Plant Biotechnology Laboratory, Department of Biotechnology and Bioinformatics, North-Eastern Hill University, Shillong, Meghalaya, 793022, India.
Genetica. 2022 Feb;150(1):1-12. doi: 10.1007/s10709-021-00146-2. Epub 2022 Jan 12.
The CRISPR/Cas (Clustered regularly interspaced short palindromic repeats/ CRISPR associated protein 9) system was discovered in bacteria and archea as an acquired immune response to protect the cells from infection. This technology has now evolved to become an efficient genome editing tool, and is replacing older gene editing technologies. This technique uses programmable sgRNAs to guide the Cas9 endonuclease to the target DNA location. sgRNA is a vital component of the CRISPR technology, since without it the Cas nuclease cannot reach to its target location. Over the years, many tools have been developed for designing sgRNAs, the details of which have been extensively reviewed here. It has proven to be a promising tool in the field of genetic engineering and has successfully generated many plant varieties with better and desirable qualities. In the present review, we attempted to collect,collate and summarize information related to the development of CRISPR/Cas9 system as a tool and subsequently into a technique having a wide array of applications in the field of plant genome editing in attaining desirable traits like resistance to various diseases, nutritional enhancement etc. In addition, the probable future prospects and the various bio-safety concerns associated with CRISPR gene editing technology have been discussed in detail.
CRISPR/Cas(规律成簇间隔短回文重复/CRISPR 相关蛋白 9)系统在细菌和古菌中被发现,是一种针对感染的获得性免疫反应,以保护细胞免受感染。这项技术现已发展成为一种高效的基因组编辑工具,正在取代旧的基因编辑技术。该技术使用可编程 sgRNA 引导 Cas9 内切酶到达靶 DNA 位置。sgRNA 是 CRISPR 技术的重要组成部分,因为没有它,Cas 核酸酶就无法到达其靶位。多年来,已经开发了许多用于设计 sgRNA 的工具,这里详细讨论了这些工具。它已被证明是遗传工程领域有前途的工具,并已成功地培育出许多具有更好和理想品质的植物品种。在本综述中,我们试图收集、整理和总结有关 CRISPR/Cas9 系统作为一种工具的发展信息,随后将其作为一种技术,在植物基因组编辑领域具有广泛的应用,以获得理想的特性,如对各种疾病的抗性、营养增强等。此外,还详细讨论了 CRISPR 基因编辑技术的可能未来前景和各种生物安全问题。