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Efficient generation of mutations mediated by CRISPR/Cas9 in the hairy root transformation system of Brassica carinata

机译:在油菜毛状根转化系统中由CRISPR / Cas9介导的突变的高效生成

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摘要

A protocol for the induction of site-directed deletions and insertions in the genome of Brassica carinata with CRISPR is described. The construct containing the Cas9 nuclease and the guide RNA (gRNA) was delivered by the hairy root transformation technique, and a successful transformation was monitored by GFP fluorescence. PAGE analysis of an amplified region, presumably containing the deletions and insertions, demonstrated up to seven different indels in one transgenic root and in all analyzed roots a wildtype allele of the modified gene was not detectable. Interestingly, many of these mutations consisted of relatively large indels with up to 112 bp. The exact size of the deletions was determined to allow an estimation whether the targeted gene was not functional due to a considerable deletion or a frame shift within the open reading frame. This allowed a direct phenotypic assessment of the previously characterized roots and, in fact, deletions in FASCICLIN-LIKE ARABINOGALACTAN PROTEIN 1 (BcFLA1)–a gene with an expression pattern consistent with a role in root hair architecture–resulted in shorter root hairs compared to control roots ectopically expressing an allele of the gene that cannot be targeted by the gRNA in parallel to the CRISPR construct. As an additional line of evidence, we monitored BcFLA1 expression with qPCR and detected a significant reduction of the transcript in roots with an active CRISPR construct compared to the control, although residual amounts of the transcript were detected, possibly due to inefficient nonsense-mediated mRNA decay. Additionally, the presence of deletions and insertions were verified by Sanger sequencing of the respective amplicons. In summary we demonstrate the successful application of CRISPR/Cas9 in hairy roots of B. carinata, the proof of its effectiveness and its effect on the root hair phenotype. This study paves the way for experimental strategies involving the phenotypic assessment of gene lesions by CRISPR which do not require germline transmission.
机译:描述了一种使用CRISPR诱导芸苔属基因组中定点缺失和插入的方案。通过毛状根转化技术递送包含Cas9核酸酶和向导RNA(gRNA)的构建体,并通过GFP荧光监测成功的转化。可能包含缺失和插入的扩增区域的PAGE分析表明,在一个转基因根中最多有七个不同的indel,在所有分析的根中均未检测到修饰基因的野生型等位基因。有趣的是,这些突变中有许多是由相对较大的插入缺失组成,最高可达112 bp。确定缺失的确切大小,以允许估计靶基因是否由于显着缺失或开放阅读框中的移码而不起作用。这使得可以对先前鉴定过的根进行直接表型评估,事实上,可以鉴定出FASCICLIN-like阿拉伯藻糖蛋白1(BcFLA1)的缺失,该基因的表达模式与根毛结构中的作用一致,导致根毛较短。异位表达根基因的等位基因,不能与CRISPR构建体平行地被gRNA靶向。作为补充证据,我们用qPCR监测了BcFLA1的表达,并检测到与对照组相比,具有活性CRISPR构建物的根中转录本明显减少,尽管检测到了转录本的残留量,这可能是由于无效的无义介导的mRNA所致衰变。另外,通过相应扩增子的Sanger测序验证缺失和插入的存在。总而言之,我们证明了CRISPR / Cas9在B. carinata毛状根中的成功应用,证明了其有效性及其对根毛表型的影响。该研究为不需要通过种系传递的CRISPR基因损伤的表型评估实验策略铺平了道路。

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