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An improved method for transformation of lettuce by Agrobacterium tumefaciens with a gene that confers freezing resistance

机译:一种具有赋予抗冻性的基因的根癌农杆菌转化生菜的改良方法

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An efficient method for constructing transgenic lettuce cultivars by Agrobacterium tumefaciens was described by Torres et al., 1993. In the present work, an improvement of the above procedure is described and applied to transform the cultivar Grand Rapids with a mutated P5CS gene. The major modifications were concerned with turning more practical the transformation and regeneration protocols. Also we tried to improve transformation steps by increasing injured area in explants and prolonging co-cultivation with Agrobacteria (in larger concentration). A more significant selective pressure was used against non-transformed plants and bacteria. In these work we were concerned to obtain T1 and T2 seeds. The P5CS gene codes for a delta1-pyrroline-5-carboxylate synthetase, a bifunctional enzyme that catalyzes two steps of proline biosynthesis in plants (Zhang et al., 1995; Peng et al., 1996), while the mutated gene is insensitive to feedback inhibition by proline. The potential benefit of this gene is to confer water stress resistance (drought, salt, cold) due to increased intracellular levels of proline that works like an osmoprotectant. In this work could obtain and characterize transgenic lettuce lineages which are resistant to freezing temperature.
机译:Torres等人,1993描述了一种通过根癌土壤杆菌构建转基因生菜栽培品种的有效方法。在本工作中,描述了对上述方法的改进,并将其应用于用突变的P5CS基因转化栽培大瀑布城。主要的修改涉及使转换和再生协议更加实用。此外,我们尝试通过增加外植体中的受伤面积并延长与农杆菌(浓度较大)的共培养来改善转化步骤。对未转化的植物和细菌使用了更大的选择性压力。在这些工作中,我们关注获得T1和T2种子。 P5CS基因编码delta1-pyrroline-5-carboxylate合成酶,一种双功能酶,可催化植物脯氨酸生物合成的两个步骤(Zhang等,1995; Peng等,1996),而突变的基因对脯氨酸可抑制反馈。该基因的潜在好处是由于细胞内脯氨酸水平的增加而赋予了水分胁迫抗性(干旱,盐,冷),脯氨酸的作用类似于渗透保护剂。在这项工作中,可以获得抗冷冻温度的转基因生菜谱系并对其进行表征。

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