Role of Extracellular DNA during Biofilm Formation byListeria monocytogenes

Author:

Harmsen Morten12,Lappann Martin3,Knøchel Susanne1,Molin Søren2

Affiliation:

1. Food Microbiology, Department of Food Science, Faculty of Life Science, Copenhagen University, Copenhagen, Denmark

2. Center for Systems Microbiology, Department of Systems Biology, Technical University of Denmark, Lyngby, Denmark

3. Institute for Hygiene and Microbiology, University of Würzburg, Würzburg, Germany

Abstract

ABSTRACTListeria monocytogenesis a food-borne pathogen that is capable of living in harsh environments. It is believed to do this by forming biofilms, which are surface-associated multicellular structures encased in a self-produced matrix. In this paper we show that inL. monocytogenesextracellular DNA (eDNA) may be the only central component of the biofilm matrix and that it is necessary for both initial attachment and early biofilm formation for 41L. monocytogenesstrains that were tested. DNase I treatment resulted in dispersal of biofilms, not only in microtiter tray assays but also in flow cell biofilm assays. However, it was also demonstrated that in a culture without eDNA, neitherListeriagenomic DNA nor salmon sperm DNA by itself could restore the capacity to adhere. A search for additional necessary components revealed that peptidoglycan (PG), specificallyN-acetylglucosamine (NAG), interacted with the DNA in a manner which restored adhesion. If a short DNA fragment (less than approximately 500 bp long) was added to an eDNA-free culture prior to addition of genomic or salmon sperm DNA, adhesion was prevented, indicating that high-molecular-weight DNA is required for adhesion and that the number of attachment sites on the cell surface can be saturated.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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