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Assessment of conditions affecting Agrobacterium-mediated soybean transformation using the cotyledonary node explant

机译:使用子叶节外植体评估影响农杆菌介导的大豆转化的条件

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摘要

Conditions affecting Agrobacterium-mediated transformation of soybean [Glycine max (L.) Merr.], including seed vigor of explant source, selection system, and cocultivation conditions, were investigated. A negative correlation between seed sterilization duration and seed vigor, and a positive correlation between seed vigor and regenerability of explants were observed in the study, suggesting that use of high vigor seed and minimum seed sterilization duration can further improve transformation efficiency. Selection schemes using glufosinate or bialaphos as selective agents in vitro were assessed. Glufosinate selection enhanced soybean transformation as compared to bialaphos. The use of 6 mg L-1 glufosinate during shoot induction and shoot elongation stages yielded higher final transformation efficiency ranging from 2.0% to 6.3% while bialaphos at 4 to 6 mg L-1 gave 0% to 2.1% efficiency. Including cysteine and DTT during cocultivation increased the transformation efficiency from 0.2–0.9% to 0.6–2.9%. This treatment also improved T-DNA transfer as indicated by enhanced transient GUS expression. Shoot regeneration and Agrobacterium infection were attained in twelve soybean cultivars belonging to maturity groups I-VI. These cultivars maybe amenable to genetic transformation and may provide a valuable tool in soybean improvement programs.
机译:研究了影响农杆菌介导的大豆转化的条件,包括外植体种子活力,选择系统和共培养条件。在研究中观察到种子灭菌持续时间与种子活力之间呈负相关,种子活力与外植体可再生性之间呈正相关,这表明使用高活力种子和最小种子灭菌持续时间可以进一步提高转化效率。评估了使用草铵膦或双丙氨磷作为体外选择剂的选择方案。与双丙氨磷相比,草铵膦选择增强了大豆的转化。在枝条诱导和枝条伸长阶段使用6 mg L-1 草铵膦可产生较高的最终转化效率,范围从2.0%至6.3%,而在4至6 mg L-1 中的双丙氨磷则将0%转化为效率2.1%。共培养期间包括半胱氨酸和DTT的转化效率从0.2-0.9%提高到0.6-2.9%。如增强的瞬时GUS表达所表明的,该处理还改善了T-DNA转移。在属于I-VI成熟组的十二个大豆品种中获得了芽的再生和土壤杆菌的感染。这些品种可能适合遗传转化,并可能为大豆改良计划提供有价值的工具。

著录项

  • 来源
    《Euphytica》 |2004年第2期|167-179|共13页
  • 作者单位

    Plant Transformation Facility Department of Agronomy Iowa State University;

    Plant Transformation Facility Department of Agronomy Iowa State UniversityCollege of Life Science Zhejiang University;

    Plant Transformation Facility Department of Agronomy Iowa State UniversityPlant Biology Division The Samuel Roberts Noble Foundation Inc.;

    Plant Transformation Facility Department of Agronomy Iowa State UniversityPlant Transformation Core Facility University of Missouri-Columbia;

    Plant Transformation Facility Department of Agronomy Iowa State UniversityDepartment of Horticulture Iowa State University;

    Plant Transformation Facility Department of Agronomy Iowa State University;

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

    Agrobacterium tumefaciens; cysteine; glufosinate; Glycine max; transformation;

    机译:根癌农杆菌;半胱氨酸;草铵膦;最大大豆;转化;

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