Department of Biology, Bielefeld University, 33594, Bielefeld, Germany.
Plant Cell Rep. 2010 Mar;29(3):285-94. doi: 10.1007/s00299-010-0821-0. Epub 2010 Jan 28.
The WD40 repeat protein TRANSPARENT TESTA GLABRA1 (TTG1) is involved in a multitude of developmental and biochemical reactions in Arabidopsis thaliana such as the production of seed coat colour and mucilage, pigmentation by anthocyanins as well as the formation of trichomes and root hairs. In this study, a putative TTG1 homologue was isolated from apple (Malus x domestica Borkh.) showing 80.2% identity to A. thaliana TTG1 on nucleotide and 90.7% similarity on amino acid level. The MdTTG1 candidate was able to activate the AtBAN promoter in cooperation with the A. thaliana transcription factors TT2 and TT8 in A. thaliana protoplasts. This indicates that the encoded protein can be integrated into the complex that activates BAN in A. thaliana, and that a similar complex might also be present in apple. When transformed into ttg1 mutants of A. thaliana, the apple sequence was able to restore trichome growth, anthocyanin production in young seedlings as well as proanthocyanidin production in seeds. Additionally, roots of complemented mutant plants showed root hair formation resembling wild type. These results show that the studied apple WD40 gene is a functional homologue of AtTTG1 and we refer to this gene as MdTTG1.
WD40 重复蛋白 TRANSPARENT TESTA GLABRA1(TTG1)参与拟南芥中的多种发育和生化反应,例如种皮颜色和粘液的产生、类黄酮的色素沉着以及毛状体和根毛的形成。在这项研究中,从苹果(Malus x domestica Borkh.)中分离出一个假定的 TTG1 同源物,其核苷酸序列与拟南芥 TTG1 具有 80.2%的同一性,氨基酸水平具有 90.7%的相似性。MdTTG1 候选物能够与拟南芥转录因子 TT2 和 TT8 一起在拟南芥原生质体中激活 AtBAN 启动子。这表明编码的蛋白质可以整合到激活拟南芥 BAN 的复合物中,并且在苹果中也可能存在类似的复合物。当转化为拟南芥 ttg1 突变体时,苹果序列能够恢复毛状体生长、幼苗中类黄酮的产生以及种子中原花青素的产生。此外,互补突变体植物的根显示出类似于野生型的根毛形成。这些结果表明,研究的苹果 WD40 基因是 AtTTG1 的功能同源物,我们将该基因称为 MdTTG1。