Rishmawi Louai, Pesch Martina, Juengst Christian, Schauss Astrid C, Schrader Andrea, Hülskamp Martin
Biocenter, Cologne University, Botanical Institute, 50674 Cologne, Germany.
Plant Physiol. 2014 May;165(1):186-95. doi: 10.1104/pp.113.233775. Epub 2014 Mar 27.
In Arabidopsis (Arabidopsis thaliana), root hairs are formed in cell files over the cleft of underlying cortex cells. This pattern is established by a well-known gene regulatory network of transcription factors. In this study, we show that WRKY75 suppresses root hair development in nonroot hair files and that it represses the expression of TRIPTYCHON and CAPRICE. The WRKY75 protein binds to the CAPRICE promoter in a yeast one-hybrid assay. Binding to the promoter fragment requires an intact WRKY protein-binding motif, the W box. A comparison of the spatial expression of WRKY75 and the localization of the WRKY75 protein revealed that WRKY75 is expressed in the pericycle and vascular tissue and that the WRKY75 RNA or protein moves into the epidermis.
在拟南芥中,根毛在下层皮层细胞裂隙上方的细胞列中形成。这种模式是由一个众所周知的转录因子基因调控网络建立的。在本研究中,我们表明WRKY75抑制非根毛细胞列中的根毛发育,并且它抑制TRIPTYCHON和CAPRICE的表达。在酵母单杂交试验中,WRKY75蛋白与CAPRICE启动子结合。与启动子片段的结合需要完整的WRKY蛋白结合基序,即W盒。对WRKY75的空间表达和WRKY75蛋白定位的比较表明,WRKY75在中柱鞘和维管组织中表达,并且WRKY75 RNA或蛋白会移动到表皮中。