Yin Wenjing, Chen Zhengai, Huang Jiahui, Ye Hanfei, Lu Tao, Lu Mei, Rao Yuchun
College of Life Sciences, Zhejiang Normal University, Jinhua 321004, Zhejiang, China.
Sheng Wu Gong Cheng Xue Bao. 2023 Feb 25;39(2):399-424. doi: 10.13345/j.cjb.220664.
The CRISPR-Cas9 system is composed of a clustered regularly interspaced short palindromic repeat (CRISPR) and its associated proteins, which are widely present in bacteria and archaea, serving as a specific immune protection against viral and phage secondary infections. CRISPR-Cas9 technology is the third generation of targeted genome editing technologies following zinc finger nucleases (ZFNs) and transcription activator like effector nucleases (TALENs). The CRISPR-Cas9 technology is now widely used in various fields. Firstly, this article introduces the generation, working mechanism and advantages of CRISPR-Cas9 technology; secondly, it reviews the applications of CRISPR-Cas9 technology in gene knockout, gene knock-in, gene regulation and genome in breeding and domestication of important food crops such as rice, wheat, maize, soybean and potato. Finally, the article summarizes the current problems and challenges encountered by CRISPR-Cas9 technology and prospects future development and application of CRISPR-Cas9 technology.
CRISPR-Cas9系统由成簇规律间隔短回文重复序列(CRISPR)及其相关蛋白组成,广泛存在于细菌和古生菌中,作为针对病毒和噬菌体二次感染的一种特异性免疫保护机制。CRISPR-Cas9技术是继锌指核酸酶(ZFNs)和转录激活样效应核酸酶(TALENs)之后的第三代靶向基因组编辑技术。CRISPR-Cas9技术目前在各个领域都有广泛应用。首先,本文介绍了CRISPR-Cas9技术的产生、作用机制及优势;其次,综述了CRISPR-Cas9技术在水稻、小麦、玉米、大豆和马铃薯等重要粮食作物育种与驯化中的基因敲除、基因敲入、基因调控及基因组方面的应用。最后,文章总结了CRISPR-Cas9技术目前遇到的问题与挑战,并对CRISPR-Cas9技术未来的发展与应用进行了展望。
Sheng Wu Gong Cheng Xue Bao. 2023-2-25
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