Wyrzykowska Joanna, Schorderet Martine, Pien Stéphane, Gruissem Wilhelm, Fleming Andrew J
Institute of Plant Sciences, Swiss Federal Institute of Technology Zürich, CH-8092 Zurich, Switzerland.
Plant Physiol. 2006 Aug;141(4):1338-48. doi: 10.1104/pp.106.083022. Epub 2006 Jun 30.
The shoot apical meristem contains cells that undergo continual growth and division to generate the building blocks for the aerial portion of the plant. As cells leave the meristem, they undergo differentiation to form specific cell types. Most notably, heterotrophic cells of the meristem rapidly gain autotrophic capability by synthesis and assembly of components of the chloroplast. At the same time, cells undergo enlargement via vacuolation. Despite significant advances in the characterization of transcriptional networks involved in meristem maintenance and leaf determination, our understanding of the actual mechanism of meristem cell differentiation remains very limited. Using a microinduction technique, we show that local, transient overexpression of a retinoblastoma-related (RBR) protein in the shoot apical meristem is sufficient to trigger cells in the meristem to undergo the initial stages of differentiation. Taken together with recent data showing that RBR protein plays a key role in restricting stem cell differentiation in the root apical meristem, our data contribute to an emerging picture of RBR proteins as a central part of the mechanism controlling meristem cell differentiation.
茎尖分生组织包含不断生长和分裂的细胞,以生成植物地上部分的构建单元。当细胞离开分生组织时,它们会经历分化以形成特定的细胞类型。最值得注意的是,分生组织的异养细胞通过叶绿体成分的合成和组装迅速获得自养能力。与此同时,细胞通过液泡化进行扩大。尽管在参与分生组织维持和叶片决定的转录网络的表征方面取得了重大进展,但我们对分生组织细胞分化实际机制的理解仍然非常有限。使用微诱导技术,我们表明在茎尖分生组织中局部、瞬时过表达视网膜母细胞瘤相关(RBR)蛋白足以触发分生组织中的细胞经历分化的初始阶段。结合最近的数据表明RBR蛋白在限制根尖分生组织中的干细胞分化中起关键作用,我们的数据有助于形成一种新的认识,即RBR蛋白是控制分生组织细胞分化机制的核心部分。