Convenient, high-efficiency multiplex genome editing in autotetraploid alfalfa using endogenous U6 promoters and visual reporters

IF 5 4区 农林科学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY aBIOTECH Pub Date : 2025-02-10 DOI:10.1007/s42994-025-00200-z
Xiuzhi Xia, Shihao Li, Na Wang, Panxu Cheng, Butuo Zhu, Pengcheng Zhang, Dahai Yang, Hao Lin, Lifang Niu
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Abstract

CRISPR/Cas is a simple, robust, versatile tool for plant biology studies and precision plant breeding. However, establishing a high-efficiency gene editing system for multiplex editing of the autotetraploid crop alfalfa (Medicago sativa L.), the most important forage legume worldwide, remains a formidable challenge. Here, we systematically identified endogenous U6 promoters in alfalfa through transient expression via Agrobacterium-mediated infiltration of alfalfa leaves. We further demonstrated the efficacy of the three most active promoters for genome editing using an optimized alfalfa hairy root system. Subsequently, we established an improved CRISPR/Cas9 multiplex system containing three or four tandemly arrayed MsU6-promoter-driven polycistronic tRNA-sgRNA (PTG) expression cassettes, each consisting of three tRNA-sgRNA units, to simultaneously edit three or four alfalfa genes, coupled with the visual reporter RH1 or RUBY. This toolkit showed efficient multiplex editing in the hairy root system with visual selection. We successfully obtained regenerated, red-colored shoots resulting from the stable transformation of alfalfa. These results highlight the potential application of the visual reporter system for the stable transformation of alfalfa. Our improved CRISPR/Cas9 multiplex system enables convenient, high-efficiency multiplex genome editing in alfalfa, providing a versatile toolset to facilitate functional studies of multiple genes and gene families for basic research and the genetic improvement of alfalfa.

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利用内源U6启动子和视觉报告子对同源四倍体苜蓿进行便捷、高效的多重基因组编辑
CRISPR/Cas是一种简单、强大、多功能的植物生物学研究和精确植物育种工具。然而,建立一个高效的基因编辑系统,对世界上最重要的饲用豆科植物苜蓿(Medicago sativa L.)进行多重编辑仍然是一个艰巨的挑战。本研究通过农杆菌介导的苜蓿叶片瞬时表达,系统地鉴定了苜蓿中内源U6启动子。我们利用优化的苜蓿毛状根系进一步证明了三种最活跃的启动子对基因组编辑的功效。随后,我们建立了一个改进的CRISPR/Cas9多重系统,该系统包含3或4个串联的msu6启动子驱动的多顺反子tRNA-sgRNA (PTG)表达盒,每个表达盒由3个tRNA-sgRNA单元组成,同时编辑3或4个苜蓿基因,并与视觉报告基因RH1或RUBY结合。该工具显示了毛状根系中具有视觉选择的高效多重编辑。我们成功地获得了紫花苜蓿稳定转化后的红色再生芽。这些结果突出了可视化报告系统在紫花苜蓿稳定转化中的潜在应用。我们改进的CRISPR/Cas9多重基因组编辑系统能够方便、高效地对苜蓿进行多重基因组编辑,为苜蓿的基础研究和遗传改良提供了一个多功能的工具集,促进了多基因和基因家族的功能研究。
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CiteScore
7.70
自引率
2.80%
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0
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