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In recent years, dozens of anti-phage defense systems have been identified. However, efforts to find these systems have focused predominantly on lytic phages, leaving defense against temperate phages poorly understood. Here, we isolated 33 temperate phages from a diverse collection of E. coli to create a library of single lysogens, which were tested for defense against the same set of temperate phages. We found that the majority of lysogens offer protection against at least one additional phage from the collection, often displaying broad defense against various phages. Defense efficacy varies based on growth media and host background, suggesting that some systems are context dependent. Using an iterative deletion-based strategy, we identify 17 systems responsible for the prophage-encoded defense, including 5 toxin-antitoxin modules. Collectively, our work uncovers a diverse array of phage-phage interactions and indicates that temperate phages encode a previously unrecognized arsenal of anti-phage defense systems. • Most temperate phages provide anti-phage defense to the host during lysogeny • Growth conditions and host genetic background influence defense phenotypes • Defense systems and their homologs are enriched in prophage regions • Diverse toxin-antitoxin systems encoded in prophages harbor anti-phage activity Bacteria contain an array of immune systems, with many yet to be discovered. Brenes and Laub isolate temperate phages from diverse E. coli strains, enabling identification of 17 conserved, prophage-encoded anti-phage defense systems that protect against other temperate phages. These findings reveal the critical nature and diversity of phage-phage interactions.
Brenes et al. (Thu,) studied this question.