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Construction of Marker-Free Genetically Modified Maize Using a Heat-Inducible Auto-Excision Vector

机译:利用热诱导自动切割载体构建无标记转基因玉米

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摘要

Gene modification is a promising tool for plant breeding, and gradual application from the laboratory to the field. Selectable marker genes (SMG) are required in the transformation process to simplify the identification of transgenic plants; however, it is more desirable to obtain transgenic plants without selection markers. Transgene integration mediated by site-specific recombination (SSR) systems into the dedicated genomic sites has been demonstrated in a few different plant species. Here, we present an auto-elimination vector system that uses a heat-inducible Cre to eliminate the selectable marker from transgenic maize, without the need for repeated transformation or sexual crossing. The vector combines an inducible site-specific recombinase (hsp70::Cre) that allows for the precise elimination of the selectable marker gene egfp upon heating. This marker gene is used for the initial positive selection of transgenic tissue. The egfp also functions as a visual marker to demonstrate the effectiveness of the heat-inducible Cre. A second marker gene for anthocyanin pigmentation (Rsc) is located outside of the region eliminated by Cre and is used for the identification of transgenic offspring in future generations. Using the heat-inducible auto-excision vector, marker-free transgenic maize plants were obtained in a precisely controlled genetic modification process. Genetic and molecular analyses indicated that the inducible auto-excision system was tightly controlled, with highly efficient DNA excision, and provided a highly reliable method to generate marker-free transgenic maize.
机译:基因修饰是植物育种以及从实验室到现场逐步应用的有前途的工具。在转化过程中需要选择标记基因(SMG),以简化转基因植物的鉴定。然而,更希望获得没有选择标记的转基因植物。由位点特异性重组(SSR)系统介导的转基因整合进入了专门的基因组位点已在几种不同的植物物种中得到证实。在这里,我们提出了一种自动消除载体系统,该系统使用可热诱导的Cre消除了转基因玉米中的选择标记,而无需重复进行转化或性交。该载体结合了可诱导的位点特异性重组酶(hsp70 :: Cre),该酶可在加热时精确消除选择标记基因egfp。该标记基因用于转基因组织的初始阳性选择。 egfp还可以用作视觉标记,以证明热诱导Cre的有效性。花青素色素沉着(Rsc)的第二个标记基因位于Cre消除的区域之外,用于鉴定后代的转基因后代。使用热诱导自动切割载体,在精确控制的基因修饰过程中获得了无标记的转基因玉米植物。遗传和分子分析表明,诱导型自动切割系统受到严格控制,具有高效的DNA切除功能,并为生成无标记转基因玉米提供了高度可靠的方法。

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