首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Dual Reproductive Cell-Specific Promoter-Mediated Split-Cre/LoxP System Suitable for Exogenous Gene Deletion in Hybrid Progeny of Transgenic Arabidopsis
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Dual Reproductive Cell-Specific Promoter-Mediated Split-Cre/LoxP System Suitable for Exogenous Gene Deletion in Hybrid Progeny of Transgenic Arabidopsis

机译:适用于转基因拟南芥的杂交后代外源基因缺失的双生殖细胞特异性启动子介导的分裂CRE / LOXP系统

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摘要

Genetically modified (GM) crops possess some superior characteristics, such as high yield and insect resistance, but their biosafety has aroused broad public concern. Some genetic engineering technologies have recently been proposed to remove exogenous genes from GM crops. Few approaches have been applied to maintain advantageous traits, but excising exogenous genes in seeds or fruits from these hybrid crops has led to the generation of harvested food without exogenous genes. In a previous study, split-Cre mediated by split intein could recombine its structure and restore recombination activity in hybrid plants. In the current study, the recombination efficiency of split-Cre under the control of ovule-specific or pollen-specific promoters was validated by hybridization of transgenic Arabidopsis containing the improved expression vectors. In these vectors, all exogenous genes were flanked by two loxP sites, including promoters, resistance genes, reporter genes, and split-Cre genes linked to the reporter genes via LP4/2A. A gene deletion system was designed in which NCre was driven by proDD45, and CCre was driven by proACA9 and proDLL. Transgenic lines containing NCre were used as paternal lines to hybridize with transgenic lines containing CCre. Because this hybridization method results in no co-expression of the NCre and CCre genes controlled by reproduction-specific promoters in the F1 progeny, the desirable characteristics could be retained. After self-crossing in F1 progeny, the expression level and protein activity of reporter genes were detected, and confirmed that recombination of split-Cre had occurred and the exogenous genes were partially deleted. The gene deletion efficiency represented by the quantitative measurements of GUS enzyme activity was over 59%, with the highest efficiency of 73% among variable hybrid combinations. Thus, in the present study a novel dual reproductive cell-specific promoter-mediated gene deletion system was developed that has the potential to take advantage of the merits of GM crops while alleviating biosafety concerns.
机译:基因改性(GM)作物具有一些优异的特性,例如高产和抗虫性,但它们的生物安全引起了广泛的公众关注。最近提出了一些基因工程技术,以从GM作物中删除外源基因。已经应用了很少的方法来保持有利的性状,但是来自这些杂交作物的种子或果实中的外源基因导致了没有外源基因的收获食物的产生。在先前的研究中,通过分裂内肽介导的分裂CRE可以在杂交植物中重组其结构和恢复重组活性。在目前的研究中,通过含有改进的表达载体的转基因拟南芥的杂交来验证在胚珠特异性或花粉特异性启动子的控制下的分裂CRE的重组效率。在这些载体中,所有外源基因侧翼都侧翼为通过LP4 / 2a与报告基因连接的启动子,抗性基因,报告基因和分裂基因。设计了一种基因缺失系统,其中NCRE由ProDD45驱动,并且CCRE由PROACA9和ProDLL驱动。含有NCRE的转基因株系用作父系以与含有CCRE的转基因素杂交。因为该杂交方法导致NCRE的NCRE和CCRE基因的共表达,所以通过F1后代的繁殖特异性启动子控制,所以可以保留所需的特性。在F1后代自交叉后,检测报告基因的表达水平和蛋白质活性,并确认已发生分裂CRE的重组,并且部分缺失外源基因。由GUS酶活性的定量测量表示的基因缺失效率超过59%,在可变杂种组合中的最高效率为73%。因此,在本研究中,开发了一种新型的双重生殖细胞特异性启动子介导的基因缺失系统,其具有潜力利用GM作物的优点,同时减轻生物安全问题。

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