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首页> 外文期刊>Plant Biotechnology Reports >The development of herbicide-resistant maize: stable Agrobacterium-mediated transformation of maize using explants of type II embryogenic calli
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The development of herbicide-resistant maize: stable Agrobacterium-mediated transformation of maize using explants of type II embryogenic calli

机译:抗除草剂玉米的开发:使用II型胚性愈伤组织外植体稳定地进行农杆菌介导的玉米转化

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摘要

One of the limitations to conducting maize Agrobacterium-mediated transformation using explants of immature zygotic embryos routinely is the availability of the explants. To produce immature embryos routinely and continuously requires a well-equipped greenhouse and laborious artificial pollination. To overcome this limitation, an Agrobacterium-mediated transformation system using explants of type II embryogenic calli was developed. Once the type II embryogenic calli are produced, they can be subcultured and/or proliferated conveniently. The objectives of this study were to demonstrate a stable Agrobacterium-mediated transformation of maize using explants of type II embryonic calli and to evaluate the efficiency of the protocol in order to develop herbicide-resistant maize. The type II embryogenic calli were inoculated with Agrobacterium tumefaciens strain C58C1 carrying binary vector pTF102, and then were subsequently cultured on the following media: co-cultivation medium for 1 day, delay medium for 7 days, selection medium for 4 × 14 days, regeneration medium, and finally on germination medium. The T-DNA of the vector carried two cassettes (Ubi promoter-EPSPs ORF-nos and 35S promoter–bar ORF-nos). The EPSPs conferred resistance to glyphosate and bar conferred resistance to phosphinothricin. The confirmation of stable transformation and the efficiency of transformation was based on the resistance to phosphinothricin indicated by the growth of putative transgenic calli on selection medium amended with 4 mg l?1 phosphinothricin, northern blot analysis of bar gene, and leaf painting assay for detection of bar gene-based herbicide resistance. Northern blot analysis and leaf painting assay confirmed the expression of bar transgenes in the R1 generation. The average transformation efficiency was 0.60%. Based on northern blot analysis and leaf painting assay, line 31 was selected as an elite line of maize resistant to herbicide.
机译:通常使用未成熟合子胚的外植体进行玉米农杆菌介导的转化的限制之一是外植体的可用性。要定期常规地生产未成熟的胚胎,需要装备精良的温室和费力的人工授粉。为了克服该限制,开发了使用II型胚发生性愈伤组织的外植体的农杆菌介导的转化系统。一旦产生II型胚发生性愈伤组织,就可以方便地对其进行继代培养和/或增殖。这项研究的目的是证明使用II型胚胎愈伤组织外植体稳定地转化土壤杆菌,并评估该方案对开发抗除草剂玉米的效率。用携带二元载体pTF102的根癌农杆菌菌株C58C1接种II型胚性愈伤组织,然后在以下培养基上培养:共培养培养基1天,延迟培养基7天,选择培养基4×14天,再生培养基,最后在发芽培养基上。载体的T-DNA带有两个盒(Ubi启动子-EPSPs ORF-nos和35S启动子-bar ORF-nos)。 EPSP赋予草甘膦抗性,而bar赋予草丁膦抗性。确认稳定的转化和转化效率是基于对膦丝菌素的抗性,其表现为推定的转基因愈伤组织在选择了4 mg l?1 膦丝菌素的选择培养基上的生长,bar基因的Northern印迹分析和叶片绘画检测法检测基于bar基因的除草剂抗性。 Northern印迹分析和叶画分析证实了R1 世代中bar转基因的表达。平均转化效率为0.60%。基于Northern印迹分析和叶画测定法,选择31号品系为抗除草剂玉米的优良品系。

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  • 来源
    《Plant Biotechnology Reports 》 |2009年第4期| 277-283| 共7页
  • 作者单位

    Department of Medicinal Plant Resources Nambu University Wealkye-dong Gwangsan-gu Gwangju 506706 Korea;

    Department of Crop Science College of Agriculture University of Lampung Bandar Lampung 35145 Indonesia;

    Korea Research Institute of Bioscience and Biotechnology 52 Eoeun-dong Yusong-gu Daejon 305606 Korea;

    Korea Research Institute of Bioscience and Biotechnology 52 Eoeun-dong Yusong-gu Daejon 305606 Korea;

    Korea Research Institute of Chemical Technology Shinsung-dong Yusong-gu Daejeon 305600 Korea;

    Department of Infectious Diseases College of Veterinary Medicine KRF Zoonotic Priority Research Institute and BK21 for Veterinary Science Seoul National University Seoul 151-742 Korea;

    Department of Medicinal Plant Resources Nambu University Wealkye-dong Gwangsan-gu Gwangju 506706 Korea;

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

    Agrobacterium; Genetic transformation; Type II embryogenic calli; Zea mays L.;

    机译:农杆菌;遗传转化;II型胚发生愈伤组织;玉米;

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