Department of Botany, Kyoto University, Kyoto, Japan.
PLoS Genet. 2013;9(7):e1003655. doi: 10.1371/journal.pgen.1003655. Epub 2013 Jul 25.
The maintenance and reformation of gene expression domains are the basis for the morphogenic processes of multicellular systems. In a leaf primordium of Arabidopsis thaliana, the expression of FILAMENTOUS FLOWER (FIL) and the activity of the microRNA miR165/166 are specific to the abaxial side. This miR165/166 activity restricts the target gene expression to the adaxial side. The adaxial and abaxial specific gene expressions are crucial for the wide expansion of leaf lamina. The FIL-expression and the miR165/166-free domains are almost mutually exclusive, and they have been considered to be maintained during leaf development. However, we found here that the position of the boundary between the two domains gradually shifts from the adaxial side to the abaxial side. The cell lineage analysis revealed that this boundary shifting was associated with a sequential gene expression switch from the FIL-expressing (miR165/166 active) to the miR165/166-free (non-FIL-expressing) states. Our genetic analyses using the enlarged fil expression domain2 (enf2) mutant and chemical treatment experiments revealed that impairment in the plastid (chloroplast) gene expression machinery retards this boundary shifting and inhibits the lamina expansion. Furthermore, these developmental effects caused by the abnormal plastids were not observed in the genomes uncoupled1 (gun1) mutant background. This study characterizes the dynamic nature of the adaxial-abaxial specification process in leaf primordia and reveals that the dynamic process is affected by the GUN1-dependent retrograde signal in response to the failure of plastid gene expression. These findings advance our understanding on the molecular mechanism linking the plastid function to the leaf morphogenic processes.
基因表达域的维持和改造是多细胞系统形态发生过程的基础。在拟南芥叶片原基中,FILAMENTOUS FLOWER(FIL)的表达和 microRNA miR165/166 的活性是特定于腹侧的。这种 miR165/166 活性将靶基因的表达限制在背侧。腹侧和背侧特异基因的表达对于叶片薄片的广泛扩张至关重要。FIL 表达和 miR165/166 无活性域几乎是相互排斥的,并且它们被认为在叶片发育过程中得以维持。然而,我们在这里发现,这两个域之间的边界位置逐渐从腹侧向背侧移动。细胞谱系分析表明,这种边界移动与从 FIL 表达(miR165/166 活性)到 miR165/166 无活性(非 FIL 表达)状态的顺序基因表达转换有关。我们使用扩大的 fil 表达域 2(enf2)突变体和化学处理实验进行的遗传分析表明,质体(叶绿体)基因表达机制的损伤会延迟这种边界移动并抑制叶片扩张。此外,在基因组未偶联 1(gun1)突变体背景中没有观察到这种异常质体引起的发育效应。本研究描绘了叶片原基中腹-背侧特化过程的动态性质,并揭示了这种动态过程受到依赖于 GUN1 的逆行信号的影响,该信号响应质体基因表达的失败。这些发现增进了我们对将质体功能与叶片形态发生过程联系起来的分子机制的理解。