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Auto-excision of selectable marker genes from transgenic tobacco via a stress inducible FLP/FRT site-specific recombination system

机译:通过逆境诱导的FLP / FRT位点特异性重组系统自动切除转基因烟草中的选择标记基因

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摘要

Antibiotic resistance marker genes are powerful selection tools for use in plant transformation processes. However, once transformation is accomplished, the presence of these resistance genes is no longer necessary and can even be undesirable. We herein describe the successful excision of antibiotic resistance genes from transgenic plants via the use of an oxidative stress-inducible FLP gene. FLP encodes a recombinase that can eliminate FLP and hpt selection genes flanked by two FRT sites. During a transformation procedure in tobacco, transformants were obtained by selection on hygromycin media. Regenerants of the initial transformants were screened for selective marker excision in hydrogen peroxide supplemented media and both the FLP and hpt genes were found to have been eliminated. About 13–41% of regenerated shoots on hydrogen peroxide media were marker-free. This auto-excision system, mediated by the oxidative stress-inducible FLP/FRT system to eliminate a selectable marker gene can be very readily adopted and used to efficiently generate marker-free transgenic plants.
机译:抗生素抗性标记基因是用于植物转化过程的强大选择工具。但是,一旦完成转化,这些抗性基因的存在就不再是必需的,甚至是不希望的。我们在此描述了通过使用氧化应激诱导的FLP基因从转基因植物中成功切除抗生素抗性基因。 FLP编码重组酶,可以消除两个FRT位点侧翼的FLP和hpt选择基因。在烟草的转化过程中,通过在潮霉素培养基上选择获得转化体。在添加过氧化氢的培养基中筛选了初始转化子的再生子,以进行选择性标记切除,结果发现FLP和hpt基因均已消除。过氧化氢培养基上再生芽的约13–41%不含标记。这种由氧化应激诱导的FLP / FRT系统介导的消除选择性标记基因的自动切割系统可以很容易地采用,并可以有效地产生无标记的转基因植物。

著录项

  • 来源
    《Transgenic Research》 |2009年第3期|455-465|共11页
  • 作者单位

    Biosafety Division National Academy of Agricultural Science Rural Development Administration 150 Sooin-ro Seodun-dong Gwonseon-gu Suwon 441-707 South Korea;

    Biosafety Division National Academy of Agricultural Science Rural Development Administration 150 Sooin-ro Seodun-dong Gwonseon-gu Suwon 441-707 South Korea;

    Biosafety Division National Academy of Agricultural Science Rural Development Administration 150 Sooin-ro Seodun-dong Gwonseon-gu Suwon 441-707 South Korea;

    Biosafety Division National Academy of Agricultural Science Rural Development Administration 150 Sooin-ro Seodun-dong Gwonseon-gu Suwon 441-707 South Korea;

    Biosafety Division National Academy of Agricultural Science Rural Development Administration 150 Sooin-ro Seodun-dong Gwonseon-gu Suwon 441-707 South Korea;

    Biosafety Division National Academy of Agricultural Science Rural Development Administration 150 Sooin-ro Seodun-dong Gwonseon-gu Suwon 441-707 South Korea;

    Biosafety Division National Academy of Agricultural Science Rural Development Administration 150 Sooin-ro Seodun-dong Gwonseon-gu Suwon 441-707 South Korea;

    Department of Crop Science Chungbuk National University Cheongju 361-763 South Korea;

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

    Auto-excision; FLP/FRT recombination system; Marker-free; Oxidative stress-inducible; Transgenic tobacco;

    机译:自动切割;FLP / FRT重组系统;无标记;氧化应激诱导型;转基因烟草;

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