基因组编辑
生物
基因
八氢番茄红素脱氢酶
农杆菌
基因组
计算生物学
转化(遗传学)
遗传学
突变
突变率
突变体
ATP合酶
拟南芥
植物
DNA转座因子
作者
Yi An,Ya Geng,Junguang Yao,Chun Wang,Juan Du
标识
DOI:10.3389/fpls.2021.703546
摘要
Gene editing technology in woody plants has great potential for understanding gene function, and altering traits affecting economically and ecologically important traits. Gene editing applications in woody species require a high genome editing efficiency due to the difficulty during transformation and complexities resulting from gene redundancy. In this study, we used poplar 84K ( Populus alba × P. glandulosa ), which is a model hybrid for studying wood formation and growth. We developed a new CRISPR/Cas9 system to edit multiple genes simultaneously. Using this system, we successfully knocked out multiple targets of the PHYTOENE DESATURASE 8 in poplar. We found the mutation rate of our CRISPR/Cas9 system is higher (67.5%) than existing reports in woody trees. We further improved the mutation rate up to 75% at editing sites through the usage of the mannopine synthase (MAS) promoter to drive Cas9. The MAS-CRISPR/Cas9 is an improved genome-editing tool for woody plants with a higher efficiency and a higher mutation rate than currently available technologies.
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