首页> 美国卫生研究院文献>International Journal of Molecular Sciences >CRISPR/Cas9-Mediated Multiplex Genome Editing of the BnWRKY11 and BnWRKY70 Genes in Brassica napus L.
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CRISPR/Cas9-Mediated Multiplex Genome Editing of the BnWRKY11 and BnWRKY70 Genes in Brassica napus L.

机译:CRISPR / Cas9介导的甘蓝型油菜BnWRKY11和BnWRKY70基因多重基因组编辑。

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摘要

Targeted genome editing is a desirable means of basic science and crop improvement. The clustered, regularly interspaced, palindromic repeat (CRISPR)/Cas9 (CRISPR-associated 9) system is currently the simplest and most commonly used system in targeted genomic editing in plants. Single and multiplex genome editing in plants can be achieved under this system. In Arabidopsis, AtWRKY11 and AtWRKY70 genes were involved in JA- and SA-induced resistance to pathogens, in rapeseed (Brassica napus L.), BnWRKY11 and BnWRKY70 genes were found to be differently expressed after inoculated with the pathogenic fungus, Sclerotinia sclerotiorum (Lib.) de Bary. In this study, two Cas9/sgRNA constructs targeting two copies of BnWRKY11 and four copies of BnWRKY70 were designed to generate BnWRKY11 and BnWRKY70 mutants respectively. As a result, twenty-two BnWRKY11 and eight BnWRKY70 independent transformants (T0) were obtained, with the mutation ratios of 54.5% (12/22) and 50% (4/8) in BnWRKY11 and BnWRKY70 transformants respectively. Eight and two plants with two copies of mutated BnWRKY11 and BnWRKY70 were obtained respectively. In T1 generation of each plant examined, new mutations on target genes were detected with high efficiency. The vast majority of BnWRKY70 mutants showed editing in three copies of BnWRKY70 in examined T1 plants. BnWRKY70 mutants exhibited enhanced resistance to Sclerotinia, while BnWRKY11 mutants showed no significant difference in Sclerotinia resistance when compared to non-transgenic plants. In addition, plants that overexpressed BnWRKY70 showed increased sensitivity when compared to non-transgenic plants. Altogether, our results demonstrated that BnWRKY70 may function as a regulating factor to negatively control the Sclerotinia resistance and CRISPR/Cas9 system could be used to generate germplasm in B. napus with high resistance against Sclerotinia.
机译:靶向基因组编辑是基础科学和作物改良的理想手段。簇状,规则间隔的回文重复(CRISPR)/ Cas9(CRISPR相关9)系统目前是植物靶向基因组编辑中最简单,最常用的系统。在该系统下可以实现植物中单基因组和多重基因组的编辑。在拟南芥中,AtWRKY11和AtWRKY70基因参与了JA和SA诱导的病原体抗性,在油菜(甘蓝型油菜)中,BnWRKY11和BnWRKY70基因在接种病原性真菌菌核盘菌(Sclerototinia sclerotiorum,Lib)后表达不同。 。)de Bary。在这项研究中,针对两个副本BnWRKY11和四个副本BnWRKY70的两个Cas9 / sgRNA构建体被设计为分别生成BnWRKY11和BnWRKY70突变体。结果,获得了二十二个BnWRKY11和八个BnWRKY70独立转化子(T0),在BnWRKY11和BnWRKY70转化子中的突变率分别为54.5%(12/22)和50%(4/8)。分别获得了八株和两株带有两个拷贝的BnWRKY11和 BnWRKY70 突变的植物。在所检查的每种植物的T1代中,高效检测靶基因上的新突变。在检测的T1植物中,绝大多数 BnWRKY70 突变体显示出三个拷贝的 BnWRKY70 编辑。与非突变菌相比, BnWRKY70 突变体对菌核菌的抵抗力增强,而 BnWRKY11 突变体对菌核菌的抵抗力无明显差异。 -转基因植物。另外,与非转基因植物相比,过表达 BnWRKY70 的植物显示出更高的敏感性。总之,我们的结果表明, BnWRKY70 可能是负调控 Sclerotinia 抗性的调节因子,而CRISPR / Cas9系统可用于产生 B的种质。对油菜菌核病具有高抗性的甘蓝型油菜。

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