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Genome engineering via TALENs and CRISPR/Cas9 systems: challenges and perspectives

机译:通过Talens和Crispr / Cas9系统的基因组工程:挑战和观点

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The ability to precisely modify genome sequence and regulate gene expression patterns in a site-specific manner holds much promise in plant biotechnology. Genome-engineering technologies that enable such highly specific and efficient modification are advancing with unprecedented pace. Transcription activator-like effectors (TALEs) provide customizable DNA-binding modules designed to bind to any sequence of interest. Thus, TALEs have been used as a DNA targeting module fused to functional domains for a variety of targeted genomic and epigenomic modifications. TALE nucleases (TALENs) have been used with much success across eukaryotic species to edit genomes. Recently, clustered regularly interspaced palindromic repeats (CRISPRs) that are used as guide RNAs for Cas9 nuclease-specific digestion has been introduced as a highly efficient DNA-targeting platform for genome editing and regulation. Here, we review the discovery, development and limitations of TALENs and CRIPSR/Cas9 systems as genome-engineering platforms in plants. We discuss the current questions, potential improvements and the development of the next-generation genome-editing platforms with an emphasis on producing designer plants to address the needs of agriculture and basic plant biology.
机译:精确修饰基因组序列和调节基因表达模式以特定于特别的方式调节基因表达模式的能力在植物生物技术中具有许多希望。能够实现这种高度具体和高效的修改的基因组工程技术正在推进前所未有的速度。转录激活剂样效果(故事)提供可定制的DNA绑定模块,该模块设计用于与任何感兴趣的序列结合。因此,已经用作融合到各种靶向基因组和表观胶质修饰的功能结构域的DNA靶向模块。故事核酸酶(Talens)已经在真核生物中使用了众多成功,以编辑基因组。最近,已经将使用作为Cas9核酸酶特异性消化的指导RNA的聚类定期间隙的响尾蛇重复(CRISPRS)作为基因组编辑和调节的高效DNA靶向平台。在这里,我们审查了Talens和CRIPSR / CAS9系统作为植物的基因组工程平台的发现,开发和限制。我们讨论了目前的问题,潜在的改进和开发下一代基因组编辑平台,重点是生产设计师工厂,以满足农业和基础植物生物学的需求。

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