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CRISPR/Cas 介导的植物基因靶向:同源重组终于迎来了转机。

CRISPR/Cas-mediated gene targeting in plants: finally a turn for the better for homologous recombination.

机构信息

Botanical Institute II, Karlsruhe Institute of Technology, POB 6980, 76049, Karlsruhe, Germany.

出版信息

Plant Cell Rep. 2019 Apr;38(4):443-453. doi: 10.1007/s00299-019-02379-0. Epub 2019 Jan 23.

Abstract

We summarize recent progress of CRISPR/Cas9-mediated gene targeting in plants, provide recommendations for designing gene-targeting vectors and highlight the potential of new technologies applicable to plants. Gene targeting (GT) is a tool of urgent need for plant biotechnology and breeding. It is based on homologous recombination that is able to precisely introduce desired modifications within a target locus. However, its low efficiency in higher plants is a major barrier for its application. Using site-specific nucleases, such as the recent CRISPR/Cas system, GT has become applicable in plants, via the induction of double-strand breaks, although still at a too low efficiency for most practical applications in crops. Recently, a variety of promising new improvements regarding the efficiency of GT has been reported by several groups. It turns out that GT can be enhanced by cell-type-specific expression of Cas nucleases, by the use of self-amplified GT-vector DNA or by manipulation of DNA repair pathways. Here, we highlight the most recent progress of GT in plants. Moreover, we provide suggestions on how to use the technology efficiently, based on the mechanisms of DNA repair, and highlight several of the newest GT strategies in yeast or mammals that are potentially applicable to plants. Using the full potential of GT technology will definitely help us pave the way in enhancing crop yields and food safety for an ecologically friendly agriculture.

摘要

我们总结了 CRISPR/Cas9 介导的植物基因靶向的最新进展,为基因靶向载体的设计提供了建议,并强调了适用于植物的新技术的潜力。基因靶向(GT)是植物生物技术和育种的迫切需要的工具。它基于同源重组,能够在靶标基因座内精确引入所需的修饰。然而,其在高等植物中的低效率是其应用的主要障碍。使用诸如最近的 CRISPR/Cas 系统等定点核酸酶,通过诱导双链断裂,GT 已经可以在植物中应用,尽管对于大多数作物的实际应用来说,效率仍然太低。最近,几个研究小组报告了关于 GT 效率的各种有前途的新改进。事实证明,通过 Cas 核酸酶的细胞类型特异性表达、使用自我扩增的 GT 载体 DNA 或通过操纵 DNA 修复途径可以增强 GT。在这里,我们强调了 GT 在植物中的最新进展。此外,我们根据 DNA 修复机制提供了如何有效使用该技术的建议,并强调了在酵母或哺乳动物中可能适用于植物的几种最新 GT 策略。充分利用 GT 技术肯定有助于我们为生态友好型农业提高作物产量和食品安全铺平道路。

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