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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Comparison of direct and indirect embryogenesis protocols, biolistic gene transfer and selection parameters for efficient genetic transformation of sugarcane
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Comparison of direct and indirect embryogenesis protocols, biolistic gene transfer and selection parameters for efficient genetic transformation of sugarcane

机译:直接和间接胚胎发生方案,有效基因转化和甘蔗高效遗传转化选择参数的比较

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摘要

The comparison of direct and indirect somatic embryogenesis (DSE and ISE) for biolistic transformation of sugarcane by minimal expression cassettes indicated the highest transformation efficiency with ISE (2.2 independent transgenic plants per shot) and the most rapid production of transgenic plants with DSE (12 weeks from explant to plants in soil). Microprojectiles of 0.3 micro m diameter produced 5 times more transgenic lines than 1 micro m microprojectiles when used at the same weight basis per shot. A significant reduction of the number of hybridization signals in the Southern blot was also observed with 0.3 micro m microprojectiles when compared to 1.0 micro m microprojectiles. This suggests that the lower DNA carrying capacity and greater number of the smaller microprojectiles contributes to more transgenic lines with less complex transgene integration. When geneticin sulfate, was used for selection following DSE, significantly more (4.8 times) transgenic plants were produced than with paromomycin sulfate and an equal number of non-expressing plants were produced with both selection agents. In conclusion, optimization of two alternative morphogenic routes for regeneration (DSE and ISE), biolistic and selection parameters generated rooted, transgenic plants of a commercially important sugarcane cultivar with simple transgene integration and within 12 or 19 weeks of culture initiation, respectively. Reducing the complexity of the transgene integration and minimizing the time in tissue culture will likely enhance the performance of the transgenic events.
机译:通过最小表达盒对甘蔗进行生弹转化的直接和间接体细胞胚发生(DSE和ISE)的比较表明,ISE的转化效率最高(每发2.2个独立的转基因植物),DSE转基因植物的生产速度最快(12周)从外植到土壤中的植物)。当以每次注射相同的重量基准使用时,直径为0.3微米的微粒产生的转基因品系比1微米微粒多出5倍。与1.0微米微粒相比,在0.3微米微粒中还观察到Southern印迹中杂交信号数量的显着减少。这表明较低的DNA携带能力和更多的较小的微粒组成了更多的转基因品系,而转基因整合较少。当将硫酸遗传霉素用于DSE后的选择时,与硫酸巴龙霉素相比,产生的转基因植物要多得多(4.8倍),并且两种选择剂产生的非表达植物的数量均相同。总之,优化两个替代的形态发生途径(DSE和ISE),生物弹和选择参数,可以分别通过简单的转基因整合和在培养起始12或19周内生成具有商业意义的甘蔗品种的生根转基因植物。降低转基因整合的复杂性并最小化组织培养中的时间将可能提高转基因事件的性能。

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