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An Effective Strategy for Reliably Isolating Heritable and Cas9-Free Arabidopsis Mutants Generated by CRISPR/Cas9-Mediated Genome Editing

机译:可靠地分离由CRISPR / Cas9介导的基因组编辑产生的可遗传和无Cas9的拟南芥突变体的有效策略

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摘要

Mutations generated by CRISPR/Cas9 in Arabidopsis (Arabidopsis thaliana) are often somatic and are rarely heritable. Isolation of mutations in Cas9-free Arabidopsis plants can ensure the stable transmission of the identified mutations to next generations, but the process is laborious and inefficient. Here, we present a simple visual screen for Cas9-free T2 seeds, allowing us to quickly obtain Cas9-free Arabidopsis mutants in the T2 generation. To demonstrate this in principle, we targeted two sites in the AUXIN-BINDING PROTEIN1 (ABP1) gene, whose function as a membrane-associated auxin receptor has been challenged recently. We obtained many T1 plants with detectable mutations near the target sites, but only a small fraction of T1 plants yielded Cas9-free abp1 mutations in the T2 generation. Moreover, the mutations did not segregate in Mendelian fashion in the T2 generation. However, mutations identified in the Cas9-free T2 plants were stably transmitted to the T3 generation following Mendelian genetics. To further simplify the screening procedure, we simultaneously targeted two sites in ABP1 to generate large deletions, which can be easily identified by PCR. We successfully generated two abp1 alleles that contained 1,141- and 711-bp deletions in the ABP1 gene. All of the Cas9-free abp1 alleles we generated were stable and heritable. The method described here allows for effectively isolating Cas9-free heritable CRISPR mutants in Arabidopsis.
机译:拟南芥(Arabidopsis thaliana)中CRISPR / Cas9产生的突变通常是体细胞性的,很少可遗传。在无Cas9的拟南芥植物中分离突变可确保将鉴定出的突变稳定地传递给下一代,但该过程费力且效率低下。在这里,我们为无Cas9的T2种子提供了一个简单的可视屏幕,使我们能够在T2代中快速获得无Cas9的拟南芥突变体。为了从原理上证明这一点,我们针对AUXIN-BINDING PROTEIN1(ABP1)基因中的两个位点进行了研究,该基因的功能与膜相关的生长素受体最近受到了挑战。我们获得了许多在目标位点附近具有可检测到的突变的T1植物,但是只有一小部分T1植物在T2世代中产生了不含Cas9的abp1突变。此外,在T2代中,突变并未以孟德尔方式分离。但是,在遵循孟德尔遗传学原理后,在无Cas9的T2植物中鉴定出的突变被稳定地传递给T3世代。为了进一步简化筛选程序,我们同时针对了ABP1中的两个位点以产生大的缺失,可以通过PCR轻松鉴定。我们成功地生成了两个abp1等位基因,它们在ABP1基因中包含1,141-和711-bp的缺失。我们生成的所有无Cas9的abp1等位基因都是稳定且可遗传的。本文所述方法可有效分离拟南芥中无Cas9的可遗传CRISPR突变体。

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