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Alteration of floral organ identity in rice through ectopic expression of OsMADS16

机译:通过异位表达OsMADS16改变水稻中花器官的身份

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摘要

We used a transgenic approach and yeast two-hybrid experiments to study the role of the rice (Oryza sativa L.) B-function MADS-box gene, OsMADS16. Transgenic rice plants were generated that ectopically expressed OsMADS16 under the control of the maize (Zea mays L.) ubiquitin1 promoter. Microscopic observations revealed that the innermost-whorl carpels had been replaced by stamen-like organs, which resembled the flowers of the previously described Arabidopsis thaliana (L.) Heynh. mutation superman as well as those ectopically expressing the AP3 gene. These results indicate that expression of OsMADS16 in the innermost whorl induces stamen development. Occasionally, carpels had completely disappeared. In addition, ectopic expression of OsMADS16 enhanced expression of OsMADS4, another B-function gene, causing superman phenotypes. In the yeast two-hybrid system, OsMADS16 did not form a homodimer but, rather, the protein interacted with OsMADS4. OsMADS16 also interacted with OsMADS6 and OSMADS8, both of which are homologous to SEPALLATA proteins required for the proper function of class-B and class-C genes in Arabidopsis. Based on the gene expression pattern and our yeast two-hybrid data, we discuss a quartet model of MADS-domain protein interactions in the lodicule and stamen whorls of rice florets.
机译:我们使用转基因方法和酵母双杂交实验来研究水稻(Oryza sativa L.)B功能MADS-box基因OsMADS16的作用。产生了在玉米(Zea mays L.)ubiquitin1启动子控制下异位表达OsMADS16的转基因水稻植株。显微镜观察发现,最内层的心皮已被雄蕊状器官所替代,类似于先前描述的拟南芥Heynh的花。突变超人以及那些异位表达AP3基因的人。这些结果表明,OsMADS16在最里面的螺旋中的表达诱导雄蕊发育。偶尔,心皮完全消失了。此外,OsMADS16的异位表达增强了另一个B功能基因OsMADS4的表达,从而导致超人表型。在酵母双杂交系统中,OsMADS16没有形成同源二聚体,而是与OsMADS4相互作用。 OsMADS16还与OsMADS6和OSMADS8相互作用,二者均与拟南芥中B类和C类基因的正常功能所需的SEPALLATA蛋白同源。基于基因表达模式和我们的酵母双杂交数据,我们讨论了水稻小花的叶柄和雄蕊中的MADS-域蛋白相互作用的四重模型。

著录项

  • 来源
    《Planta》 |2003年第6期|904-911|共8页
  • 作者单位

    National Research Laboratory of Plant Functional Genomics Division of Molecular and Life Sciences Pohang University of Science and Technology (POSTECH);

    Plant Metabolism Research Center Graduate School of Biotechnology Kyung Hee University;

    National Research Laboratory of Plant Functional Genomics Division of Molecular and Life Sciences Pohang University of Science and Technology (POSTECH);

    Department of Molecular Biology Pusan National University;

    Graduate School of Life Science and Biotechnology Korea University;

    Graduate School of Life Science and Biotechnology Korea University;

    National Research Laboratory of Plant Functional Genomics Division of Molecular and Life Sciences Pohang University of Science and Technology (POSTECH);

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

    APETALA3; Floral organ identity; MADS-box gene; Oryza; Protein–protein interaction; Transgenic rice;

    机译:APETALA3;花卉器官同一性;MADS-box基因;Oryza;蛋白-蛋白质相互作用;转基因水稻;

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