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Genome Engineering of Crops with Designer Nucleases

机译:带有设计核酸酶的农作物基因组工程

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Recent advances in the field of genome engineering indicate that it will soon be routine to make site-directed modifications to the genomes of crop species, including targeted mutations, gene insertions, and gene replacements. This new technology will be used to help elucidate gene function and develop new and valuable traits. Key to enabling site-directed genome modifications are sequence-specific nucleases that generate targeted double-stranded DNA breaks in genes of interest. To date, three different sequence-specific nuclease systems have been used in crop plants: zinc finger nucleases, transcription activator-like effector nucleases (TALENs), and LAGLIDADG homing endonucleases, also termed “meganucleases.” In this review, we report on the current state of genome engineering in crop plants, comparing the different nuclease and gene delivery systems. We also consider some of the limitations that nuclease-mediated crop improvement technologies may encounter.
机译:基因组工程领域的最新进展表明,将很快对作物基因组进行定点修饰,包括定向突变,基因插入和基因置换。这项新技术将用于帮助阐明基因功能并开发新的有价值的性状。启用定点基因组修饰的关键是序列特异性核酸酶,该酶可在目标基因中产生靶向的双链DNA断裂。迄今为止,已在作物中使用了三种不同的序列特异性核酸酶系统:锌指核酸酶,转录激活子样效应核酸酶(TALEN)和LAGLIDADG归巢核酸内切酶,也称为“大范围核酸酶”。在这篇综述中,我们报告了农作物中基因组工程的当前状态,比较了不同的核酸酶和基因传递系统。我们还考虑了核酸酶介导的作物改良技术可能会遇到的一些局限性。

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