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Updated: Apr 19, 2026

Monitoring Spatial Segregation in Surface Colonizing Microbial Populations
Published on: October 29, 2016
Community behavior and spatial regulation within a bacterial microcolony in deep tissue sites serves to protect
Kimberly M Davis1, Sina Mohammadi2, Ralph R Isberg1
1Howard Hughes Medical Institute, Sackler School of Graduate Biomedical Science, Tufts University School of Medicine, 150 Harrison Avenue, Boston, MA 02111, USA; Department of Molecular Biology and Microbiology, Sackler School of Graduate Biomedical Science, Tufts University School of Medicine, 150 Harrison Avenue, Boston, MA 02111, USA.
Abstract:
Bacterial pathogens express virulence-specific transcriptional programs that allow tissue colonization. Although phenotypic variation has been noted in the context of antibiotic exposure, no direct evidence exists for heterogeneity in virulence-specific transcriptional programs within tissues. In a mouse model of Yersinia pseudotuberculosis infection, we show that at least three subpopulations of bacteria develop within a single tissue site in response to distinct host signals. Bacteria growing on the exterior of spleen microcolonies responded to soluble signals and induced the nitric oxide (NO)-detoxifying gene, hmp. Hmp effectively eliminated NO diffusion and protected the interior bacterial population from exposure to NO-derived inducing signals. A third subpopulation, constituting the most peripherally localized bacteria, directly contacted neutrophils and transcriptionally upregulated a virulence factor. These studies demonstrate that growth within tissues results in transcriptional specialization within a single focus of microbial replication, facilitating directed pathogen counterattack against the host response.
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