Bacterial defense against phage predation involves diverse defense systems acting individually and concurrently, yet their interactions remain poorly understood. We investigated >100 defense systems in 42,925 bacterial genomes and identified numerous instances of their non-random co-occurrence and negative association. For several pairs of defense systems significantly co-occurring in Escherichia coli strains, we demonstrate synergistic anti-phage activity. Notably, Zorya II synergizes with Druantia III and ietAS defense systems, while tmn exhibits synergy with co-occurring systems Gabija, Septu I, and PrrC. For Gabija, tmn co-opts the sensory switch ATPase domain, enhancing anti-phage activity. Some defense system pairs that are negatively associated in E. coli show synergy and significantly co-occur in other taxa, demonstrating that bacterial immune repertoires are largely shaped by selection for resistance against host-specific phages rather than negative epistasis. Collectively, these findings demonstrate compatibility and synergy between defense systems, allowing bacteria to adopt flexible strategies for phage defense.
Bacterial defense systems exhibit synergistic anti-phage activity.
细菌防御系统表现出协同抗噬菌体活性
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作者:Wu Yi, Garushyants Sofya K, van den Hurk Anne, Aparicio-Maldonado Cristian, Kushwaha Simran Krishnakant, King Claire M, Ou Yaqing, Todeschini Thomas C, Clokie Martha R J, Millard Andrew D, Gençay Yilmaz Emre, Koonin Eugene V, Nobrega Franklin L
| 期刊: | Cell Host & Microbe | 影响因子: | 18.700 |
| 时间: | 2024 | 起止号: | 2024 Apr 10; 32(4):557-572 |
| doi: | 10.1016/j.chom.2024.01.015 | 研究方向: | 微生物学 |
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