Miyashima Shunsuke, Hashimoto Takashi, Nakajima Keiji
Graduate School of Biological Sciences, Nara Institute of Science and Technology, 8916-5 Takayama, Ikoma, Nara 630-0192, Japan.
Plant Cell Physiol. 2009 Mar;50(3):626-34. doi: 10.1093/pcp/pcp020. Epub 2009 Feb 2.
The formation of radially symmetric tissue patterns is one of the most basic processes in the development of vascular plants. In Arabidopsis thaliana, plant-specific GRAS-type transcription factors, SHORT-ROOT (SHR) and SCARECROW (SCR), are required for asymmetric cell divisions that separate two ground tissue cell layers, the endodermis and cortex, as well as for endodermal cell fate specification. While loss of SHR or SCR results in a single-layered ground tissue, radially symmetric cellular patterns are still maintained, suggesting that unknown regulatory mechanisms act independently of the SHR/SCR-dependent pathway. In this study, we identified a novel root radial pattern mutant and found that it is a new argonaute1 (ago1) allele. Multiple ago1 mutant alleles contained supernumerary ground tissue cell layers lacking a concentric organization, while expression patterns of SHR and SCR were not affected, revealing a previously unreported role for AGO1 in root ground tissue patterning. Analyses of ago1 scr double mutants demonstrated that the simultaneous loss of the two pathways caused a dramatic reduction in cellular organization and ground tissue identity as compared with the single mutants. Based on these results, we propose that highly symmetric root ground tissue patterns are maintained by the actions of two independent pathways, one using post-transcriptional regulation mediated by AGO1 and the other using the SHR/SCR transcriptional regulator.
径向对称组织模式的形成是维管植物发育过程中最基本的过程之一。在拟南芥中,植物特有的GRAS型转录因子SHORT-ROOT(SHR)和SCARECROW(SCR)对于将两个基本组织细胞层(内皮层和皮层)分开的不对称细胞分裂以及内皮层细胞命运的决定是必需的。虽然SHR或SCR的缺失会导致单层基本组织,但径向对称的细胞模式仍然得以维持,这表明未知的调控机制独立于SHR/SCR依赖途径发挥作用。在本研究中,我们鉴定出一个新的根径向模式突变体,并发现它是一个新的AGO1等位基因。多个AGO1突变等位基因包含多余的基本组织细胞层,这些细胞层缺乏同心组织,而SHR和SCR的表达模式不受影响,揭示了AGO1在根基本组织模式形成中以前未报道的作用。AGO1 SCR双突变体的分析表明,与单突变体相比,这两条途径的同时缺失导致细胞组织和基本组织特征显著减少。基于这些结果,我们提出高度对称的根基本组织模式由两条独立途径的作用维持,一条途径利用AGO1介导的转录后调控,另一条途径利用SHR/SCR转录调节因子。