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High-resolution structural analysis of biolistic transgene integration into the genome of wheat

机译:基因枪转基因整合到小麦基因组中的高分辨率结构分析

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摘要

Transformation of plant genomes by biolistic methods has become routine over the past decade. However, relatively little is known about how transgenes are physically integrated into the host genome. Using a high-resolution physical mapping technique, fluorescence in situ hybridization on extended DNA fibers (fiber-FISH), 13 independent transgenic wheat lines were analyzed to determine the structural arrangement of stably inherited transgenes in host-plant chromosomes. Twelve transgenic lines were transformed with a single plasmid and one line was co-transformed with two separate plasmids, which co-segregated genetically. Three basic integration patterns were observed from the fiber-FISH experiments: Type I, large tandemly repeated integration; Type II, large tandem integrations interspersed with unknown DNA; and Type III, small insertions, possibly interspersed with unknown DNA. Metaphase FISH showed that the integration of transgenes was in both hetero- and euchromatic, as well as proximal, interstitial and distal, regions of the chromosomes. In the transgenic plants, the type of promotor used, rather than the chromosomal site of transgene integration, was most critical for transgene expression. The integration of the transgenes was not associated with detectable chromosomal rearrangements.
机译:在过去的十年中,通过生物射弹方法转化植物基因组已成为常规方法。然而,关于转基因如何物理整合到宿主基因组中的了解还很少。使用高分辨率的物理作图技术,对扩展的DNA纤维(fiber-FISH)进行荧光原位杂交,分析了13个独立的转基因小麦品系,以确定宿主植物染色体中稳定遗传的转基因的结构安排。用单个质粒转化了十二个转基因品系,并且用两个单独的质粒共转化了一个品系,这两个质粒在遗传上共分离。从纤维-FISH实验观察到三种基本的整合模式:I型,大串联重复整合; II型,大串联整合,散布着未知的DNA; III型,小插入,可能散布着未知的DNA。中期FISH表明转基因的整合在染色体的异染色和常染色以及近端,间质和远端区域中。在转基因植物中,使用的启动子类型而非转基因整合的染色体位点对于转基因表达至关重要。转基因的整合与可检测的染色体重排无关。

著录项

  • 来源
    《Theoretical and Applied Genetics》 |2001年第1期|56-62|共7页
  • 作者单位

    Department of Agronomy and Plant Genetics University of Minnesota 411 Borlaug Hall 1991 Upper Buford Circle St. Paul MN 55108 USA;

    The Wheat Genetics Resource Center and Department of Plant Pathology Throckmorton Hall Kansas State University Manhattan KS 66506 USA e-mail: friebe@ksu.edu;

    Cytogenetics Institute and Department of Agronomy Nanjing Agricultural University Nanjing Jiangsu 210095 The People’s Republic of China;

    Department of Agronomy and Plant Genetics University of Minnesota 411 Borlaug Hall 1991 Upper Buford Circle St. Paul MN 55108 USA;

    The Wheat Genetics Resource Center and Department of Plant Pathology Throckmorton Hall Kansas State University Manhattan KS 66506 USA e-mail: friebe@ksu.edu;

    Department of Biochemistry Kansas State University Manhattan KS 66506 USA;

    The Wheat Genetics Resource Center and Department of Plant Pathology Throckmorton Hall Kansas State University Manhattan KS 66506 USA e-mail: friebe@ksu.edu;

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

    Keywords Fiber-FISH; Physical mapping; Transgene structure; Wheat;

    机译:纤维-FISH;物理作图;转基因结构;小麦;

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