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A network of redundant bHLH proteins functions in all TTG1-dependent pathways of Arabidopsis.

机译:冗余的bHLH蛋白质网络在拟南芥的所有TTG1依赖性途径中起作用。

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摘要

GLABRA3 (GL3) encodes a bHLH protein that interacts with the WD repeat protein, TTG1. GL3 overexpression suppresses the trichome defect of the pleiotropic ttg1 mutations. However, single gl3 mutations only affect the trichome pathway with a modest trichome number reduction. A novel unlinked bHLH-encoding locus is described here, ENHANCER OF GLABRA3 (EGL3). When mutated, egl3 gives totally glabrous plants only in the gl3 mutant background. The double bHLH mutant, gl3 egl3, has a pleiotropic phenotype like ttg1 having defective anthocyanin production, seed coat mucilage production, and position-dependent root hair spacing. Furthermore, the triple bHLH mutant, gl3 egl3 tt8, phenocopies the ttg1 mutation. Yeast two-hybrid and plant overexpression studies show that EGL3, like GL3, interacts with TTG1, the myb proteins GL1, PAP1 and 2, CPC and TRY, and it will form heterodimers with GL3. These results suggest a combinatorial model for TTG1-dependent pathway regulation by this trio of partially functionally redundant bHLH proteins.
机译:GLABRA3(GL3)编码与WD重复蛋白TTG1相互作用的bHLH蛋白。 GL3过表达抑制了多效性ttg1突变的毛状体缺陷。但是,单个gl3突变仅以适度的毛状体数减少影响毛状体途径。本文描述了新型的未链接的bHLH编码基因座,即ENGLANCER OF GLABRA3(EGL3)。突变后,egl3仅在gl3突变体背景下产生完全无鳞的植物。双重bHLH突变体gl3 egl3具有像ttg1的多效性表型,其花色苷生成量,种皮粘液生成量和位置相关的根毛间距均存在缺陷。此外,三重bHLH突变体gl3 egl3 tt8表型复制了ttg1突变。酵母两杂交和植物过表达研究表明,EGL3与GL3一样,与TTG1,myb蛋白GL1,PAP1和2,CPC和TRY相互作用,并且将与GL3形成异二聚体。这些结果表明通过三部分功能性冗余bHLH蛋白对TTG1依赖性途径进行调控的组合模型。

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