bioRxiv · 10.1101/565556
Low-dose antibiotics can collapse gut bacterial populations via a gelation transition
Abstract
Antibiotics can profoundly alter the intestinal microbiome even at the sublethal concentrations often encountered through environmental contamination. The mechanisms by which low-dose antibiotics induce large yet highly variable changes in gut communities have remained elusive. We therefore investigated the impact of antibiotics on intestinal bacteria using larval zebrafish, whose experimental tractability enables high-resolution in vivo examination of response dynamics. Live imaging revealed that sublethal doses of the common antibiotic ciprofloxacin lead to severe drops in bacterial abundance, coincident with changes in spatial organization that increase susceptibility to intestinal expulsion. Strikingly, our data can be mapped onto a physical model of living gels that links bacterial aggregation and expulsion to nonequilibrium abundance dynamics, providing a framework for predicting the impact of antibiotics on the intestinal microbiome.
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Schlomann, B. H., Wiles, T. J., Wall, E. S., Guillemin, K., Parthasarathy, R.. 2019-03-01. Low-dose antibiotics can collapse gut bacterial populations via a gelation transition. https://doi.org/10.1101/565556
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