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Heritable site-specific mutagenesis using TALENs in maize

机译:使用玉米Talens的遗传位点特异性诱变

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摘要

Transcription activator-like effector nuclease (TALEN) technology has been utilized widely for targeted gene mutagenesis, especially for gene inactivation, in many organisms, including agriculturally important plants such as rice, wheat, tomato and barley. This report describes application of this technology to generate heritable genome modifications in maize. TALENs were employed to generate stable, heritable mutations at the maize g lossy2 ( gl2 ) locus. Transgenic lines containing mono- or di-allelic mutations were obtained from the maize genotype Hi-II at a frequency of about 10% (nine mutated events in 91 transgenic events). In addition, three of the novel alleles were tested for function in progeny seedlings, where they were able to confer the glossy phenotype. In a majority of the events, the integrated TALEN T-DNA segregated independently from the new loss of function alleles, producing mutated null-segregant progeny in T1 generation. Our results demonstrate that TALENs are an effective tool for genome mutagenesis in maize, empowering the discovery of gene function and the development of trait improvement.
机译:转录活化剂样效应核酸酶(Talen)技术已广泛用于靶向基因诱变,特别是对于许多生物体,包括基因灭活,包括农业上重要的植物,如米饭,小麦,番茄和大麦。本报告描述了该技术在玉米中产生遗传基因组修饰。在玉米G损失2(GL2)基因座中,缩少用于产生稳定的,遗传突变。含有单或二等突变的转基因株,从玉米基因型Hi-II获得,其频率为约10%(91例转基因事件中的九次突变事件)。此外,在后代幼苗中测试了三种新的等位基因,它们能够赋予光泽表型。在大多数事件中,集成的TALEN T-DNA独立地从新的功能等位基因丧失中间隔离,在T1代时产生突变的零偏析后代。我们的结果表明,Talens是玉米基因组诱变的有效工具,赋予基因功能的发现和特质改善的发展。

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