State Key Lab of Plant Genomics, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China.
Biochem J. 2013 Jan 15;449(2):373-88. doi: 10.1042/BJ20110060.
Plant-specific DOF (DNA-binding with one finger)-type transcription factors regulate various biological processes. In the present study we characterized a silique-abundant gene AtDOF (Arabidopsis thaliana DOF) 4.2 for its functions in Arabidopsis. AtDOF4.2 is localized in the nuclear region and has transcriptional activation activity in both yeast and plant protoplast assays. The T-M-D motif in AtDOF4.2 is essential for its activation. AtDOF4.2-overexpressing plants exhibit an increased branching phenotype and mutation of the T-M-D motif in AtDOF4.2 significantly reduces branching in transgenic plants. AtDOF4.2 may achieve this function through the up-regulation of three branching-related genes, AtSTM (A. thaliana SHOOT MERISTEMLESS), AtTFL1 (A. thaliana TERMINAL FLOWER1) and AtCYP83B1 (A. thaliana CYTOCHROME P450 83B1). The seeds of an AtDOF4.2-overexpressing plant show a collapse-like morphology in the epidermal cells of the seed coat. The mucilage contents and the concentration and composition of mucilage monosaccharides are significantly changed in the seed coat of transgenic plants. AtDOF4.2 may exert its effects on the seed epidermis through the direct binding and activation of the cell wall loosening-related gene AtEXPA9 (A. thaliana EXPANSIN-A9). The dof4.2 mutant did not exhibit changes in branching or its seed coat; however, the silique length and seed yield were increased. AtDOF4.4, which is a close homologue of AtDOF4.2, also promotes shoot branching and affects silique size and seed yield. Manipulation of these genes should have a practical use in the improvement of agronomic traits in important crops.
植物特异性 DOF(具有一个手指的 DNA 结合)- 型转录因子调节各种生物过程。在本研究中,我们对拟南芥富含种皮的基因 AtDOF(拟南芥 DOF)4.2 进行了功能表征。AtDOF4.2 定位于核区,在酵母和植物原生质体测定中具有转录激活活性。AtDOF4.2 中的 T-M-D 基序对于其激活是必需的。AtDOF4.2 过表达植物表现出增加的分枝表型,并且 AtDOF4.2 中的 T-M-D 基序的突变显着减少转基因植物中的分枝。AtDOF4.2 可能通过上调三个分枝相关基因 AtSTM(拟南芥 SHOOT MERISTEMLESS)、AtTFL1(拟南芥 TERMINAL FLOWER1)和 AtCYP83B1(拟南芥 CYTOCHROME P450 83B1)来实现此功能。AtDOF4.2 过表达植物的种子在种皮的表皮细胞中表现出崩溃样形态。转基因植物种皮的粘液含量以及粘液单糖的浓度和组成显着改变。AtDOF4.2 可能通过直接结合和激活细胞壁松弛相关基因 AtEXPA9(拟南芥 EXPANSIN-A9)对种子表皮施加作用。dof4.2 突变体在分枝或其种皮中没有变化;然而,长角果长度和种子产量增加。AtDOF4.4 是 AtDOF4.2 的近同源物,也促进了分枝,并影响了长角果的大小和种子产量。这些基因的操纵在改良重要作物的农艺性状方面应该具有实际用途。