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True gene-targeting events by CRISPR/Cas-induced DSB repair of the PPO locus with an ectopically integrated repair template

机译:通过CRISPR / Cas诱导的异位整合修复模板对PPO基因座进行DSB修复实现真正的基因靶向事件

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摘要

In recent years, several tools have become available for improved gene-targeting (GT) in plants. DNA breaks at specific sites activate local DNA repair and recombination, including recombination with ectopic sequences leading to GT. Large-scale transformation with the repair template can be avoided by pre-insertion of the repair template in the genome and liberation by sequence-specific nucleases (in planta GT procedure). Here, we tested whether release of the repair template was required for GT. Plants were transformed with constructs encoding a CRISPR/Cas nuclease with a recognition site in the endogenous PPO gene and a repair template harboring a 5′ truncated PPO gene with two amino acid substitutions rendering the enzyme insensitive to the herbicide butafenacil. Selection resulted in so-called true GT events, repaired via homologous recombination at both ends of the gene and transmitted to the next generation. As the template was surrounded by geminiviral LIR sequences, we also tested whether replication of the template could be induced by crossing-in an integrated geminivirus REP gene. However, we could not find evidence for repair template replication by REP and we obtained similar numbers of GT events in these plants. Thus, GT is possible without any further processing of the pre-inserted repair template.
机译:近年来,有几种工具可用于改善植物中的基因靶向(GT)。在特定位点的DNA断裂激活了局部DNA修复和重组,包括与导致GT的异位序列的重组。可以通过在基因组中预先插入修复模板并通过序列特异性核酸酶释放来避免使用修复模板进行大规模转化(在planta GT程序中)。在这里,我们测试了GT是否需要发布修复模板。用编码CRISPR / Cas核酸酶的构建体转化植物,所述CRISPR / Cas核酸酶在内源性PPO基因中具有识别位点,并且修复模板包含带有两个氨基酸取代的5'截短的PPO基因,使该酶对除草剂丁苯那西不敏感。选择产生了所谓的真正的GT事件,该事件通过基因两端的同源重组修复,并传递给下一代。由于模板被双生病毒LIR序列包围,我们还测试了是否可以通过整合整合的双生病毒REP基因来诱导模板的复制。但是,我们找不到通过REP复制修复模板的证据,并且在这些植物中获得了相似数量的GT事件。因此,无需对预插入的修复模板进行任何进一步处理,即可实现GT。

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