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利用 piggyBac 介导的转基因系统在水稻中瞬时表达 CRISPR/Cas9。

A piggyBac-mediated transgenesis system for the temporary expression of CRISPR/Cas9 in rice.

机构信息

Plant Genome Engineering Research Unit, Institute of Agrobiological Sciences, National Agriculture and Food research Organization (NARO), Tsukuba, Japan.

Japan Science and Technology Agency (JST), Precursory Research for Embryonic Science and Technology (PRESTO), Kawaguchi, Japan.

出版信息

Plant Biotechnol J. 2021 Jul;19(7):1386-1395. doi: 10.1111/pbi.13559. Epub 2021 Feb 23.

Abstract

Targeted mutagenesis via CRISPR/Cas9 is now widely used, not only in model plants but also in agriculturally important crops. However, in vegetative crop propagation, CRISPR/Cas9 expression cassettes cannot be segregated out in the resulting progenies, but must nevertheless be eliminated without leaving unnecessary sequences in the genome. To this end, we designed a piggyBac-mediated transgenesis system for the temporary expression of CRISPR/Cas9 in plants. This system allows integration into the host genome of piggyBac carrying both CRISPR/Cas9 and positive selection marker expression cassettes from an extrachromosomal double-stranded transfer DNA (dsT-DNA), with subsequent excision of the transgenes by the re-transposition of piggyBac from the host genome after successful induction of targeted mutagenesis via CRISPR/Cas9. Here, we demonstrate that the transgenesis system via piggyBac transposition from T-DNA works to deliver transgenes in rice. Following positive-negative selection to exclude transgenic cells randomly transformed with T-DNA, piggyBac-mediated transgenesis from the extrachromosomal dsT-DNA was successful in ca. 1% of transgenic callus lines. After temporary expression of CRISPR/Cas9 within piggyBac, we confirmed, in a proof-of-concept experiment, that piggyBac could be excised precisely from the genome via the stably transformed transposase PBase. Even after excision of piggyBac, CRISPR/Cas9-induced targeted mutations could be detected in the endogenous gene in regenerated rice plants. These results suggest that our piggyBac-mediated transgenesis system will be a valuable tool in establishing efficient CRISPR/Cas9-mediated targeted mutagenesis in vegetatively propagated crops.

摘要

通过 CRISPR/Cas9 的靶向诱变现在被广泛应用,不仅在模式植物中,而且在农业上重要的作物中也是如此。然而,在营养繁殖作物的繁殖中,CRISPR/Cas9 表达盒不能在产生的后代中分离出来,但必须在不留下基因组中不必要序列的情况下消除。为此,我们设计了一个基于 piggyBac 的转基因系统,用于植物中 CRISPR/Cas9 的临时表达。该系统允许将携带 CRISPR/Cas9 和正选择标记表达盒的 piggyBac 整合到宿主基因组中,来自于额外染色体的双链转移 DNA(dsT-DNA),随后通过 CRISPR/Cas9 靶向诱变成功诱导后,piggyBac 从宿主基因组中的再转位来切除转基因。在这里,我们证明了通过 piggyBac 转座从 T-DNA 传递转基因在水稻中的作用。在通过正-负选择排除随机转化 T-DNA 的转基因细胞后,来自额外染色体 dsT-DNA 的 piggyBac 介导的转基因在大约 1%的转基因愈伤组织系中成功。在 piggyBac 内临时表达 CRISPR/Cas9 后,我们在一个概念验证实验中证实,piggyBac 可以通过稳定转化的转座酶 PBase 从基因组中精确切除。即使在 piggyBac 切除后,也可以在再生水稻植物的内源基因中检测到 CRISPR/Cas9 诱导的靶向突变。这些结果表明,我们的基于 piggyBac 的转基因系统将成为在营养繁殖作物中建立高效 CRISPR/Cas9 介导的靶向诱变的有价值的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b617/11386099/aca6f3faa498/PBI-19-1386-g004.jpg

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