Department of Food, Bioprocessing, and Nutrition Sciences, North Carolina State University, 400 Dan Allen Drive, Campus Box 7624, Raleigh, North Carolina 27695-7624, USA.
DuPont Nutrition and Health, BP10, 86220 Dangé-Saint-Romain, France.
Nat Microbiol. 2017 Jun 5;2:17092. doi: 10.1038/nmicrobiol.2017.92.
This year marks the tenth anniversary of the identification of the biological function of CRISPR-Cas as adaptive immune systems in bacteria. In just a decade, the characterization of CRISPR-Cas systems has established a novel means of adaptive immunity in bacteria and archaea and deepened our understanding of the interplay between prokaryotes and their environment, and CRISPR-based molecular machines have been repurposed to enable a genome editing revolution. Here, we look back on the historical milestones that have paved the way for the discovery of CRISPR and its function, and discuss the related technological applications that have emerged, with a focus on microbiology. Lastly, we provide a perspective on the impacts the field has had on science and beyond.
今年是细菌中 CRISPR-Cas 作为适应性免疫系统的生物学功能被鉴定十周年。在短短十年间,CRISPR-Cas 系统的特征研究在细菌和古菌中建立了一种新的适应性免疫手段,并加深了我们对原核生物与其环境相互作用的理解,基于 CRISPR 的分子机器也被重新用于开启基因组编辑革命。在这里,我们回顾了为发现 CRISPR 及其功能铺平道路的历史里程碑,并讨论了出现的相关技术应用,重点是微生物学。最后,我们提供了一个视角,来看该领域对科学及其他领域的影响。