The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, POB 12 Rehovot 76100, Israel.
Development. 2014 Feb;141(4):830-41. doi: 10.1242/dev.104687.
In plants, the shoot apical meristem (SAM) serves as a reservoir of pluripotent stem cells from which all above ground organs originate. To sustain proper growth, the SAM must maintain homeostasis between the self-renewal of pluripotent stem cells and cell recruitment for lateral organ formation. At the core of the network that regulates this homeostasis in Arabidopsis are the WUSCHEL (WUS) transcription factor specifying stem cell fate and the CLAVATA (CLV) ligand-receptor system limiting WUS expression. In this study, we identified the ERECTA (ER) pathway as a second receptor kinase signaling pathway that regulates WUS expression, and therefore shoot apical and floral meristem size, independently of the CLV pathway. We demonstrate that reduction in class III HD-ZIP and ER function together leads to a significant increase in WUS expression, resulting in extremely enlarged shoot meristems and a switch from spiral to whorled vegetative phyllotaxy. We further show that strong upregulation of WUS in the inflorescence meristem leads to ectopic expression of the AGAMOUS homeotic gene to a level that switches cell fate from floral meristem founder cell to carpel founder cell, suggesting an indirect role for ER in regulating floral meristem identity. This work illustrates the delicate balance between stem cell specification and differentiation in the meristem and shows that a shift in this balance leads to abnormal phyllotaxy and to altered reproductive cell fate.
在植物中,茎尖分生组织(SAM)作为多能干细胞的储库,所有地上器官都由此起源。为了维持正常生长,SAM 必须在多能干细胞的自我更新和侧向器官形成所需的细胞募集之间维持平衡。在调控拟南芥这种平衡的网络核心是 WUSCHEL(WUS)转录因子,它决定干细胞命运,而 CLAVATA(CLV)配体-受体系统限制 WUS 的表达。在这项研究中,我们确定 ERECTA(ER)途径是第二个调节 WUS 表达的受体激酶信号通路,因此独立于 CLV 途径调节茎尖和花分生组织的大小。我们证明,减少 III 类 HD-ZIP 和 ER 的功能会导致 WUS 表达显著增加,从而导致茎分生组织极度增大,并从螺旋状叶序转变为轮生叶序。我们进一步表明,在花序分生组织中强烈上调 WUS 会导致 AGAMOUS 同源基因的异位表达,达到将细胞命运从花分生组织起始细胞转变为心皮起始细胞的水平,这表明 ER 在调节花分生组织身份方面具有间接作用。这项工作说明了分生组织中干细胞特化和分化之间的微妙平衡,并表明这种平衡的转变会导致异常的叶序和改变生殖细胞命运。