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A Comprehensive Curation Shows the Dynamic Evolutionary Patterns of Prokaryotic CRISPRs

机译:全面的策策显示了原核CRISPRS的动态进化模式

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Motivation. Clustered regularly interspaced short palindromic repeat (CRISPR) is a genetic element with active regulation roles for foreign invasive genes in the prokaryotic genomes and has been engineered to work with the CRISPR-associated sequence (Cas) gene Cas9 as one of the modern genome editing technologies. Due to inconsistent, definitions, the existing CRISPR detection programs seem to have missed some weak CRISPR signals. Results. This study manually curates all the currently annotated CRISPR elements in the prokaryotic genomes and proposes 95 updates to the annotations. A new definition is proposed to cover all the CRISPRs. The comprehensive comparison of CRISPR numbers on the taxonomic levels of both domains and genus shows high variations for closely related species even in the same genus. The detailed investigation of how CRISPRs are evolutionarily manipulated in the 8 completely sequenced species in the genus Thermoanaerobacter demonstrates that transposons act as a frequent tool for splitting long CRISPRs into shorter ones along a long evolutionary history.
机译:动机。聚集经常间隙的短语重复(CRISPR)是一种遗传元素,其具有前核基因组中的外来侵入性基因的主动调节作用,并且已经设计成与现代基因组编辑技术之一的CRISPR相关序列(CAS)基因CAS9一起使用。由于不一致,定义,现有的CRISPR检测程序似乎错过了一些弱克里普尔的信号。结果。本研究手动培养原核基因组中的所有当前带注释的CRISPR元素,并提出了95个对注释更新。提出了一个新的定义来涵盖所有克里普尔人。 Crispr Number对域和属的分类水平的全面比较表明,即使在同一属中,也表现出密切相关的物种的高变化。详细研究了ThermoanaErobacter的8种完全测序物种在8种完全测序的物种中如何进行动画的详细研究表明,转座子充当频繁的工具,用于沿着漫长的进化历史将长克拉姆分成较短的工具。

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