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首页> 外文期刊>Plant Cell, Tissue and Organ Culture >The same treatment for transgenic shoot regeneration elicits the opposite effect in mature explants from two closely related sweet orange (Citrus sinensis (L.) Osb.) genotypes
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The same treatment for transgenic shoot regeneration elicits the opposite effect in mature explants from two closely related sweet orange (Citrus sinensis (L.) Osb.) genotypes

机译:相同的转基因芽再生处理在来自两个密切相关的甜橙(Citrus sinensis(L.)Osb。)基因型的成熟外植体中产生相反的作用。

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摘要

In citrus, production of mature transgenic plants belonging to different genotypes is an important biotechnological objective. In the present study, we tried to genetically transform and regenerate mature plants from the economically important Navelina sweet orange cultivar by using the procedure previously established for the genetically close Pineapple sweet orange variety. The use of BAP at 3 mg l−1 promoted efficient shoot organogenesis in Pineapple as expected, but not in Navelina. Furthermore, different effects were observed when the auxin α-naphtalene acetic acid (NAA) was added to BAP-containing regeneration media. Although NAA addition at 0.5 mg l−1 enhanced cambial callus formation, number of shoots and their elongation in Navelina, the contrary effect was observed in Pineapple. Moreover, transformation efficiency in Navelina rose from 0 to 3% but declined from 6 to 0% in Pineapple, indicating that BAP and BAP + NAA exerted the opposite effect in transgenic shoot regeneration from two closely related cultivars. This suggests that small changes in the procedure could induce drastic alterations in regeneration and even increase the likelihood of obtaining transformants from non-responsive genotypes. Moreover, the vigour of the starting plant material and the addition of kanamycin as selective agent were determining for the generation of mature sweet orange transgenic plants.
机译:在柑橘中,生产属于不同基因型的成熟转基因植物是重要的生物技术目标。在本研究中,我们尝试使用先前为遗传上接近的菠萝甜橙品种建立的程序,从经济上重要的纳维利纳甜橙品种中进行遗传转化和再生。如预期的那样,在3 mg l -1 处使用BAP可以促进菠萝有效的芽器官发生,但是在Navelina却不能。此外,当将生长素α-萘乙酸(NAA)添加到含BAP的再生培养基中时,观察到了不同的效果。尽管在Navelina加入0.5 mg l -1 的NAA可以增强冈比亚愈伤组织的形成,芽的数量及其伸长,但在菠萝中却观察到相反的作用。此外,Navelina的转化效率从0%上升到3%,而菠萝的转化效率从6%下降到0%,表明BAP和BAP + NAA在两个密切相关的品种的转基因芽再生中发挥了相反的作用。这表明该方法的微小变化可能会引起再生的巨大变化,甚至增加从无反应性基因型获得转化子的可能性。此外,起始植物材料的活力和卡那霉素作为选择剂的添加决定了成熟甜橙转基因植物的产生。

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