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首页> 外文期刊>In Vitro Cellular and Development Biology. Plant: Journal of the Tissue Culture Association >Transformation of the oilseed crop Camelina sativa by Agrobacterium-mediated floral dip and simple large-scale screening of transformants
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Transformation of the oilseed crop Camelina sativa by Agrobacterium-mediated floral dip and simple large-scale screening of transformants

机译:农杆菌介导的浸花法和简单大规模筛选转化子转化油料作物骆驼

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摘要

Camelina sativa is a promising under-exploited oilseed crop with potential to become a biofuel feedstock. The ability to transform C. sativa would allow for the rapid introduction of novel traits into this emerging crop. We report the development of an Agrobacterium-based floral dip transformation method, requiring no vacuum-infiltration step, with transformation efficiencies up to 0.8%. C. sativa cultivars Ames 26665, “Calena” A3U7761, Ames 1043, and “Celine” were tested using Agrobacterium tumefaciens strains GV3101, EHA105, and At503. Use of all strains and cultivars resulted in transformed plants; however, GV3101 was the only Agrobacterium strain and Ames 1043 the only C. sativa cultivar to yield transformed plants under all conditions tested. Progeny analysis revealed that in approximately 78% of the transformed plants, the transgene segregated as a single locus. Furthermore, a high-throughput, filter paper-based PCR method was developed to screen marker-free transformed plants. Together, these methods will allow for easier introduction of new genes into this promising oilseed crop.
机译:茶花(Camelina sativa)是一种有前途的未充分利用的油料作物,有潜力成为生物燃料的原料。转化玉米的能力将允许将新性状快速引入到这种新兴作物中。我们报道了基于农杆菌的花卉浸蘸转化方法的发展,该方法不需要真空浸润步骤,转化效率高达0.8%。使用根癌土壤杆菌菌株GV3101,EHA105和At503测试了C. sativa品种Ames 26665,“ Calena” A3U7761,Ames 1043和“ Celine”。所有菌株和品种的使用产生了转化的植物;但是,GV3101是唯一的农杆菌菌株,而Ames 1043是唯一的在所有测试条件下都能产生转化植物的苜蓿中华根瘤菌。后代分析表明,在约78%的转化植物中,转基因分离为单个位点。此外,开发了一种高通量,基于滤纸的PCR方法来筛选无标记的转化植物。总之,这些方法将使新基因更容易地引入到这种有前途的油料作物中。

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