节点文献

提高苹果基因转化效率的研究

Study on Enhancing Efficiency of Apple Transformation

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 刘庆忠赵红军Freddi Hammerschlag

【Author】 Liu Qingzhong, Zhao Hongjun, and Freddi Hammerschlag (Shandong Research Institute of Pomology, Taian 271000; U. S. Department of Agriculture,Agriculture Research Service, Fruit Laboratory, Beltsuille)

【机构】 山东省果树研究所!泰安 271000美国农业部 Beltsville农业研究中心果树实验室

【摘要】 采用根瘤农杆菌(Agrobacterium tumefaciens)强株系EHA105(p35sGUS-intron)研究了影响‘皇家嘎拉’苹果(Mains domestica Borkh.)外植体的β-葡萄糖醛酸酶(GUS)基因的瞬时、稳定表达水平和转基因植株的再生。证明在培养基生长素(IBA、NAA)存在的条件下,外植体的GUS基因的瞬时表达水平提高了3-4倍,而共培养两周后稳定表达水平提高2倍以上,产生9.8个GUS愈伤组织表达区域。白化处理促进外植体的基因转化,白化处理的新梢顶端第一节间外植体GUS表达区域比常用的叶片外植体高4倍。在生长素存在的条件下 2%外植体获得了转基因植株。Southern BlotDNA杂交和组织化学染色分析证明GUS基因已整合到苹果的染色体上,并得以表达。

【Abstract】 Transient and stable β-glucuronidase (GUS) expressions and transgenic plant regeneration from the etiolated internode explant of’ Royal Cala’ apple (Malus domestica Borkh. ) were examined using Agrobacterium tumefaciens supervirulent strains EHA105(p35sGUS intron) during transformation. Explants with auxins (IBA, NAA) yeilded more than twice as many GUS-expressing zones and calli compared with ones on the medium without auxin. All etiolated internodes exhibited GUS expressing zones and yielded 4-fold as many GUS expressing zones compared to commonly used leaf explants from nonetiolated shoots. High efficiency transformation system was established. On regeneration medium with 0. 5 mg.l-1 NAA,transgenic plants with GUS gene were Obtained from 400 internode explants after cocultivation with EHA105. The integration of the GUS gene into apple genome was confirmed and Southern blot analysis. The gene expression was confirmed by GUS-histochem-istry staining.

【关键词】 苹果GUS基因生长素农杆菌转基因植株
【Key words】 AppleTransgenic plantGUS geneAuxinsEtiolationT
【基金】 农业部科技司;山东省农业“三O”工程;山东省人事厅;山东省农业科学院资助项目
  • 【被引频次】69
  • 【下载频次】300
节点文献中: 

本文链接的文献网络图示:

本文的引文网络