Cas9-PE:一种强大的多重基因编辑工具,可同时对水稻进行精确编辑和特定位点随机突变。

IF 14.3 1区 工程技术 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Trends in biotechnology Pub Date : 2024-11-12 DOI:10.1016/j.tibtech.2024.10.012
Jinpeng Zou, Xiangbing Meng, Zhengyuan Hong, Yuchun Rao, Kejian Wang, Jiayang Li, Hong Yu, Chun Wang
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引用次数: 0

摘要

在分子设计育种中,要通过特定的核苷酸修饰同时引入所需的功能基因,并消除调控不良表型性状或农艺成分的基因,需要先进的基因编辑工具。由于编辑效率有限,即使使用质粒编辑(PE)等高精度编辑工具,同时编辑多种突变类型也是一项挑战。在这里,我们用Cas9取代了Cas9缺口酶(nCas9),在水稻中构建了一个Cas9介导的PE(Cas9-PE)系统。该系统不仅能进行精确编辑,还能进行特定位点的随机突变。此外,利用 Cas9-PE 的精确性,我们采用联合编辑策略建立了无转基因的多重基因编辑系统。该策略涉及农杆菌介导的精确编辑水稻内源乙酰乳酸合成酶基因 ALSS627I 的瞬时表达,以赋予除草剂双草醚(BS)抗性作为选择标记。这项研究为分子设计育种提供了一种多功能、高效的多重基因编辑工具。
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Cas9-PE: a robust multiplex gene editing tool for simultaneous precise editing and site-specific random mutation in rice.

In molecular design breeding, the simultaneous introduction of desired functional genes through specific nucleotide modifications and the elimination of genes regulating undesired phenotypic traits or agronomic components require advanced gene editing tools. Due to limited editing efficiency, even with the use of highly precise editing tools, such as prime editing (PE), simultaneous editing of multiple mutation types poses a challenge. Here, we replaced Cas9 nickase (nCas9) with Cas9 to construct a Cas9-mediated PE (Cas9-PE) system in rice. This system not only enables precise editing, but also allows for site-specific random mutation. Moreover, leveraging the precision of Cas9-PE, we established a transgene-free multiplex gene editing system using a co-editing strategy. This strategy involved the Agrobacterium-mediated transient expression of the precise editing rice endogenous acetolactate synthase gene ALSS627I to confer herbicide bispyribac-sodium (BS) resistance as a selection marker. This study provides a versatile and efficient multiplex gene editing tool for molecular design breeding.

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来源期刊
Trends in biotechnology
Trends in biotechnology 工程技术-生物工程与应用微生物
CiteScore
28.60
自引率
1.20%
发文量
198
审稿时长
1 months
期刊介绍: Trends in Biotechnology publishes reviews and perspectives on the applied biological sciences, focusing on useful science applied to, derived from, or inspired by living systems. The major themes that TIBTECH is interested in include: Bioprocessing (biochemical engineering, applied enzymology, industrial biotechnology, biofuels, metabolic engineering) Omics (genome editing, single-cell technologies, bioinformatics, synthetic biology) Materials and devices (bionanotechnology, biomaterials, diagnostics/imaging/detection, soft robotics, biosensors/bioelectronics) Therapeutics (biofabrication, stem cells, tissue engineering and regenerative medicine, antibodies and other protein drugs, drug delivery) Agroenvironment (environmental engineering, bioremediation, genetically modified crops, sustainable development).
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