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首页> 外文期刊>Agrivita: journal of agricultural science >Micropropagation of Dendrobium phalaenopsis Orchid Through Overexpression of Embryo Gene AtRKD4
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Micropropagation of Dendrobium phalaenopsis Orchid Through Overexpression of Embryo Gene AtRKD4

机译:通过胚胎基因过表达的植物鳞片植物的微催化

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To increase the efficiency of crop production from Dendrobium phalaenopsis orchids, mass propagation has been performed by inducing somatic embryogenesis through Agrobacterium-mediated transformation of the Arabidopsis embryo gene AtRKD4 into orchid protocorm (developing orchid embryo). The three-week-old protocorms of D. phalaenopsis were genetically transformed with T-DNA carrying 35S :: GAL4 :: AtRKD4 :: GR through A. tumefaciens strain EHA 105. The cultures were maintained in VW medium with 10 mg L-1 Hygromycin. Due to the existence of glucocorticoid response element (GR) in the T-DNA construct, the transformed protocorms were transferred into VW medium with the addition of 15 μM Dexamethasone in 6 weeks after transformation to activate the transgene. A total of 12% protocorms has been confirmed for Hyg + by using PCR. The expression of embryo gene AtRKD4 was confirmed by cDNA analysis using AtRKD4 specific primers and Actin primers as a positive control experiment. The expression level of AtRKD4 in 2.5-month-old D. phalaenopsis transformant shoots was 7 times higher than non-transformant plants, and increased to 86 times higher in 8-months, that much higher than that of non-transformant. These results provide an improved method for genetic transformation of D. Phalaenopsis and will (eventually) increase production efficiency in the future.
机译:为了提高从鳞片植物兰花的作物生产的效率,通过将拟南芥胚胎基因ATRKD4转化为兰花前提(显影兰胚胎)来诱导体细胞胚胎发生,通过诱导体细胞胚胎发生来进行大规模繁殖。 D.蝴蝶结的三周历史的质子导卵剂与T-DNA载有35s :: Gal4 :: Atrkd4 :: Gr贯穿A. tumefaciens菌株EHA 105。将培养物保持在VW培养基中,10mg L-1潮霉素。由于T-DNA构建体中的糖皮质激素响应元件(GR)的存在,转化后6周以在6周内加入转化为15μm的地塞米松转移到VW培养基中以激活转基因。通过使用PCR,已经确认了总共12%的质子导体。通过使用ATRKD4特异性引物和肌动蛋白引物作为阳性对照实验,通过cDNA分析证实胚胎基因ATRKD4的表达。 2.5个月左右的ATRKD4的表达水平比非转化体植物高7倍,8个月内增加至86倍,远高于非转化体的86倍。这些结果提供了一种改进的D.蝴蝶兰植物转化方法,并将增加未来的生产效率。

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