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Advances in Engineering the Fly Genome with the CRISPR-Cas System

机译:用CRISPR-CAS系统将工程苍蝇基因组进展

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摘要

Drosophila has long been a premier model for the development and application of cutting-edge genetic approaches. The CRISPR-Cas system now adds the ability to manipulate the genome with ease and precision, providing a rich toolbox to interrogate relationships between genotype and phenotype, to delineate and visualize how the genome is organized, to illuminate and manipulate RNA, and to pioneer new gene drive technologies. Myriad transformative approaches have already originated from the CRISPR-Cas system, which will likely continue to spark the creation of tools with diverse applications. Here, we provide an overview of how CRISPR-Cas gene editing has revolutionized genetic analysis in Drosophila and highlight key areas for future advances.
机译:果蝇长期以来一直是开发和应用尖端遗传方法的首要模型。 CRISPR-CAS系统现在增加了能够轻松和精确地操纵基因组的能力,提供富有的工具箱,以询问基因型和表型之间的关系,以描绘和可视化基因组的组织方式,以照亮和操纵RNA,并开拓新的 基因驱动技术。 无数的转型方法已经源自CRISPR-CAS系统,这可能会继续引发具有多样化应用的工具。 在这里,我们概述了CRISPR-CAS基因编辑如何在果蝇中彻底改变遗传分析,并突出了未来进展的关键领域。

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