Visualizing phenotypic heterogeneity and single-cell morphology in situ during gut infection
DiBenedetto, N. V.; Donnelly-Morell, M. L.; Kumamoto, C.; Shen, A.
Show abstract
Visualizing phenotypic heterogeneity at single-cell resolution within dense microbial communities is technically challenging. Here, we present a method for visualizing this heterogeneity by combining spectrally compatible reporters to track the spatial distribution of gene expression in individual bacterial cells in the mammalian gut. Using toxin gene expression in Clostridioides difficile as a model for visualizing phenotypic heterogeneity, we demonstrate that, while C. difficile primarily occupies the lumen, a subpopulation of C. difficile associates with the colonic epithelium independent of toxin production. The approach further revealed that heterogeneity in C. difficile toxin gene expression is independent of location in the gut and unexpectedly showed that a toxin gene over-expressing mutant forms filamentous cells during the acute phase of infection. Thus, our reporter system provides quantitative, single-cell resolution of bacterial behavior within the intact gut environment and establishes a broadly applicable platform for investigating phenotypic heterogeneity in dense microbial communities.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- TNF signaling maintains local restriction of bacterial founder populations in intestinal and systemic sites during oral Yersinia infection 95%
- Cryptococcus neoformans rapidly invades the murine brain by sequential breaching of airway and endothelial tissues barriers, followed by engulfment by microglia 94%
- Intestinal inflammation reversibly alters the microbiota to drive susceptibility to Clostridioides difficile colonization in a mouse model of colitis 94%
Similar papers in this journal
- Pathogen clonal expansion underlies multiorgan dissemination and organ-specific outcomes during systemic infection 96%
- Amoxicillin-resistant Streptococcus pneumoniae can be resensitized by targeting the mevalonate pathway as indicated by sCRilecs-seq 95%
- Bacterial vampirism mediated through taxis to serum 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.