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首页> 外文期刊>Plant Biotechnology Journal >Development of germ‐line‐specific CRISPR‐Cas9 systems to improve the production of heritable gene modifications in Arabidopsis
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Development of germ‐line‐specific CRISPR‐Cas9 systems to improve the production of heritable gene modifications in Arabidopsis

机译:种植特异性CASP-CAS9系统的开发,以改善拟南芥遗传基因修饰的生产

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Summary The Streptococcus -derived CRISPR/Cas9 system is being widely used to perform targeted gene modifications in plants. This customized endonuclease system has two components, the single-guide RNA (sgRNA) for target DNA recognition and the CRISPR-associated protein 9 (Cas9) for DNA cleavage. Ubiquitously expressed CRISPR/Cas9 systems (UC) generate targeted gene modifications with high efficiency but only those produced in reproductive cells are transmitted to the next generation. We report the design and characterization of a germ-line-specific Cas9 system (GSC) for Arabidopsis gene modification in male gametocytes, constructed using a SPOROCYTELESS ( SPL ) genomic expression cassette. Four loci in two endogenous genes were targeted by both systems for comparative analysis. Mutations generated by the GSC system were rare in T1 plants but were abundant (30%) in the T2 generation. The vast majority (70%) of the T2 mutant population generated using the UC system were chimeras while the newly developed GSC system produced only 29% chimeras, with 70% of the T2 mutants being heterozygous. Analysis of two loci in the T2 population showed that the abundance of heritable gene mutations was 37% higher in the GSC system compared to the UC system and the level of polymorphism of the mutations was also dramatically increased with the GSC system. Two additional systems based on germ-line-specific promoters (pDD45-GT and pLAT52-GT) were also tested, and one of them was capable of generating heritable homozygous T1 mutant plants. Our results suggest that future application of the described GSC system will facilitate the screening for targeted gene modifications, especially lethal mutations in the T2 population.
机译:发明内容被广泛用于在植物中进行靶向基因改性的链球菌的CRAPPR / CAS9系统。这种定制的内切核酸酶系统具有两种组分,用于靶DNA识别的单导RNA(SGRNA)和用于DNA裂解的CRISPR相关蛋白质9(CAS9)。普遍地表达CRISPR / CAS9系统(UC)以高效率产生靶向基因修改,但只有在生殖电池中产生的那些被传递到下一代。我们报告了在雄性配子织物中用于拟南芥基因改性的种细菌特异性Cas9系统(GSC)的设计和表征,使用孢子吞γ(SPL)基因组表达盒构成。两个内源基因的四个基因座由两个系统靶向,用于对比较分析。 GSC系统产生的突变在T1植物中罕见,但T2代株中的丰富(30%)。使用UC系统产生的T2突变群的绝大多数(70%)是嵌合体,而新开发的GSC系统仅生产了29%的嵌合体,其中70%的T2突变体是杂合。与UC系统相比,T2人群中两个基因座的分析表明,GSC系统中遗传基因突变的丰度高37%,并且随着GSC系统也显着增加了突变的多态性水平。还测试了基于细菌特异性启动子(PDD45-GT和PLAT52-GT)的两种额外的系统,其中一个能够产生遗传纯合的T1突变植物。我们的结果表明,所描述的GSC系统的未来应用将促进筛查靶向基因修饰,特别是T2群体中的致命突变。

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