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Agrobacterium-Mediated Transient Gene Expression and Silencing: A Rapid Tool for Functional Gene Assay in Potato

机译:农杆菌介导的瞬时基因表达和沉默:马铃薯中功能基因测定的快速工具

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摘要

Potato is the third most important food crop worldwide. However, genetic and genomic research of potato has lagged behind other major crops due to the autopolyploidy and highly heterozygous nature associated with the potato genome. Reliable and technically undemanding techniques are not available for functional gene assays in potato. Here we report the development of a transient gene expression and silencing system in potato. Gene expression or RNAi-based gene silencing constructs were delivered into potato leaf cells using Agrobacterium-mediated infiltration. Agroinfiltration of various gene constructs consistently resulted in potato cell transformation and spread of the transgenic cells around infiltration zones. The efficiency of agroinfiltration was affected by potato genotypes, concentration of Agrobacterium, and plant growth conditions. We demonstrated that the agroinfiltration-based transient gene expression can be used to detect potato proteins in sub-cellular compartments in living cells. We established a double agroinfiltration procedure that allows to test whether a specific gene is associated with potato late blight resistance pathway mediated by the resistance gene RB. This procedure provides a powerful approach for high throughput functional assay for a large number of candidate genes in potato late blight resistance.
机译:马铃薯是世界第三重要的粮食作物。然而,由于马铃薯基因组的多倍性和高度杂合性,马铃薯的遗传和基因组研究落后于其他主要农作物。对于马铃薯中的功能基因测定,没有可靠且技术上要求不高的技术。在这里,我们报告在马铃薯中的瞬时基因表达和沉默系统的发展。使用农杆菌介导的浸润将基因表达或基于RNAi的基因沉默构建体传递到马铃薯叶细胞中。各种基因构建物的农业浸润一致地导致马铃薯细胞转化和转基因细胞在浸润区周围的扩散。农杆菌浸润的效率受马铃薯基因型,农杆菌浓度和植物生长条件的影响。我们证明了基于农业渗透的瞬时基因表达可用于检测活细胞亚细胞区室中的马铃薯蛋白。我们建立了双重农杆菌浸润程序,可以测试特定基因是否与由抗性基因RB介导的马铃薯晚疫病抗性途径相关。该程序为马铃薯晚疫病抗性中的大量候选基因的高通量功能测定提供了有力的方法。

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