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Improvements of TKC Technology Accelerate Isolation of Transgene-Free CRISPR/Cas9-Edited Rice Plants

机译:TKC技术的改进加速了无转基因CRISPR / Cas9编辑的水稻植株的分离

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Elimination of the CRISPR/Cas9 constructs in edited plants is a prerequisite for assessing genetic stability, conducting phenotypic characterization, and applying for commercialization of the plants. However, removal of the CRISPR/Cas9 transgenes by genetic segregation and by backcross is laborious and time consuming. We previously reported the development of the transgene killer CRISPR (TKC) technology that uses a pair of suicide genes to trigger self-elimination of the transgenes without compromising gene editing efficiency. The TKC technology enables isolation of transgene-free CRISPR-edited plants within a single generation, greatly accelerating crop improvements. Here, we presented two new TKC vectors that show great efficiency in both editing the target gene and in undergoing self-elimination of the transgenes. The new vectors replaced the CaMV35S promoter used in our previous TKC vector with two rice promoters to drive one of the suicide genes, providing advantages over our previous TKC vector under certain conditions. The vectors reported here offered more options and flexibility to conduct gene editing experiments in rice.
机译:消除已编辑植物中的CRISPR / Cas9构建体是评估遗传稳定性,进行表型表征并申请植物商业化的先决条件。然而,通过遗传分离和回交去除CRISPR / Cas9转基因既费力又费时。我们之前曾报道过转基因杀手CRISPR(TKC)技术的开发,该技术使用一对自杀基因触发转基因的自我消除,而不会影响基因编辑效率。 TKC技术可在单代中分离出无转基因的CRISPR编辑的植物,从而极大地促进了作物的改良。在这里,我们介绍了两个新的TKC载体,它们在编辑目标基因和进行自我消除转基因方面均显示出极大的效率。新载体用两个水稻启动子取代了我们先前的TKC载体中使用的CaMV35S启动子,以驱动一个自杀基因,在某些条件下提供了优于我们先前的TKC载体的优势。本文报道的载体为水稻基因编辑实验提供了更多选择和灵活性。

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