INSA, UPS, INP, LISBP, Université de Toulouse, 135 Avenue de Rangueil, F-31077, Toulouse, France.
INRA, LISBP, UMR792, 135 Avenue de Rangueil, F-31077, Toulouse, France.
Nat Commun. 2018 Sep 25;9(1):3924. doi: 10.1038/s41467-018-06378-9.
Recently developed transgenic techniques to explore and exploit the metabolic potential of microalgae present several drawbacks associated with the delivery of exogenous DNA into the cells and its subsequent integration at random sites within the genome. Here, we report a highly efficient multiplex genome-editing method in the diatom Phaeodactylum tricornutum, relying on the biolistic delivery of CRISPR-Cas9 ribonucleoproteins coupled with the identification of two endogenous counter-selectable markers, PtUMPS and PtAPT. First, we demonstrate the functionality of RNP delivery by positively selecting the disruption of each of these genes. Then, we illustrate the potential of the approach for multiplexing by generating double-gene knock-out strains, with 65% to 100% efficiency, using RNPs targeting one of these markers and PtAureo1a, a photoreceptor-encoding gene. Finally, we created triple knock-out strains in one step by delivering six RNP complexes into Phaeodactylum cells. This approach could readily be applied to other hard-to-transfect organisms of biotechnological interest.
最近开发的用于探索和利用微藻代谢潜力的转基因技术存在一些缺点,这些缺点与将外源 DNA 递送到细胞内及其随后随机整合到基因组中的各个位置有关。在这里,我们报告了一种在菱形藻中进行高效多重基因组编辑的方法,该方法依赖于生物弹道法递送 CRISPR-Cas9 核糖核蛋白,并结合了两个内源性可选择标记物 PtUMPS 和 PtAPT 的鉴定。首先,我们通过阳性选择这些基因的每一个的破坏来证明 RNP 递送的功能。然后,我们通过使用针对这些标记物之一和光受体编码基因 PtAureo1a 的 RNP 靶向,以 65% 至 100%的效率,说明了该方法用于多重基因敲除的潜力。最后,我们通过将六个 RNP 复合物递送到菱形藻细胞中一步创建了三基因敲除株。这种方法可以很容易地应用于其他具有生物技术意义的难转染的生物体。