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Ornamental Plant Transformation

机译:观赏植物转型

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摘要

Ornamental plant transformation has advanced considerably in the last decade. Now over 40 genera have been reported to be transformed. The primary methods of creating transgenic ornamental species have been Agrobacterium tumefaciens-mediated transformation and microprojectile bombardment. The vast majority of reports indicate the use of Agrobacterium-mediated transformation employing binary vectors and vir helper plasmids or supervirulence genes. Many reports are of transformation with the uidA reporter gene driven by the 35S cauliflower mosaic virus promoter, but recent efforts are now focusing on trait genes including disease resistance, flower color, flower longevity, floral scent and plant habit. Greater use of tissue specific and inducible promoters promises to enhance the functionality and usefulness of introduced trait genes. While technical challenges for production of transgenic ornamental plants still exist, the greatest challenges to realizing the potential benefits of transgenic ornamental plants are questionable public acceptance of transgenic plants and the prohibitive costs of generating environmental impact data needed to gain regulatory clearance.
机译:在过去十年中,观赏植物转型大大提升。现在报告了超过40个属的变化。产生转基因观赏物种的主要方法是土壤杆菌介导的转化和微妙轰击。绝大多数报告表明使用农杆菌介导的转化使用二元载体和病毒辅助质粒或监督基因。许多报告与由35s花椰菜马赛克病毒启动子驱动的UIDA报告基因转化,但近来的努力现在关注具有疾病抵抗,花卉颜色,花卉长寿,花香和植物习惯的特质基因。更多使用组织特异性和诱导型启动子有望增强引入的特征基因的功能和有用性。虽然对转基因观赏植物生产的技术挑战仍然存在,但实现转基因观赏植物的潜在益处的最大挑战是可疑的公众接受转基因植物和产生环境影响数据所需的禁止成本,以获得监管许可所需的环境。

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