Department of Plant Systems Biology, Flanders Institute for Biotechnology, Ghent, Belgium.
Plant Physiol. 2010 Nov;154(3):1183-95. doi: 10.1104/pp.110.158857. Epub 2010 Aug 25.
SHORT-ROOT (SHR) and SCARECROW (SCR) are required for stem cell maintenance in the Arabidopsis (Arabidopsis thaliana) root meristem, ensuring its indeterminate growth. Mutation of SHR and SCR genes results in disorganization of the quiescent center and loss of stem cell activity, resulting in the cessation of root growth. This paper reports on the role of SHR and SCR in the development of leaves, which, in contrast to the root, have a determinate growth pattern and lack a persistent stem cell niche. Our results demonstrate that inhibition of leaf growth in shr and scr mutants is not a secondary effect of the compromised root development but is caused by an effect on cell division in the leaves: a reduced cell division rate and early exit of the proliferation phase. Consistent with the observed cell division phenotype, the expression of SHR and SCR genes in leaves is closely associated with cell division activity in most cell types. The increased cell cycle duration is due to a prolonged S-phase duration, which is mediated by up-regulation of cell cycle inhibitors known to restrain the activity of the transcription factor, E2Fa. Therefore, we conclude that, in contrast to their specific roles in cortex/endodermis differentiation and stem cell maintenance in the root, SHR and SCR primarily function as general regulators of cell proliferation in leaves.
SHORT-ROOT (SHR) 和 SCARECROW (SCR) 是维持拟南芥根分生组织干细胞所必需的,确保其不定向生长。SHR 和 SCR 基因突变会导致静止中心的紊乱和干细胞活性的丧失,导致根生长停止。本文报道了 SHR 和 SCR 在叶片发育中的作用,与根相反,叶片具有有限的生长模式,缺乏持续的干细胞龛。我们的结果表明,shr 和 scr 突变体中叶片生长的抑制不是根发育受损的次生效应,而是由于对叶片细胞分裂的影响:细胞分裂率降低和增殖期提前结束。与观察到的细胞分裂表型一致,SHR 和 SCR 基因在叶片中的表达与大多数细胞类型的细胞分裂活性密切相关。细胞周期持续时间的增加是由于 S 期持续时间延长,这是由已知抑制转录因子 E2Fa 活性的细胞周期抑制剂的上调介导的。因此,我们得出结论,与它们在根中皮层/内皮层分化和干细胞维持中的特定作用相比,SHR 和 SCR 主要作为叶片中细胞增殖的一般调节剂发挥作用。