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DOF 转录因子 Dof5.1 通过促进拟南芥中 Revoluta 的转录来影响叶片的轴向模式。

The DOF transcription factor Dof5.1 influences leaf axial patterning by promoting Revoluta transcription in Arabidopsis.

机构信息

Division of Bioscience and Bioinformatics, Myongji University, Yongin, Kyunggi-do 449-728, South Korea.

出版信息

Plant J. 2010 Nov;64(3):524-35. doi: 10.1111/j.1365-313X.2010.04346.x. Epub 2010 Oct 5.

Abstract

Dof proteins are transcription factors that have a conserved single zinc finger DNA-binding domain. In this study, we isolated an activation tagging mutant Dof5.1-D exhibiting an upward-curling leaf phenotype due to enhanced expression of the REV gene that is required for establishing adaxial-abaxial polarity. Dof5.1-D plants also had reduced transcript levels for IAA6 and IAA19 genes, indicating an altered auxin biosynthesis in Dof5.1-D. An electrophoretic mobility shift assay using the Dof5.1 DNA-binding motif and the REV promoter region indicated that the DNA-binding domain of Dof5.1 binds to a TAAAGT motif located in the 5'-distal promoter region of the REV promoter. Further, transient and chromatin immunoprecipitation assays verified binding activity of the Dof5.1 DNA-binding motif with the REV promoter. Consistent with binding assays, constitutive over-expression of the Dof5.1 DNA-binding domain in wild-type plants caused a downward-curling phenotype, whereas crossing Dof5.1-D to a rev mutant reverted the upward-curling phenotype of the Dof5.1-D mutant leaf to the wild-type. These results suggest that the Dof5.1 protein directly binds to the REV promoter and thereby regulates adaxial-abaxial polarity.

摘要

Dof 蛋白是一类转录因子,它们具有保守的单个锌指 DNA 结合域。在这项研究中,我们分离到一个激活标签突变体 Dof5.1-D,该突变体由于 REV 基因表达增强而表现出向上卷曲的叶片表型,REV 基因对于建立背腹极性是必需的。Dof5.1-D 植物的 IAA6 和 IAA19 基因的转录本水平也降低,表明 Dof5.1-D 中生长素生物合成发生改变。使用 Dof5.1 DNA 结合基序和 REV 启动子区域的电泳迁移率变动分析表明,Dof5.1 的 DNA 结合域与位于 REV 启动子 5'-远端启动子区域的 TAAAGT 基序结合。此外,瞬时和染色质免疫沉淀测定验证了 Dof5.1 DNA 结合基序与 REV 启动子的结合活性。与结合测定一致的是,在野生型植物中组成型过表达 Dof5.1 DNA 结合域会导致叶片向下卷曲的表型,而将 Dof5.1-D 与 rev 突变体杂交会使 Dof5.1-D 突变体叶片的向上卷曲表型恢复为野生型。这些结果表明,Dof5.1 蛋白直接与 REV 启动子结合,从而调节背腹极性。

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