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Systematic discovery of antiphage defense systems in the microbial pangenome

机译:微生物全基因组中抗噬菌体防御系统的系统发现

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The arms race between bacteria and phages led to the development of sophisticated antiphage defense systems, including CRISPR-Cas and restriction-modification systems. Evidence suggests that known and unknown defense systems are located in "defense islands" in microbial genomes. Here, we comprehensively characterized the bacterial defensive arsenal by examining gene families that are clustered next to known defense genes in prokaryotic genomes. Candidate defense systems were systematically engineered and validated in model bacteria for their antiphage activities. We report nine previously unknown antiphage systems and one antiplasmid system that are widespread in microbes and strongly protect against foreign invaders. These include systems that adopted components of the bacterial flagella and condensin complexes. Our data also suggest a common, ancient ancestry of innate immunity components shared between animals, plants, and bacteria.
机译:细菌和噬菌体之间的军备竞赛导致了复杂的抗噬菌体防御系统的开发,包括CRISPR-Cas和限制性修饰系统。有证据表明,已知和未知的防御系统都位于微生物基因组的“防御岛”中。在这里,我们通过检查在原核基因组中已知防御基因旁边聚集的基因家族,全面表征了细菌防御性武器库。在模型细菌中系统地设计和验证了候选防御系统的抗噬菌活性。我们报告了九种以前未知的抗噬菌体系统和一种抗微生物体系统,这些系统广泛存在于微生物中,可以有效防御外来入侵者。这些包括采用细菌鞭毛和浓缩素复合物成分的系统。我们的数据还表明,动物,植物和细菌之间共有先天免疫成分的共同古老起源。

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