A Novel Gene Stacking Method in Plant Transformation Utilizing Split Selectable Markers

利用分裂选择标记进行植物转化的新型基因叠加方法

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作者:Guoliang Yuan, Md Torikul Islam, Gerald A Tuskan, Xiaohan Yang

Abstract

Gene stacking, the process of introducing multiple genes into a single plant to enhance desired traits, is essential for plant genetic improvement through both conventional breeding and genetic transformation. In general, transformation-based gene stacking can be achieved through either co-transformation to simultaneously introduce multiple genes or sequential multi-round transformation. While co-transformation is generally faster and more efficient than sequential multi-round transformation, it often requires two selectable marker genes, which confer resistance to antibiotics, for selecting transgenic events. However, in most cases, there is only one best selectable marker gene for a specific plant species or genotype. Also, it is harder to optimize the concentrations of two antibiotics for co-transformation than using one antibiotic for selecting transgenic events. To overcome this challenge, we recently developed an innovative split selectable marker system for plant co-transformation, allowing the use of one selectable marker gene to select transgenic events. This method involves constructing two binary vectors, each carrying a subset of genes of interest and a partial fragment of the selectable marker gene, which is connected to a partial intein fragment. Following Agrobacterium-mediated co-transformation, plants harboring both binary vectors are selected using a single antibiotic, such as kanamycin. This split-marker system can be used to co-transform multiple genes into both herbaceous and woody plants, accelerating genetic improvement of polygenic traits or integrative improvement of multiple traits to simultaneously increase crop yield and quality. Key features • Developed an intein-mediated split selectable marker system for efficient gene stacking in plants. • Utilizes a single antibiotic for identifying transgenic events, simplifying the selection process of co-transformation compared to traditional methods. • Applicable to both herbaceous and woody plant species for co-transforming multiple genes. • Enhances scalability and feasibility of gene stacking in plant genetic engineering and crop improvement initiatives.

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