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首页> 外文期刊>Advances in Bioscience and Biotechnology >Agrobacterium-Mediated Transformation of Mexican Lime (Citrus aurantifolia Swingle) Using Optimized Systems for Epicotyls and Cotyledons
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Agrobacterium-Mediated Transformation of Mexican Lime (Citrus aurantifolia Swingle) Using Optimized Systems for Epicotyls and Cotyledons

机译:农杆菌介导的表皮和子叶优化系统对墨西哥石灰(Citrus aurantifolia Swingle)的转化

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Transgenic Mexican lime (Citrus aurantifolia Swingle) was produced through two explant sources, each using systems previously optimized for each source. One used epicotyls segments, which was the predominant explant for transgenic Citrus production following co-cultivation with Agrobacterium, and has a well-established protocol. The other procedure used embryo cotyledons from mature seeds, which was developed in our lab as an alternative for stable Citrus transformation. Cotyledon transformation and regeneration protocols were optimized by comparing variables in culture medium composition on shoot regeneration and four parameters in transient transformation. The optimized protocols were compared, and frequency of regeneration, frequency of transgenic plant-recovery and stable transformation efficiency indicated the superiority of the cotyledon protocol for Agrobacterium-mediated genetic transformation in Mexican lime. The tissue choice resulted in marked improvement in shoot regeneration (14.1% of explants producing shoots in epicotyls; 55.8% in cotyledons), stable transformation frequency (11.4% of epicotyls explants; 40.2% in cotyledons), and frequency of transgenic plant-recovery (37.9% in epicotyl explants; 92.6% in cotyledons). Thus, easy availability of explants using embryo cotyledons from mature seeds, technical simplicity, shortening of transformation time-course, and higher transformation and regeneration frequencies makes this new system an attractive alternative over the previously published Citrus transformation protocols. In the course of this project, we generated Mexican lime with a Recombinase Mediated Exchange Cassette landing pad, which was designed for stacking transgenes.
机译:转基因墨西哥石灰(Citrus aurantifolia Swingle)是通过两种外植物来源生产的,每种均使用先前针对每种来源进行了优化的系统。与农杆菌属共培养后,其中一个使用了上胚轴节段,该节段是转基因柑橘生产的主要外植体,并且具有完善的方案。另一种方法是使用成熟种子的胚子叶,这是在我们的实验室中开发的,可作为稳定柑橘转化的替代方法。通过比较芽再生中培养基组成的变量和瞬时转化中的四个参数,优化了子叶转化和再生方案。比较了优化后的方案,并且再生频率,转基因植物恢复的频率和稳定的转化效率表明,子叶方案对于农杆菌介导的墨西哥石灰遗传转化的优越性。组织的选择显着改善了芽的再生(外植体中产生芽的外植体占14.1%;子叶中占55.8%),稳定的转化频率(外胚芽中的外植体占11.4%;子叶中占40.2%)以及转基因植物的恢复频率(表皮外植体中为37.9%;子叶中为92.6%)。因此,使用来自成熟种子的胚子叶的外植体容易获得,技术简单,转化时间进程缩短以及更高的转化和再生频率,使得该新系统成为比以前发布的柑橘转化方案更具吸引力的替代方法。在该项目的过程中,我们用重组酶介导的交换盒落地垫生成了墨西哥石灰,该垫被设计用于堆叠转基因。

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