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RNA聚合酶III启动子——植物基因组精准编辑的关键因子

RNA Pol III promoters-key players in precisely targeted plant genome editing.

作者信息

Kor Sakshi Dharmendra, Chowdhury Naimisha, Keot Ajay Kumar, Yogendra Kalenahalli, Chikkaputtaiah Channakeshavaiah, Sudhakar Reddy Palakolanu

机构信息

International Crops Research Institute for the Semi-Arid Tropics, Hyderabad, Telangana, India.

Biological Sciences and Technology Division, CSIR-North East Institute of Science and Technology (CSIR-NEIST), Jorhat, Assam, India.

出版信息

Front Genet. 2023 Jan 4;13:989199. doi: 10.3389/fgene.2022.989199. eCollection 2022.

Abstract

The clustered regularly interspaced short palindrome repeat (CRISPR)/CRISPR-associated protein Cas) system is a powerful and highly precise gene-editing tool in basic and applied research for crop improvement programs. CRISPR/Cas tool is being extensively used in plants to improve crop yield, quality, and nutritional value and make them tolerant to environmental stresses. CRISPR/Cas system consists of a Cas protein with DNA endonuclease activity and one CRISPR RNA transcript that is processed to form one or several short guide RNAs that direct Cas9 to the target DNA sequence. The expression levels of Cas proteins and gRNAs significantly influence the editing efficiency of CRISPR/Cas-mediated genome editing. This review focuses on insights into RNA Pol III promoters and their types that govern the expression levels of sgRNA in the CRISPR/Cas system. We discussed Pol III promoters structural and functional characteristics and their comparison with Pol II promoters. Further, the use of synthetic promoters to increase the targeting efficiency and overcome the structural, functional, and expressional limitations of RNA Pol III promoters has been discussed. Our review reports various studies that illustrate the use of endogenous U6/U3 promoters for improving editing efficiency in plants and the applicative approach of species-specific RNA pol III promoters for genome editing in model crops like Arabidopsis and tobacco, cereals, legumes, oilseed, and horticultural crops. We further highlight the significance of optimizing these species-specific promoters' systematic identification and validation for crop improvement and biotic and abiotic stress tolerance through CRISPR/Cas mediated genome editing.

摘要

成簇规律间隔短回文重复序列(CRISPR)/CRISPR相关蛋白Cas系统是作物改良计划基础研究和应用研究中一种强大且高度精确的基因编辑工具。CRISPR/Cas工具正在植物中广泛应用,以提高作物产量、品质和营养价值,并使其耐受环境胁迫。CRISPR/Cas系统由具有DNA内切酶活性的Cas蛋白和一个CRISPR RNA转录本组成,该转录本经过加工形成一个或几个短引导RNA,将Cas9导向目标DNA序列。Cas蛋白和引导RNA的表达水平显著影响CRISPR/Cas介导的基因组编辑效率。本综述重点探讨了对RNA聚合酶III启动子及其类型的见解,这些启动子控制着CRISPR/Cas系统中引导RNA的表达水平。我们讨论了聚合酶III启动子的结构和功能特征,以及它们与聚合酶II启动子的比较。此外,还讨论了使用合成启动子来提高靶向效率,并克服RNA聚合酶III启动子的结构、功能和表达限制。我们的综述报道了各种研究,这些研究说明了使用内源性U6/U3启动子提高植物编辑效率,以及物种特异性RNA聚合酶III启动子在拟南芥、烟草、谷物、豆类、油料作物和园艺作物等模式作物基因组编辑中的应用方法。我们进一步强调了通过CRISPR/Cas介导的基因组编辑,优化这些物种特异性启动子的系统鉴定和验证对于作物改良以及生物和非生物胁迫耐受性的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7275/9845283/02e09543b652/fgene-13-989199-g001.jpg

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