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Evolutionary Genomics of Defense Systems in Archaea and Bacteria*
Annual Review of Microbiology ( IF 10.5 ) Pub Date : 2017-09-08 00:00:00 , DOI: 10.1146/annurev-micro-090816-093830
Eugene V. Koonin 1 , Kira S. Makarova 1 , Yuri I. Wolf 1
Affiliation  

Evolution of bacteria and archaea involves an incessant arms race against an enormous diversity of genetic parasites. Accordingly, a substantial fraction of the genes in most bacteria and archaea are dedicated to antiparasite defense. The functions of these defense systems follow several distinct strategies, including innate immunity; adaptive immunity; and dormancy induction, or programmed cell death. Recent comparative genomic studies taking advantage of the expanding database of microbial genomes and metagenomes, combined with direct experiments, resulted in the discovery of several previously unknown defense systems, including innate immunity centered on Argonaute proteins, bacteriophage exclusion, and new types of CRISPR-Cas systems of adaptive immunity. Some general principles of function and evolution of defense systems are starting to crystallize, in particular, extensive gain and loss of defense genes during the evolution of prokaryotes; formation of genomic defense islands; evolutionary connections between mobile genetic elements and defense, whereby genes of mobile elements are repeatedly recruited for defense functions; the partially selfish and addictive behavior of the defense systems; and coupling between immunity and dormancy induction/programmed cell death.

中文翻译:


古细菌和细菌防御系统的进化基因组学*

细菌和古细菌的进化涉及与大量遗传寄生虫的持续军备竞赛。因此,大多数细菌和古细菌中的大部分基因专用于抗寄生虫防御。这些防御系统的功能遵循几种不同的策略,包括先天免疫。适应性免疫 和休眠诱导,或程序性细胞死亡。最近的比较基因组研究利用了扩展的微生物基因组和元基因组数据库,并与直接实验相结合,导致发现了一些以前未知的防御系统,包括以Argonaute蛋白为中心的先天免疫,噬菌体排斥和新型CRISPR-Cas适应性免疫系统。一些功能和防御系统进化的一般原理开始形成结晶,尤其是在原核生物进化过程中,防御基因的广泛获得和丧失。基因组防御岛的形成;流动遗传要素与防御之间的进化联系,从而反复招募流动要素的基因来发挥防御功能;防御系统的部分自私和令人上瘾的行为;免疫力与休眠诱导/程序性细胞死亡之间的耦合。防御系统的部分自私和令人上瘾的行为;免疫力与休眠诱导/程序性细胞死亡之间的耦合。防御系统的部分自私和令人上瘾的行为;免疫力与休眠诱导/程序性细胞死亡之间的耦合。

更新日期:2017-09-08
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