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首页> 外文期刊>Trends in Microbiology >Harnessing CRISPR-Cas systems for bacterial genome editing
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Harnessing CRISPR-Cas systems for bacterial genome editing

机译:利用CRISPR-Cas系统进行细菌基因组编辑

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摘要

Manipulation of genomic sequences facilitates the identification and characterization of key genetic determinants in the investigation of biological processes. Genome editing via clustered regularly interspaced short palindromic repeats (CRISPR)-CRISPR-associated (Cas) constitutes a next-generation method for programmable and high-throughput functional genomics. CRISPR-Cas systems are readily reprogrammed to induce sequence-specific DNA breaks at target loci, resulting in fixed mutations via host-dependent DNA repair mechanisms. Although bacterial genome editing is a relatively unexplored and underrepresented application of CRISPR-Cas systems, recent studies provide valuable insights for the widespread future implementation of this technology. This review summarizes recent progress in bacterial genome editing and identifies fundamental genetic and phenotypic outcomes of CRISPR targeting in bacteria, in the context of tool development, genome homeostasis, and DNA repair.
机译:基因组序列的操作有助于生物学过程研究中关键遗传决定因素的鉴定和表征。通过簇状规则间隔的短回文重复序列(CRISPR)-CRISPR相关的(Cas)进行基因组编辑构成了可编程和高通量功能基因组学的下一代方法。 CRISPR-Cas系统易于重新编程以在靶基因座上诱导序列特异性DNA断裂,从而通过依赖宿主的DNA修复机制产生固定的突变。尽管细菌基因组编辑是CRISPR-Cas系统的一个相对未被开发和代表性不足的应用,但最近的研究为该技术的广泛未来实施提供了有价值的见解。这篇综述总结了细菌基因组编辑的最新进展,并在工具开发,基因组稳态和DNA修复的背景下,确定了CRISPR靶向细菌的基本遗传和表型结果。

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