Jiang WenZhi, Yang Bing, Weeks Donald P
Department of Biochemistry, University of Nebraska, Lincoln, Nebraska, United States of America.
Department of Genetics, Development and Cell Biology, Iowa State University, Ames, Iowa, United States of America.
PLoS One. 2014 Jun 11;9(6):e99225. doi: 10.1371/journal.pone.0099225. eCollection 2014.
The newly developed CRISPR/Cas9 system for targeted gene knockout or editing has recently been shown to function in plants in both transient expression systems as well as in primary T1 transgenic plants. However, stable transmission of genes modified by the Cas9/single guide RNA (sgRNA) system to the T2 generation and beyond has not been demonstrated. Here we provide extensive data demonstrating the efficiency of Cas9/sgRNA in causing modification of a chromosomally integrated target reporter gene during early development of transgenic Arabidopsis plants and inheritance of the modified gene in T2 and T3 progeny. Efficient conversion of a nonfunctional, out-of-frame GFP gene to a functional GFP gene was confirmed in T1 plants by the observation of green fluorescent signals in leaf tissues as well as the presence of mutagenized DNA sequences at the sgRNA target site within the GFP gene. All GFP-positive T1 transgenic plants and nearly all GFP-negative plants examined contained mutagenized GFP genes. Analyses of 42 individual T2 generation plants derived from 6 different T1 progenitor plants showed that 50% of T2 plants inherited a single T-DNA insert. The efficiency of the Cas9/sgRNA system and stable inheritance of edited genes point to the promise of this system for facile editing of plant genes.
最近开发的用于靶向基因敲除或编辑的CRISPR/Cas9系统,已被证明在瞬时表达系统以及初级T1转基因植物中均能在植物中发挥作用。然而,由Cas9/单向导RNA(sgRNA)系统修饰的基因向T2代及以后的稳定遗传尚未得到证实。在此,我们提供了大量数据,证明了Cas9/sgRNA在转基因拟南芥植物早期发育过程中对染色体整合的靶报告基因进行修饰以及修饰基因在T2和T3后代中的遗传效率。通过观察叶片组织中的绿色荧光信号以及GFP基因内sgRNA靶位点处诱变DNA序列的存在,在T1植物中证实了无功能的、框外GFP基因向功能性GFP基因的有效转化。所有检测的GFP阳性T1转基因植物和几乎所有GFP阴性植物都含有诱变的GFP基因。对来自6个不同T1祖代植物的42株T2代个体植物的分析表明,50%的T2植物继承了单个T-DNA插入片段。Cas9/sgRNA系统的效率和编辑基因的稳定遗传表明该系统在植物基因的便捷编辑方面具有前景。