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Bacterial Hyperswarming as a Protective Response to Intestinal Stress

Chen, W.; De, A.; Li, H.; Lukin, D. J.; Szymczak, W.; Sun, K.; Kelly, L.; Wright, J. R.; Lamendella, R.; Ghosh, S.; Kearns, D. B.; He, Z.; Jobin, C.; Luo, X.; Byju, A.; Chatterjee, S.; Yeoh, B. S.; Vijay-Kumar, M.; Tang, J. X.; Mani, S.

2019-09-08 microbiology
10.1101/759886 bioRxiv
Show abstract

Bacterial swarming, a collective movement on a surface, has rarely been associated with human pathophysiology. Here, we report for the first time that bacterial swarmers are associated with protection against intestinal inflammation. We show that bacterial swarmers are highly predictive of intestinal stress in mice and humans. We isolated a novel Enterobacter swarming strain, SM3, from mouse feces. SM3 and other known commensal swarmers contrast to their respective swarming-deficient, but swimming-competent isogenic strains abrogated intestinal inflammation in mice. Treatment of colitic mice with SM3, but not its mutants, enriched beneficial fecal anaerobes belonging to the family, Bacteroidales S24-7. We observed SM3 swarming associated pathways in the in vivo fecal metatranscriptomes. In vitro growth of S24-7 was enriched in presence of SM3 or its mutants conjecturing that bacterial swarming in vivo might influence SM3s access to S24-7 in the intestines. Overall, our work identifies a new paradigm in which intestinal stress allows for the emergence of swarming bacteria, which can counterintuitively heal intestinal inflammation.

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