Ceramic coupons were contaminated, once only, with Pseudomonas fluorescens suspended in meat exudate incubated at 10°C. The mean adhering population after 1 day was 10 2 CFU·cm −2 and 10 3 total cells·cm −2 , i.e., the total number of cells stained by DAPI (4′,6′-diamidino-2-phenylindole). The coupons were subjected daily to a cleaning product, a disinfectant, and a further soiling with exudate. The result was a striking difference between the numbers of CFU, which reached 10 4 CFU·cm −2 , and the numbers of total cells, which reached 2 × 10 6 cells·cm −2 in 10 days. By using hypotheses all leading to an overestimation of the number of dead cells, we showed that the quantity of nonculturable cells (DAPI-positive cells minus CFU) observed cannot be accounted for as an accumulation of dead cells. Some nonculturable cells are therefore dividing on the surface, although cell division is unable to continue to the stage of macrocolony formation on agar. The same phenomenon was observed when only a chlorinated alkaline product was used and the number of cells capable of reducing 5-cyano-2,3-ditolyl tetrazolium chloride was close to the number of total cells, confirming that most nonculturable cells are viable but nonculturable. Furthermore, the daily shock applied to the cells does not prompt them to enter a new lag phase. Since a single application of microorganisms is sufficient to produce this accumulation of cells, it appears that the phenomenon is inevitable on open surfaces in food industry premises.Keywords
This publication has 54 references indexed in Scilit:
- Avirulence of Viable But Non-Culturable Listeria monocytogenes cells demonstrated by in vitro and in vivo modelsVeterinary Research, 2005
- Separation of active and inactive fractions from starved culture of Vibrio parahaemolyticus by density dependent cell sortingFEMS Microbiology Ecology, 2005
- Transfer of Microorganisms, Including Listeria monocytogenes , from Various Materials to BeefApplied and Environmental Microbiology, 2002
- Passage in mice causes a change in the ability ofSalmonella entericaserovar Oranienburg to survive NaCl osmotic stress: resuscitation from the viable but non-culturable stateFEMS Microbiology Letters, 2002
- BIOFILMSPublished by Elsevier ,1999
- Localisation, dénombrement et identification de la contamination microbienne après nettoyage de joints en EPDM d'un circuit de pasteurisation de l'industrie laitièreLe Lait, 1997
- A dynamic approach to predicting bacterial growth in foodInternational Journal of Food Microbiology, 1994
- Rapid in situ assessmetn of physiological activities in bacterial biofilms using fluorescent probesJournal of Microbiological Methods, 1994
- Detection of viable, but non-culturable Pseudomonas fluorescens DF57 in soil using a microcolony epifluorescence techniqueFEMS Microbiology Ecology, 1993
- Observations on the Value of a Swab Technique for Determining the Bacteriological State of Milking Equipment SurfacesJournal of Applied Bacteriology, 1980