Long Yuchen, Goedhart Joachim, Schneijderberg Martinus, Terpstra Inez, Shimotohno Akie, Bouchet Benjamin P, Akhmanova Anna, Gadella Theodorus W J, Heidstra Renze, Scheres Ben, Blilou Ikram
Plant Developmental Biology, Plant Sciences, Wageningen University and Research Centre, Droevendaalsesteeg 1, Wageningen, 6708PB, the Netherlands.
Molecular Genetics, Department Biology, Padualaan 8, Utrecht, 3581CH, the Netherlands.
Plant J. 2015 Nov;84(4):773-84. doi: 10.1111/tpj.13038.
Intercellular signaling through trafficking of regulatory proteins is a widespread phenomenon in plants and can deliver positional information for the determination of cell fate. In the Arabidopsis root meristem, the cell fate determinant SHORT-ROOT (SHR), a GRAS domain transcription factor, acts as a signaling molecule from the stele to the adjacent layer to specify endodermal cell fate. Upon exiting the stele, SHR activates another GRAS domain transcription factor, SCARCROW (SCR), which, together with several BIRD/INDETERMINATE DOMAIN proteins, restricts movement of SHR to define a single cell layer of endodermis. Here we report that endodermal cell fate also requires the joint activity of both SCR and its closest homologue SCARECROW-LIKE23 (SCL23). We show that SCL23 protein moves with zonation-dependent directionality. Within the meristem, SCL23 exhibits short-ranged movement from ground tissue to vasculature. Away from the meristem, SCL23 displays long-range rootward movement into meristematic vasculature and a bidirectional radial spread, respectively. As a known target of SHR and SCR, SCL23 also interacts with SCR and SHR and can restrict intercellular outspread of SHR without relying on nuclear retention as SCR does. Collectively, our data show that SCL23 is a mobile protein that controls movement of SHR and acts redundantly with SCR to specify endodermal fate in the root meristem.
通过调控蛋白的运输进行细胞间信号传导是植物中一种普遍存在的现象,并且可以传递位置信息以决定细胞命运。在拟南芥根分生组织中,细胞命运决定因子SHORT-ROOT(SHR)是一种GRAS结构域转录因子,作为一种信号分子从维管束鞘细胞传递到相邻层以确定内皮层细胞命运。离开维管束鞘细胞后,SHR激活另一种GRAS结构域转录因子SCARCROW(SCR),SCR与几种BIRD/INDETERMINATE DOMAIN蛋白一起限制SHR的移动,从而界定内皮层的单个细胞层。在此我们报道,内皮层细胞命运还需要SCR及其最接近的同源物SCARECROW-LIKE23(SCL23)的共同作用。我们发现SCL23蛋白以分区依赖的方向性移动。在分生组织内,SCL23从基本组织向维管组织进行短距离移动。在远离分生组织的部位,SCL23分别向分生组织维管组织进行长距离的向根移动和双向的径向扩散。作为SHR和SCR的已知靶标,SCL23也与SCR和SHR相互作用,并且可以像SCR一样不依赖核滞留来限制SHR的细胞间扩散。总的来说,我们的数据表明SCL23是一种可移动的蛋白,它控制SHR的移动,并与SCR冗余作用以确定根分生组织中的内皮层命运。