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Investigating the In Vitro Regeneration Potential of Commercial Cultivars of Brassica

机译:调查甘蓝型油菜商业品种的体外再生潜力

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摘要

In vitro regeneration is a pre-requisite for developing transgenic plants through tissue culture-based genetic engineering approaches. Huge variations among different genotypes of the genus necessitate the identification of a set of regeneration conditions for a genotype, which can be reliably used in transformation experiments. In this study, we evaluated the morphogenesis potential of four commercial cultivars (Faisal canola, Punjab canola, Aari canola, Nifa Gold) and one model, Westar, from four different explants namely cotyledons, hypocotyls, petioles and roots on three different regeneration protocols, BRP-I, -II and -III. The regeneration efficiency was observed in the range of 6–73%, 4–79.3%, 0–50.6%, and 0–42.6% from cotyledons, petioles, hypocotyls and roots, respectively, whereas, the regeneration response in terms of average shoots per explant was found to be 0.76–10.9, 0.2–3.2, 0–3.4 and 0–2.7 from these explants. Of the commercial varieties tested, almost all varieties showed poorer regeneration than Westar except Aari canola. In comparison to Westar, its regeneration frequency from cotyledons was up to 7.5-fold higher on BRP-I, while it produced up to 21.9-fold more shoots per explant. Our data show that the explant has strong influence on the regeneration response, ranging from 24% to 92%. While the growth of commercial cultivars was least affected by the regeneration conditions provided, the effect on Westar was twice that of the commercial cultivars. After determining the optimal explant type and regeneration conditions, we also determined the minimum kanamycin concentration levels required to selectively inhibit the growth of untransformed cells for these cultivars. Regenerated shoots of Aari canola could be successfully grown to maturity within 16–18 weeks, with no altered phenotype noted and normal seed yields obtained. Therefore, the commercial variety, Aari canola, could be a good candidate for future genetic transformation studies.
机译:体外再生是通过基于组织培养的基因工程方法开发转基因植物的先决条件。属的不同基因型之间的巨大差异使得必须确定一组基因型的再生条件,这可以可靠地用于转化实验中。在这项研究中,我们评估了四种商品栽培品种(Faisal双低油菜籽,Punjab双低油菜籽,Aari双低油菜籽,Nifa Gold)和一个模型Westar的形态发生潜力,它们来自三种不同再生方案的子叶,下胚轴,叶柄和根等四种不同的外植体, BRP-I,-II和-III。子叶,叶柄,下胚轴和根的再生效率分别为6–73%,4–79.3%,0–50.6%和0–42.6%,而平均芽的再生响应这些外植体的每个外植体被发现为0.76-10.9、0.2-3.2、0-3.4和0-2.7。在测试的商业品种中,除Aari双低油菜籽外,几乎所有品种的再生性都比Westar差。与Westar相比,在BRP-1上,其子叶的再生频率高达7.5倍,而每个外植体的再生芽则高达​​21.9倍。我们的数据表明,外植体对再生响应的影响很大,范围从24%到92%。虽然商业品种的生长受到提供的再生条件的影响最小,但对Westar的影响是商业品种的两倍。在确定最佳的外植体类型和再生条件后,我们还确定了选择性抑制这些品种未转化细胞生长所需的最低卡那霉素浓度水平。 Aari双低油菜籽的再生芽可以在16至18周内成功生长到成熟,而未发现表型发生变化且种子产量正常。因此,商业品种Aari双低油菜籽可能是未来遗传转化研究的良好候选者。

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