【2h】

Holding a grudge

机译:怀恨在心

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摘要

The CRISPR (clustered regularly interspaced short palindromic repeats)/Cas (CRISPR-associated) system of bacteria and archaea constitutes a mechanism of acquired adaptive immunity against phages, which is based on genome-encoded markers of previously infecting phage sequences (“spacers”). As a repository of phage sequences, these spacers make the system particularly suitable for elucidating phage-bacteria interactions in metagenomic studies. Recent metagenomic analyses of CRISPRs associated with the human microbiome intriguingly revealed conserved “memory spacers” shared by bacteria in multiple unrelated, geographically separated individuals. Here, we discuss possible avenues for explaining this phenomenon by integrating insights from CRISPR biology and phage-bacteria ecology, with a special focus on the human gut. We further explore the growing body of evidence for the role of CRISPR/Cas in regulating the interplay between bacteria and lysogenic phages, which may be intimately related to the presence of memory spacers and sheds new light on the multifaceted biological and ecological modes of action of CRISPR/Cas.
机译:细菌和古细菌的CRISPR(聚类的规则间隔的短回文重复序列)/ Cas(CRISPR相关的)系统构成了获得的针对噬菌体的适应性免疫的机制,该机制基于先前感染的噬菌体序列(“间隔物”)的基因组编码标记。作为噬菌体序列的储存库,这些间隔子使系统特别适合于在宏基因组学研究中阐明噬菌体与细菌的相互作用。最近对与人类微生物组相关的CRISPR的宏基因组学分析有趣地揭示了细菌在多个无关的,地理上分离的个体中共享的保守的“记忆间隔子”。在这里,我们讨论了通过整合CRISPR生物学和噬菌体细菌生态学的见解来解释这一现象的可能途径,特别关注人类肠道。我们进一步探索了CRISPR / Cas在调节细菌与溶原性噬菌体之间相互作用中的作用的越来越多的证据,这可能与记忆间隔子的存在密切相关,并为CRISPR / Cas的多方面生物学和生态作用模式提供了新的启示。 CRISPR / Cas。

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