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Utilization of the bar gene to develop an efficient method for detection of the pollen-mediated gene flow in Chinese cabbage (Brassica rapa spp. pekinensis)

机译:利用bar基因开发一种检测大白菜花粉介导的基因流的有效方法

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摘要

To develop an efficient screening method for detection of the transgene in Chinese cabbage (Brassica rapa spp. pekinensis) utilizing Basta spray, optimal conditions for Basta application were examined in this study. Two transgenic Chinese cabbage lines were obtained through Agrobacterium-mediated transformation and used as transgenic positive controls in the Basta screening experiment. Differential concentrations of glufosinate-ammonium were sprayed into three different growth stages of 12 commercial Chinese cabbage cultivars. The results showed that no plants could survive higher than 0.05% glufosinate-ammonium, and plants at the 2–3 leaf stage were most vulnerable to glufosinate-ammonium. On the other hand, no damage was observed in the transgenic control plants. Reliability of the Basta spray method was proven by showing perfect co-segregation of the tolerance to glufosinate-ammonium and the presence of the bar gene in T1 segregating populations of the transgenic lines, as revealed by both PCR and Southern blot analyses. Using the developed Basta screening method, we tried to investigate the transgene flow through pollen dispersal, but failed to detect any transgene-containing non-transgenic Chinese cabbages whose parents had been planted adjacent to transgenic Chinese cabbages in field conditions. However, the transgene was successfully detected using Basta spray from the non-transgenic plants bearing the transgene introduced by hand-pollination. Since the Basta spray method developed in this study is easy to apply and economical, it will be a valuable tool for understanding the mechanism of gene flow through pollen transfer and for establishing a biosafety test protocol for genetically modified (GM) Chinese cabbage cultivars.
机译:为了开发一种使用Basta喷雾剂检测大白菜(Brassica rapa spp。pekinensis)转基因的有效筛选方法,本研究探讨了应用Basta的最佳条件。通过农杆菌介导的转化获得了两个转基因大白菜品系,并在Basta筛选实验中用作转基因阳性对照。将不同浓度的草铵膦铵盐喷雾到12个商品大白菜品种的三个不同生长阶段。结果表明,没有任何植物能够存活高于0.05%的草铵膦铵盐,而处于2-3叶期的植物最容易受到草铵膦铵盐的影响。另一方面,在转基因对照植物中未观察到损伤。 PCR和Southern印迹分析均显示,对草铵膦铵盐的耐受性完美共分离,并且转基因T1 分离群体中存在bar基因,证明了Basta喷雾法的可靠性。使用发达的Basta筛选方法,我们试图研究通过花粉分散的转基因流,但未能检测到在田间条件下其亲本与转基因大白菜相邻种植的任何含转基因的非转基因大白菜。然而,使用Basta喷雾从携带有通过手工授粉引入的转基因的非转基因植物中成功地检测到转基因。由于本研究开发的Basta喷雾法易于应用且经济,因此它将成为了解通过花粉转移的基因流机制以及建立转基因大白菜品种生物安全性试验规程的宝贵工具。

著录项

  • 来源
    《Plant Biotechnology Reports》 |2007年第1期|19-25|共7页
  • 作者单位

    Dongbu Advanced Research Institute Daeduck Science Town Daejeon 305-708 South Korea;

    Dongbu Advanced Research Institute Daeduck Science Town Daejeon 305-708 South Korea;

    Dongbu Advanced Research Institute Daeduck Science Town Daejeon 305-708 South Korea;

    Graduate School of Biotechnology and Department of Horticultural Biotechnology Kyung Hee University Youngin 449-701 South Korea;

    Division of Biomaterials Science Korea Research Institute of Bioscience and Biotechnology Daejeon 305-333 South Korea;

    Dongbu Advanced Research Institute Daeduck Science Town Daejeon 305-708 South Korea;

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

    Basta; Biosafety; Chinese cabbage; Gene flow; Genetically-modified (GM); Transformation;

    机译:Basta;生物安全;大白菜;基因流;转基因;转化;

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