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High transformation efficiency in plum (Prunus domestica L.): a new tool for functional genomics studies in Prunus spp.

机译:李子(Prunus domestica L.)中的高转化效率:用于李子属功能基因组学研究的新工具。

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摘要

An improved Agrobacterium-mediated transformation protocol for plum (Prunus domestica L.) hypocotyl slices was developed based on the addition of 2,4-d to the co-cultivation medium. This method increased transformation efficiency up to 10 × (42%) over previous reports with an average efficiency of 25% of hypocotyl slices producing transgenic plants. Timing of each step in the protocol was optimized producing self-rooted transgenic plants in the greenhouse in approximately 6 months. In order to test the system for its utility in functional genomic studies, we developed two hairpin constructs using a fragment of the peach (P. persica) Phytoene desaturase (PDS) gene. When A. tumefaciens with these constructs was used for targeted post-transcriptional gene silencing (PTGS), approximately 50% of the transformed plums were knockout PDS gene plants. The easy and efficient plum transformation protocol that we report here can be readily used for functional genomics studies in Prunus specifically, and Rosaceae and other woody species in general.
机译:基于向共培养培养基中添加2,4-d,开发了改良的农杆菌介导的李子(李子)下胚轴切片转化方案。与以前的报道相比,该方法将转化效率提高了10倍(42%),平均产生下胚轴切片的转基因植物效率为25%。优化了方案中每个步骤的时间,大约在6个月内在温室中产生了自生根的转基因植物。为了测试该系统在功能基因组研究中的实用性,我们使用桃(P. persica)植物番茄去饱和酶(PDS)基因的片段开发了两个发夹结构。当具有这些构建体的根癌农杆菌用于靶向转录后基因沉默(PTGS)时,大约50%的转化李子是敲除的PDS基因植物。我们在此报告的简单而高效的李子转化方案可以轻松地用于李子,以及蔷薇科和其他木本物种的功能基因组学研究。

著录项

  • 来源
    《Molecular Breeding》 |2008年第4期|581-591|共11页
  • 作者单位

    Department of Genetic Improvement of Fruit Crops USDA-ARS-Appalachian Fruit Research Station 2217 Wiltshire Road Kearneysville WV 25430 USA;

    Department of Genetic Improvement of Fruit Crops USDA-ARS-Appalachian Fruit Research Station 2217 Wiltshire Road Kearneysville WV 25430 USA;

    Department of Genetic Improvement of Fruit Crops USDA-ARS-Appalachian Fruit Research Station 2217 Wiltshire Road Kearneysville WV 25430 USA;

    Department of Genetic Improvement of Fruit Crops USDA-ARS-Appalachian Fruit Research Station 2217 Wiltshire Road Kearneysville WV 25430 USA;

    Department of Genetic Improvement of Fruit Crops USDA-ARS-Appalachian Fruit Research Station 2217 Wiltshire Road Kearneysville WV 25430 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Agrobacterium tumefaciens; Functional genomics; Gene silencing; High-throughput genetic transformation; Prunus domestica; Rosaceae;

    机译:根癌农杆菌;功能基因组学;基因沉默;高通量遗传转化;李;蔷薇科;

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