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Genetic improvement of the somatic embryogenesis and regeneration in soybean and transformation of the improved breeding lines

机译:大豆体细胞胚发生和再生的遗传改良和改良育种系的转化

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摘要

Somatic embryos of soybean [Glycine max (L.) Merrill] have been used to generate transgenic plants by particle bombardment. The induction and proliferation of somatic embryos from immature cotyledons are dependent on the genotype of the cultivar. Whereas somatic embryogenesis and plant regeneration are inefficient in most cultivars, they are efficient in the cultivar Jack. We previously established a breeding line, QF2, by the integration of null mutations of each subunit of the major seed storage proteins glycinin and beta-conglycinin, but the embryogenic response of this line is insufficient to allow efficient transformation. We have now backcrossed QF2 to cultivar Jack in order to combine the null traits with competence for somatic embryogenesis. The backcrossed breeding lines selected on the basis of the absence of the major storage proteins exhibited an improved capacity for the induction and proliferation of somatic embryos compared with that of QF2. The induced somatic embryogenic tissue of these breeding lines was successfully used for the production of transgenic plants by particle bombardment. These results also indicate that somatic embryogenesis in soybean is genetically controlled and inherited in a manner independent of the null traits of the major seed storage proteins.
机译:大豆的体细胞胚[Glycine max(L.)Merrill]已用于通过粒子轰击产生转基因植物。来自未成熟子叶的体细胞胚的诱导和增殖取决于品种的基因型。体细胞胚发生和植物再生在大多数品种中效率低下,而在杰克品种中则有效。我们先前通过整合主要种子贮藏蛋白大豆球蛋白和β-伴大豆球蛋白的每个亚基的无效突变而建立了一个育种系QF2,但该系的胚发生反应不足以进行有效转化。现在我们将QF2回交到品种Jack,以便将无效性状与体细胞胚发生能力相结合。与QF2相比,在缺乏主要贮藏蛋白的基础上选择的回交育种品系具有更高的诱导体细胞胚诱导和增殖的能力。这些育种系的诱导的体细胞胚发生组织被成功地用于通过粒子轰击生产转基因植物。这些结果还表明,大豆中的体细胞胚发生以不受主要种子贮藏蛋白无效特性的方式遗传控制和遗传。

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