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利用CRISPR/Cas9辅助的重组工程在根癌农杆菌C58中进行高效基因组工程。

Efficient genome engineering in Agrobacterium tumefaciens C58 using recombineering assisted by CRISPR/Cas9.

作者信息

Gao Shiqing, Wang Xiuling, Yang Runyu, Bian Zhilong, Yong Daojing, Xu Shouying, Huo Liujie, Tu Qiang, Zhang Youming, Fu Jun, Li Ruijuan

机构信息

State Key Laboratory of Microbial Technology, Shandong University, Qingdao, Shandong, China.

State Key Laboratory of Microbial Technology, Shandong University, Qingdao, Shandong, China.

出版信息

J Biotechnol. 2025 Oct;406:99-104. doi: 10.1016/j.jbiotec.2025.07.005. Epub 2025 Jul 4.

Abstract

Recombineering, a technique derived from phage-encoded homologous recombination, has emerged as a vital approach for bacterial genome engineering. Agrobacterium tumefaciens is extensively utilized to transfer DNA into the host plant genomes. To facilitate the transformation of various plant species, particularly those of considerable economic value, genetic modifications of Agrobacterium strains are essential. Our previous studies established an Agrobacterium-specific phage-encoded homologous recombination system for Agrobacterium species. Yet, recent investigations have indicated that there is a substantial variability in the recombination efficiency of these recombineering systems for gene editing across different genome loci in A. tumefaciens. In this work, we present the development of an efficient genome engineering tool for A. tumefaciens by integrating recombineering with CRISPR/Cas9 technology. Initially, we found that lengthening the homology arms significantly enhanced genome editing efficiency. Nevertheless, at certain genomic sites, even when the length of the homology arms was increased, the editing efficiency remained suboptimal. Subsequently, combination of the Agrobacterium-specific recombineering system with the CRISPR/Cas9 system markedly enhanced the genome engineering efficiency. This study offers an enhanced and efficient genome engineering tool for A. tumefaciens, which could potentially be applied to other species within the Agrobacterium genus.

摘要

重组工程是一种源自噬菌体编码的同源重组的技术,已成为细菌基因组工程的重要方法。根癌农杆菌被广泛用于将DNA转移到宿主植物基因组中。为了促进各种植物物种,特别是那些具有相当经济价值的植物物种的转化,对根癌农杆菌菌株进行基因改造至关重要。我们之前的研究为根癌农杆菌建立了一种特定于根癌农杆菌的噬菌体编码同源重组系统。然而,最近的研究表明,这些用于根癌农杆菌基因编辑的重组工程系统在不同基因组位点的重组效率存在很大差异。在这项工作中,我们通过将重组工程与CRISPR/Cas9技术相结合,展示了一种用于根癌农杆菌的高效基因组工程工具的开发。最初,我们发现延长同源臂显著提高了基因组编辑效率。然而,在某些基因组位点,即使同源臂的长度增加,编辑效率仍然不理想。随后,将特定于根癌农杆菌的重组工程系统与CRISPR/Cas9系统相结合,显著提高了基因组工程效率。这项研究为根癌农杆菌提供了一种增强且高效的基因组工程工具,该工具可能适用于根癌农杆菌属内的其他物种。

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