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通过小麦小孢子的生殖孔微注射 CRISPR/Cas9 编辑系统可诱导靶标 Ms2 基因发生突变。

Microinjection of the CRISPR/Cas9 editing system through the germ pore of a wheat microspore induces mutations in the target Ms2 gene.

机构信息

Institute of Biology, Department of Genetics, Breeding and Plant Biotechnology, Warsaw University of Life Sciences (SGGW), Nowoursynowska 166 St, Warsaw, 02-787, Poland.

出版信息

Mol Biol Rep. 2024 Jun 1;51(1):706. doi: 10.1007/s11033-024-09644-w.

Abstract

BACKGROUND

Microinjection is a direct procedure for delivering various compounds via micropipette into individual cells. Combined with the CRISPR/Cas9 editing technology, it has been used to produce genetically engineered animal cells. However, genetic micromanipulation of intact plant cells has been a relatively unexplored area of research, partly due to the cytological characteristics of these cells. This study aimed to gain insight into the genetic micromanipulation of wheat microspores using microinjection procedures combined with the CRISPR/Cas9 editing system targeting the Ms2 gene.

METHODS AND RESULTS

Microspores were first reprogrammed by starvation and heat shock treatment to make them structurally suitable for microinjection. The large central vacuole was fragmented and the nucleus with cytoplasm was positioned in the center of the cell. This step and an additional maltose gradient provided an adequate source of intact single cells in the three wheat genotypes. The microcapillary was inserted into the cell through the germ pore to deliver a working solution with a fluorescent marker. This procedure was much more efficient and less harmful to the microspore than inserting the microcapillary through the cell wall. The CRISPR/Cas9 binary vectors injected into reprogrammed microspores induced mutations in the target Ms2 gene with deletions ranging from 1 to 16 bp.

CONCLUSIONS

This is the first report of successful genome editing in an intact microspore/wheat cell using the microinjection technique and the CRISPR/Cas9 editing system. The study presented offers a range of molecular and cellular biology tools that can aid in genetic micromanipulation and single-cell analysis.

摘要

背景

显微注射是一种通过微量移液器将各种化合物直接注入单个细胞的方法。与 CRISPR/Cas9 编辑技术结合使用,它已被用于生产基因工程动物细胞。然而,完整植物细胞的遗传微操作一直是一个相对未被探索的研究领域,部分原因是这些细胞的细胞学特征。本研究旨在通过显微注射程序与靶向 Ms2 基因的 CRISPR/Cas9 编辑系统相结合,深入了解小麦小孢子的遗传微操作。

方法和结果

首先通过饥饿和热休克处理重新编程小孢子,使它们的结构适合于显微注射。大中央液泡被碎片化,带有细胞质的核位于细胞中心。这一步骤和额外的麦芽糖梯度为三种小麦基因型中完整的单细胞提供了充足的来源。微毛细管通过生殖孔插入细胞,输送带有荧光标记的工作溶液。与通过细胞壁插入微毛细管相比,该过程对小孢子的效率更高,危害更小。注入重新编程小孢子的 CRISPR/Cas9 二元载体在靶 Ms2 基因中诱导了 1 至 16 个碱基对的缺失突变。

结论

这是首次使用显微注射技术和 CRISPR/Cas9 编辑系统在完整的小孢子/小麦细胞中成功进行基因组编辑的报道。本研究提供了一系列分子和细胞生物学工具,可用于遗传微操作和单细胞分析。

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