Shi Dong-Qiao, Liu Jie, Xiang Yan-Hui, Ye De, Sundaresan Venkatesan, Yang Wei-Cai
Laboratory of Molecular and Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China.
Plant Cell. 2005 Aug;17(8):2340-54. doi: 10.1105/tpc.105.033563. Epub 2005 Jun 24.
The progression of mitotic division cycles and synchronous development between and within the male and female reproductive organs are essential for plant sexual reproduction. Little is known about the genetic control of the progression of mitotic cycles of the haploid genome during gametogenesis in higher plants. Here, we report the phenotypic and molecular characterization of an Arabidopsis thaliana mutant, slow walker1 (swa1), in which the progression of the mitotic division cycles of the female gametophyte was disrupted. Confocal microscopy revealed that megagametophyte development was asynchronous in swa1, causing embryo sacs to arrest at two-, four-, or eight-nucleate stages within the same pistil. A delayed pollination experiment showed that a small fraction of the swa1 embryo sacs were able to develop into functional female gametophytes. The swa1 mutation also showed a slight reduction in penetrance through the male gametophyte, although the pollen grains were morphologically normal. Molecular analysis indicates that SWA1 encodes a protein with six WD40 repeats that is localized in the nucleolus in interphase cells. The SWA1 gene is expressed in cells undergoing active cell divisions, including functional megaspores and the female gametophytic cells. RNA interference results indicated that knockout of SWA1 inhibited root growth significantly and led to the accumulation of unprocessed 18S pre-rRNA. These data suggest that SWA1 most likely plays a role in rRNA biogenesis that is essential for the progression of the mitotic division cycles during gametogenesis in plants.
有丝分裂周期的进程以及雌雄生殖器官之间和内部的同步发育对于植物有性生殖至关重要。关于高等植物配子发生过程中单倍体基因组有丝分裂周期进程的遗传控制知之甚少。在此,我们报道了拟南芥突变体slow walker1(swa1)的表型和分子特征,该突变体中雌配子体的有丝分裂周期进程被破坏。共聚焦显微镜观察显示,swa1中的大孢子体发育不同步,导致胚囊在同一雌蕊内停滞在二核、四核或八核阶段。延迟授粉实验表明,一小部分swa1胚囊能够发育成有功能的雌配子体。尽管花粉粒形态正常,但swa1突变在雄配子体中的外显率也略有降低。分子分析表明,SWA1编码一种具有六个WD40重复序列的蛋白质,该蛋白质在间期细胞中定位于核仁。SWA1基因在进行活跃细胞分裂的细胞中表达,包括功能性大孢子和雌配子体细胞。RNA干扰结果表明,敲除SWA1会显著抑制根生长,并导致未加工的18S前体rRNA积累。这些数据表明,SWA1很可能在rRNA生物合成中起作用,这对于植物配子发生过程中有丝分裂周期的进程至关重要。