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利用原球茎粒轰击转化铁皮石斛兰花。

Transformation of Dendrobium orchid using particle bombardment of protocorms.

机构信息

Department of Horticulture, University of Hawaii, 3190 Maile Way, 96822, Honolulu, HI, USA.

出版信息

Plant Cell Rep. 1992 Aug;11(9):484-8. doi: 10.1007/BF00232696.

Abstract

Transformed dendrobium orchids (Dendrobium x Jaquelyn Thomas hybrids) were recovered from protocorms bombarded by particles coated with the plasmid pGA482GG/cpPRV4, which contains the plant expressible Nos-NPT II and papaya ringspot virus (PRV) coat protein (CP) genes. Approximately 280 protocorms from four crosses were bombarded and potentially transformed tissues were identified by growth and green color on half-strength Murashige and Skoog medium supplemented with 2% sucrose and 50-100 mg 1(-1) kanamycin sulfate. Kanamycin concentrations that prevented growth of nontransformed tissues could not be used for long-term selection because such levels suppressed the regeneration of potentially transformed tissues. PCR and restriction analysis 21 months after treatment found 13 of 13 plants from two crosses, which appeared kanamycin-tolerant, to contain the Nos-NPT II gene, while only one of these plants carried the vector-linked PRV CP-gene. These results support use of particle bombardment for transformation of this important ornamental monocot.

摘要

转 Dendrobium 兰花(Dendrobium x Jaquelyn Thomas 杂种)是从用质粒 pGA482GG/cpPRV4 包被的颗粒轰击的原球茎中回收的,该质粒含有可在植物中表达的 Nos-NPT II 和木瓜环斑病毒(PRV)外壳蛋白(CP)基因。用质粒 pGA482GG/cpPRV4 包被的颗粒轰击了大约 280 个来自四个杂交的原球茎,通过在补充有 2%蔗糖和 50-100mg/L 硫酸卡那霉素的半强度 Murashige 和 Skoog 培养基上的生长和绿色来鉴定潜在的转化组织。不能使用可防止未转化组织生长的卡那霉素浓度进行长期选择,因为这种水平会抑制潜在转化组织的再生。处理 21 个月后进行的 PCR 和限制性分析发现,在两个杂交中,13 株似乎对卡那霉素有耐受性的植物都含有 Nos-NPT II 基因,而这些植物中只有一株携带载体连接的 PRV CP 基因。这些结果支持使用粒子轰击来转化这种重要的观赏单子叶植物。

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