Molecular Signaling Laboratory, Department of Chemistry, Seoul National University, Seoul, Korea.
Planta. 2010 Jul;232(2):353-66. doi: 10.1007/s00425-010-1178-x. Epub 2010 May 11.
The Arabidopsis anther has a bilateral symmetry with four lobes, each consisting of four distinct layers of somatic cells from the outer to inner side: epidermis, endothecium, middle layer and tapetum. The tapetum is a layer of cells comprising the inner surface of the pollen wall. It plays an important role in anther development by providing enzymes, materials and nutrients required for pollen maturation. Genes and molecular mechanisms underlying tapetum formation and pollen wall biosynthesis have been studied in Arabidopsis. However, tapetum degeneration and anther dehiscence have not been well characterized at the molecular level. Here, we report that an Arabidopsis gene, designated reduced male fertility (RMF), regulates degeneration of tapetum and middle layer during anther development. The Arabidopsis dominant mutant rmf-1D overexpressing the RMF gene exhibited pleiotropic phenotypes, including dwarfed growth with small, dark-green leaves and low male fertility. Tapetum development and subsequent degeneration were impaired in the mutant. Accordingly, pollen maturation was disturbed, reducing the male fertility. In contrast, tapetum degeneration was somewhat accelerated in the RMF RNAi plants. The RMF gene was expressed predominantly in the anther, particularly in the pollen grains. Notably, the RMF protein contains an F-box motif and is localized to the nucleus. It physically interacts with the Arabidopsis-Skp1-like1 protein via the F-box motif. These observations indicate that the RMF gene encodes an F-box protein functioning in tapetum degeneration during anther development.
拟南芥花药具有两侧对称的四个裂片,每个裂片由外向内依次包括表皮、内皮层、中层和绒毡层四层体细胞。绒毡层是花粉外壁内表面的一层细胞。它在花药发育过程中起着重要作用,为花粉成熟提供所需的酶、物质和营养。拟南芥中已经研究了绒毡层形成和花粉壁生物合成的基因和分子机制。然而,在分子水平上,绒毡层退化和花药开裂尚未得到很好的描述。在这里,我们报道了一个拟南芥基因,命名为雄性育性降低(RMF),它调节花药发育过程中绒毡层和中层的退化。拟南芥显性突变体 rmf-1D 过度表达 RMF 基因表现出多种表型,包括生长矮小、叶片小而深绿色和雄性育性降低。突变体中绒毡层发育和随后的退化受到损害。因此,花粉成熟受到干扰,雄性育性降低。相比之下,RMF RNAi 植物中的绒毡层退化略有加速。RMF 基因主要在花药中表达,特别是在花粉粒中。值得注意的是,RMF 蛋白含有一个 F-box 基序,并且定位于细胞核中。它通过 F-box 基序与拟南芥-Skp1-like1 蛋白物理相互作用。这些观察结果表明,RMF 基因编码一种 F-box 蛋白,在花药发育过程中参与绒毡层退化。