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一种基于高效模块化网关重组酶的基因堆叠系统,用于生成多性状转基因植物。

An Efficient Modular Gateway Recombinase-Based Gene Stacking System for Generating Multi-Trait Transgenic Plants.

作者信息

Qin Guannan, Wu Suting, Zhang Liying, Li Yanyao, Liu Chunmei, Yu Jianghui, Deng Lihua, Xiao Guoying, Zhang Zhiguo

机构信息

Key Laboratory of Agro-Ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Changsha 410125, China.

Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

出版信息

Plants (Basel). 2022 Feb 11;11(4):488. doi: 10.3390/plants11040488.

Abstract

Transgenic technology can transfer favorable traits regardless of reproductive isolation and is an important method in plant synthetic biology and genetic improvement. Complex metabolic pathway modification and pyramiding breeding strategies often require the introduction of multiple genes at once, but the current vector assembly systems for constructing multigene expression cassettes are not completely satisfactory. In this study, a new in vitro gene stacking system, GuanNan Stacking (GNS), was developed. Through the introduction of Type IIS restriction enzyme-mediated Golden Gate cloning, GNS allows the modular, standardized assembly of target gene expression cassettes. Because of the introduction of Gateway recombination, GNS facilitates the cloning of superlarge transgene expression cassettes, allows multiple expression cassettes to be efficiently assembled in a binary vector simultaneously, and is compatible with the Cre enzyme-mediated marker deletion mechanism. The linked dual positive-negative marker selection strategy ensures the efficient acquisition of target recombinant plasmids without prokaryotic selection markers in the T-DNA region. The host-independent negative selection marker combined with the TAC backbone ensures the cloning and transfer of large T-DNAs (>100 kb). Using the GNS system, we constructed a binary vector containing five foreign gene expression cassettes and obtained transgenic rice carrying the target traits, proving that the method developed in this research is a powerful tool for plant metabolic engineering and compound trait transgenic breeding.

摘要

转基因技术能够突破生殖隔离传递优良性状,是植物合成生物学和遗传改良中的重要方法。复杂代谢途径修饰和聚合育种策略通常需要一次性导入多个基因,但目前用于构建多基因表达盒的载体组装系统并不完全令人满意。在本研究中,开发了一种新的体外基因叠加系统——冠南叠加(GNS)。通过引入II型限制性内切酶介导的金门克隆,GNS实现了目标基因表达盒的模块化、标准化组装。由于引入了Gateway重组,GNS便于克隆超大转基因表达盒,能使多个表达盒在二元载体中同时高效组装,并且与Cre酶介导的标记删除机制兼容。连锁双正负标记选择策略确保在T-DNA区域无原核选择标记的情况下高效获得目标重组质粒。宿主独立的负选择标记与TAC骨架相结合,确保了大于100 kb的大型T-DNA的克隆和转移。利用GNS系统,我们构建了一个包含五个外源基因表达盒的二元载体,并获得了具有目标性状的转基因水稻,证明本研究开发的方法是植物代谢工程和复合性状转基因育种的有力工具。

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