Kuppusamy Kavitha T, Chen Andrew Y, Nemhauser Jennifer L
Department of Biology, University of Washington, Seattle, WA 98195-1800, USA.
Proc Natl Acad Sci U S A. 2009 May 12;106(19):8073-6. doi: 10.1073/pnas.0811633106. Epub 2009 Apr 28.
The simple structure of Arabidopsis roots provides an excellent model system to study epidermal cell fate specification. Epidermal cells in contact with 2 underlying cortical cells differentiate into hair cells (H cells; trichoblasts), whereas cells that contact only a single cortical cell differentiate into mature hairless cells (N cells; atrichoblasts). This position-dependent patterning, in combination with the constrained orientation of cell divisions, results in hair and nonhair cell files running longitudinally along the root epidermis. Here, we present strong evidence that steroid hormones called brassinosteroids (BRs) are required to maintain position-dependent fate specification in roots. We show that BRs are required for normal expression levels and patterns of WEREWOLF (WER) and GLABRA2 (GL2), master regulators of epidermal patterning. Loss of BR signaling results in loss of hair cells in H positions, likely as a consequence of reduced expression of CAPRICE (CPC), a direct downstream target of WER. Our observations demonstrate that in addition to their well-known role in cell expansion, BRs play an essential role in directing cell fate.
拟南芥根的简单结构为研究表皮细胞命运决定提供了一个极佳的模型系统。与下方两个皮层细胞接触的表皮细胞分化为毛细胞(H细胞;根毛细胞),而仅与单个皮层细胞接触的细胞则分化为成熟的无毛细胞(N细胞;非根毛细胞)。这种位置依赖性模式,结合细胞分裂的受限方向,导致根表皮上的毛细胞和非毛细胞列纵向排列。在此,我们提供了有力证据表明,称为油菜素甾体(BRs)的类固醇激素是维持根中位置依赖性命运决定所必需的。我们表明,BRs对于表皮模式形成的主要调节因子WEREWOLF(WER)和GLABRA2(GL2)的正常表达水平和模式是必需的。BR信号的丧失导致H位置的毛细胞缺失,这可能是WER的直接下游靶点CAPRICE(CPC)表达降低的结果。我们的观察结果表明,除了其在细胞扩张中众所周知的作用外,BRs在指导细胞命运方面也起着至关重要的作用。