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The Introduction of Transgenes to Control Blackheart in Pineapple: Biolistics Vs Agrobacterium Transformation, in 'Contributing to a Sustainable Future'

机译:转基因基因在菠萝中控制黑心病的介绍:《生物物理学与农杆菌的转化》,“为可持续的未来做出贡献”

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摘要

Techniques for the introduction of transgenes to control blackheart by particle bombardment and Agrobacterium co-transformation have been developed for pineapple cv. Smooth Cayenne. Polyphenol oxidase (PPO) is the enzyme responsible for blackheart development in pineapple fruit following chilling injury. Sense, anti-sense and hairpin constructs were used as a means to suppress PPO expression in plants. Average transformation efficiency for biolistics was approximately 1% and for Agrobacterium was approximately 1.5%. These results were considered acceptable given the high regeneration potential of between 80-90% from callus cultures. Southern blot analysis revealed stable integration of transgenes with lower copy number found in plants transformed with Agrobacterium compared to those transformed by biolistics. Over 5000 plants from 55 transgenic lines are now undergoing field evaluation in Australia
机译:已经为菠萝cv开发了通过粒子轰击和农杆菌共转化来引入转基因以控制黑心病的技术。光滑的卡宴。多酚氧化酶(PPO)是引起冷害后菠萝果实黑心病发展的酶。有义,反义和发夹构建体被用作抑制植物中PPO表达的手段。生物弹药的平均转化效率约为1%,土壤杆菌的平均转化效率约为1.5%。鉴于愈伤组织培养物具有80-90%的高再生潜力,这些结果被认为是可以接受的。 Southern印迹分析显示与农杆菌转化的植物相比,在农杆菌转化的植物中发现具有较低拷贝数的转基因的稳定整合。来自55个转基因品系的5000多株植物正在澳大利亚进行实地评估

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