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Biofouling
The Journal of Bioadhesion and Biofilm Research
Volume 29, 2013 - Issue 10
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Articles

Kinetics of biofilm formation and desiccation survival of Listeria monocytogenes in single and dual species biofilms with Pseudomonas fluorescens, Serratia proteamaculans or Shewanella baltica on food-grade stainless steel surfaces

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Pages 1253-1268 | Received 14 May 2013, Accepted 12 Aug 2013, Published online: 08 Oct 2013
 

Abstract

This study investigated the dynamics of static biofilm formation (100% RH, 15 °C, 48–72 h) and desiccation survival (43% RH, 15 °C, 21 days) of Listeria monocytogenes, in dual species biofilms with the common spoilage bacteria, Pseudomonas fluorescens, Serratia proteamaculans and Shewanella baltica, on the surface of food grade stainless steel. The Gram-negative bacteria reduced the maximum biofilm population of L. monocytogenes in dual species biofilms and increased its inactivation during desiccation. However, due to the higher desiccation resistance of Listeria relative to P. fluorescens and S. baltica, the pathogen survived in greater final numbers. In contrast, S. proteamaculans outcompeted the pathogen during the biofilm formation and exhibited similar desiccation survival, causing the N21 days of Serratia to be ca 3 Log10(CFU cm−2) greater than that of Listeria in the dual species biofilm. Microscopy revealed biofilm morphologies with variable amounts of exopolymeric substance and the presence of separate microcolonies. Under these simulated food plant conditions, the fate of L. monocytogenes during formation of mixed biofilms and desiccation depended on the implicit characteristics of the co-cultured bacterium.

Acknowledgements

The Natural Sciences and Engineering Research Council of Canada (NSERC) is highly appreciated for providing financial support to this work. The authors also acknowledge the technical support of Patricia Scallion from the SEM facility at the Institute of Research in Materials at Dalhousie and their funding partners (the Canadian Foundation for Innovation, the Atlantic Innovation Fund and NSERC).

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