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首页> 外文期刊>Plant Cell Reports >Efficient Agrobacterium-mediated transformation of commercial hybrid poplar Populus nigra L. × P. maximowiczii A. Henry
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Efficient Agrobacterium-mediated transformation of commercial hybrid poplar Populus nigra L. × P. maximowiczii A. Henry

机译:农杆菌介导的商业化杂交杨白杨×美洲黑杨P. maximowiczii A. Henry的高效转化

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Many economically important species of Populus, especially those in sections Aigeiros and Tacamahaca, remain recalcitrant to genetic transformation. In this study, a simple and reliable protocol was developed for the efficient Agrobacterium-mediated transformation of a difficult-to-transform, but commercially viable, hybrid poplar Populus nigra L. × P. maximowiczii A. Henry (NM6). A plant transformation vector designed to express the β-glucuronidase (GUS) gene was used to detect transformation events at early stages of plant regeneration and to optimize parameters affecting poplar transformation. The use of zeatin riboside in shoot-induction medium, regeneration of shoots via indirect organogenesis, and early selection pressure were the major modifications that drastically improved the efficiency of poplar transformation and minimized the number of untransformed regenerants. Transgenic shoots were routinely obtained 4–10 weeks after co-culture with A. tumefaciens, with a greater than 90% rate of plant recovery. Stable transgene integration, ranging from a single insertion to ten copies per genome, was confirmed by Southern blot analysis. The mean transformation frequency was 36.3% and about two-thirds of the lines had 1–2 transgene copies. Among the explants, petioles and leaves had a higher transformation frequency than did stem segments. Growth characteristics and the morphology of transgenic poplar plants were identical to untransformed controls. These findings will accelerate the development of P. nigra × P. maximowiczii plants with novel traits, and may also be useful to improve transformation procedures for other Populus species. Keywords Hybrid poplar - Populus nigra L. × P. maximowiczii A. Henry - Agrobacterium tumefaciens - Genetic transformation Communicated by S. Merkle.
机译:许多经济上重要的胡杨树种,尤其是在Aigeiros和Tacamahaca部分的树种,仍然对遗传转化不服从。在这项研究中,开发了一种简单而可靠的方案,用于农杆菌介导的难于转化但商业上可行的杂交杨白杨×黑杨P. maximowiczii A. Henry(NM6)的有效转化。设计用于表达β-葡萄糖醛酸苷酶(GUS)基因的植物转化载体用于检测植物再生早期的转化事件,并优化影响杨树转化的参数。在玉米芽诱导培养基中使用玉米蛋白核糖苷,通过间接器官发生再生芽以及早期选择压力是主要改良措施,可显着提高杨树转化效率并最大程度减少未转化的再生子数量。与根癌农杆菌共培养后4-10周,常规获得转基因芽,植物恢复率大于90%。 Southern印迹分析证实了稳定的转基因整合,范围从单个插入到每个基因组十个拷贝。平均转化频率为36.3%,大约三分之二的品系具有1-2个转基因拷贝。在外植体中,叶柄和叶的转化频率高于茎节。转基因杨树植物的生长特性和形态与未转化的对照相同。这些发现将加速具有新性状的黑假单胞菌×大假单胞菌植物的发展,并且对于改善其他杨属物种的转化程序也可能是有用的。关键词杂种杨-黑杨×P. maximowiczii A.亨利-根癌农杆菌-遗传转化由S. Merkle传播。

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