bioRxiv · 10.1101/2025.11.13.688357
Surviving phage attack dynamically regulates bacterial immunity to defeat counterdefenses
Abstract
Transcriptional repressors with ligand-responsive WYL domains control diverse bacterial defense systems, yet the natural cues driving derepression and the physiological rationale for dynamic regulation in native host-phage contexts remain unknown. Here, we show that restricted phage infection, where defense clears a primary attack, serves as a natural cue for WYL-mediated derepression in Vibrio cholerae. Although not required to block the initial infection, this response increases defense protein abundance, shifting host-phage stoichiometry and priming surviving bacteria to overwhelm phage-encoded counterdefenses in subsequent attacks. We also find that restricted infection co-induces an unlinked anti-plasmid defense via its own WYL repressor, showing that parallel WYL sensors coordinate a broader immune response without regulatory crosstalk. In contrast, productive phage infection triggers horizontal transfer of the defense-encoding mobile element, ensuring its persistence in the population. Together, our work reveals that infection fate dictates divergent outcomes for the expression and dissemination of bacterial immunity.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Oshiro, R., Dunham, D., Gill, C., Chouldjian, A., Piya, D., Mutalik, V. K., Seed, K.. 2025-11-14. Surviving phage attack dynamically regulates bacterial immunity to defeat counterdefenses. https://doi.org/10.1101/2025.11.13.688357
Cite the original work for its findings. Save a collection to share your selection of sources.