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High-efficiency transformation of the diploid strawberry (Fragaria vesca) for functional genomics

机译:二倍体草莓(Fragaria vesca)的高效转化为功能基因组学

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摘要

Fragaria vesca L., a diploid (2n=2x=14) relative of the commercial octoploid strawberry, is an attractive model for functional genomics research in Rosaceae. Its small genome size, short reproductive cycle, and facile vegetative and seed propagation make F. vesca a promising candidate for forward and reverse genetics experiments. However, the lack of a high-efficiency transformation protocol required for systematic production of thousands of T-DNA insertional mutant lines and high-throughput gene validation is a major bottleneck. We describe a new transformation procedure that uses leaf explants from newly unfolded trifoliate leaves obtained from stock plants 6–7 weeks after seed germination, co-cultivation with Agrobacterium strain GV3101, and stringent selection on MS medium containing 4 mg l−1 hygromycin. Using this protocol we achieved 100% transformation efficiency for 6 of 14 F. vesca accessions tested. Accession PI 551572 was determined to be the best candidate for a model in F. vesca functional genomics research, as it showed the greatest propensity for callus formation, transformation, shoot regeneration, ex vitro establishment, and plant growth, requiring only 14–15 weeks to complete its life cycle in different seasons in the greenhouse.
机译:Fragaria vesca L.是商业八倍体草莓的二倍体(2n = 2x = 14)亲缘种,是蔷薇科功能基因组学研究的诱人模型。它的基因组较小,繁殖周期短,营养和种子繁殖方便,使vesca成为正向和反向遗传学实验的有希望的候选者。但是,缺少成千上万的T-DNA插入突变株系的系统生产和高通量基因验证所需的高效转化方案是一个主要瓶颈。我们描述了一种新的转化程序,该程序使用种子发芽后6-7周从原植物获得的新展开的三叶形叶中的叶外植体,与农杆菌菌株GV3101共同培养,并在含4 mg l-1 潮霉素。使用此协议,我们对14个F.vesca品种中的6个实现了100%的转化效率。编号PI 551572被确定为F.vesca功能基因组学研究模型的最佳候选者,因为它显示出愈伤组织形成,转化,枝条再生,离体建立和植物生长的最大倾向,仅需14-15周完成温室中不同季节的生命周期。

著录项

  • 来源
    《Planta》 |2006年第6期|1219-1230|共12页
  • 作者单位

    Virginia Bioinformatics Institute Virginia Polytechnic Institute and State University;

    Virginia Bioinformatics Institute Virginia Polytechnic Institute and State University;

    Virginia Bioinformatics Institute Virginia Polytechnic Institute and State UniversityDepartment of Horticulture Virginia Polytechnic Institute and State University;

    Virginia Bioinformatics Institute Virginia Polytechnic Institute and State UniversityDepartment of Horticulture Virginia Polytechnic Institute and State University;

    Department of Horticulture Virginia Polytechnic Institute and State University;

    Virginia Bioinformatics Institute Virginia Polytechnic Institute and State UniversityDepartment of Horticulture Virginia Polytechnic Institute and State University;

    Department of Horticulture Virginia Polytechnic Institute and State University;

    Virginia Bioinformatics Institute Virginia Polytechnic Institute and State UniversityDepartment of Horticulture Virginia Polytechnic Institute and State University;

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

    Rosaceae; T-DNA tagging; Insertional mutagenesis; Agrobacterium tumefaciens; Woodland strawberry;

    机译:蔷薇科;T-DNA标签;诱变;根癌土壤杆菌;林地草莓;

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