Pagnussat Gabriela Carolina, Yu Hee-Ju, Sundaresan Venkatesan
Section of Plant Biology, University of California, Davis, California 95616, USA.
Plant Cell. 2007 Nov;19(11):3578-92. doi: 10.1105/tpc.107.054890. Epub 2007 Nov 30.
In Arabidopsis thaliana, the female gametophyte is a highly polarized structure consisting of four cell types: one egg cell and two synergids, one central cell, and three antipodal cells. In this report, we describe the characterization of a novel female gametophyte mutant, eostre, which affects establishment of cell fates in the mature embryo sac. The eostre phenotype is caused by misexpression of the homeodomain gene BEL1-like homeodomain 1 (BLH1) in the embryo sac. It is known that BELL-KNAT proteins function as heterodimers whose activities are regulated by the Arabidopsis ovate family proteins (OFPs). We show that the phenotypic effect of BLH1 overexpression is dependent upon the class II knox gene KNAT3, suggesting that KNAT3 must be expressed and functional during megagametogenesis. Moreover, disruption of At OFP5, a known interactor of KNAT3 and BLH1, partially phenocopies the eostre mutation. Our study indicates that suppression of ectopic activity of BELL-KNOX TALE complexes, which might be mediated by At OFP5, is essential for normal development and cell specification in the Arabidopsis embryo sac. As eostre-1 embryo sacs also show nuclear migration abnormalities, this study suggests that a positional mechanism might be directing establishment of cell fates in early megagametophyte development.
在拟南芥中,雌配子体是一种高度极化的结构,由四种细胞类型组成:一个卵细胞和两个助细胞、一个中央细胞以及三个反足细胞。在本报告中,我们描述了一种新型雌配子体突变体eostre的特征,该突变体影响成熟胚囊中细胞命运的建立。eostre表型是由胚囊中同源异型域基因BEL1类同源异型域1(BLH1)的错误表达引起的。已知BELL-KNAT蛋白作为异源二聚体发挥作用,其活性受拟南芥卵形家族蛋白(OFPs)调控。我们发现BLH1过表达的表型效应依赖于II类knox基因KNAT3,这表明KNAT3在大配子发生过程中必须表达且具有功能。此外,已知的KNAT3和BLH1相互作用因子At OFP5的破坏部分模拟了eostre突变。我们的研究表明,抑制可能由At OFP5介导的BELL-KNOX TALE复合体的异位活性对于拟南芥胚囊的正常发育和细胞特化至关重要。由于eostre-1胚囊也表现出核迁移异常,本研究表明一种位置机制可能在早期大配子体发育中指导细胞命运的建立。