Related Experiment Video
Updated: May 9, 2026

Oral Transmission of Listeria monocytogenes in Mice via Ingestion of Contaminated Food
Published on: May 6, 2013
The Secondary Colonizer Hypothesis: an Ecological View of Listeria monocytogenes Persistence in Food Processing
Jack Burnett1, David Buckley2, Dale Grinstead3
1Department of Food Science, Purdue University, 745 Agriculture Mall Drive, West Lafayette, IN 47907, USA; Diversey, 1300 Altura Road, Suite 125, Fort Mill, SC 29708, USA.
Abstract:
Listeria monocytogenes demonstrates remarkable persistence in food processing environments, particularly in areas with established biofilm communities. This communication synthesizes emerging evidence for a novel ecological strategy whereby L. monocytogenes functions as a secondary colonizer, exploiting central voids created during Gram-negative bacterial biofilm dispersal. We propose the "secondary colonizer hypothesis" - that L. monocytogenes utilizes a sophisticated temporal succession strategy, colonizing biofilm voids characterized by steep oxygen gradients and phosphatidylethanolamine-rich debris from dispersed primary colonizers. This strategy employs specialized metabolic pathways, including cobalamin-dependent catabolism of ethanolamine, propylene glycol, and glycerol, while simultaneously utilizing ferric iron reduction for respiration. The metabolic coupling allows each bacterial cell to accumulate iron via ferritin-like protein storage, creating competitive advantages through localized limitation. Recent evidence identifies Veillonella as a key bridging species that may facilitate this ecological succession through metabolic complementarity. Notably, while L. monocytogenes cooccurs with Gram-positive bacteria, its metabolic specialization for ethanolamine and iron scavenging suggests a preferential adaptation to the nutrient-dense voids of dispersed Gram-negative biofilms. The implications for food safety protocols, particularly cleaning chemical formulations and ecological monitoring strategies, warrant immediate attention.
Related Concept Videos
Colonisation of Pathogens
Microbes in the Production of Fermented Foods
Microbiota of the Large Intestine
Microbes in Food Production
Microbiota of the Stomach and Small Intestine
Bacterial Flora of the Large Intestine
The normal gut flora of the colon plays a critical role in generating essential vitamins such as vitamins K, B5, and B7.
