Gu Q, Ferrándiz C, Yanofsky M F, Martienssen R
Cold Spring Harbor Laboratory, Cold Spring Harbor, NY 11724, USA.
Development. 1998 Apr;125(8):1509-17. doi: 10.1242/dev.125.8.1509.
Fruit morphogenesis is a process unique to flowering plants, and yet little is known about its developmental control. Following fertilization, fruits typically undergo a dramatic enlargement that is accompanied by differentiation of numerous distinct cell types. We have identified a mutation in Arabidopsis called fruitfull (ful-1), which abolishes elongation of the silique after fertilization. The ful-1 mutation is caused by the insertion of a DsE transposable enhancer trap element into the 5' untranslated leader of the AGL8 MADS-box gene. beta-glucuronidase (GUS) reporter gene expression in the enhancer trap line is observed specifically in all cell layers of the valve tissue, but not in the replum, the septum or the seeds, and faithfully mimics RNA in situ hybridization data reported previously. The lack of coordinated growth of the fruit tissues leads to crowded seeds, a failure of dehiscence and, frequently, the premature rupture of the carpel valves. The primary defect of ful-1 fruits is within the valves, whose cells fail to elongate and differentiate. Stomata, which are frequent along the epidermis of wild-type valves, are completely eliminated in the ful mutant valves. In addition to the effect on fruit development, ful cauline leaves are broader than those of wild type and show a reduction in the number of internal cell layers. These data suggest that AGL8/FUL regulates the transcription of genes required for cellular differentiation during fruit and leaf development.
果实形态发生是开花植物特有的过程,但对其发育调控却知之甚少。受精后,果实通常会经历显著的膨大,同时伴随着多种不同细胞类型的分化。我们在拟南芥中鉴定出一个名为fruitfull(ful-1)的突变体,它在受精后消除了角果的伸长。ful-1突变是由一个DsE转座增强子捕获元件插入AGL8 MADS盒基因的5'非翻译前导区引起的。在增强子捕获系中,β-葡萄糖醛酸酶(GUS)报告基因的表达在瓣膜组织的所有细胞层中特异性观察到,但在胎座、隔膜或种子中未观察到,并且忠实地模拟了先前报道的RNA原位杂交数据。果实组织缺乏协调生长导致种子拥挤、开裂失败,并且经常导致心皮瓣膜过早破裂。ful-1果实的主要缺陷在于瓣膜,其细胞无法伸长和分化。野生型瓣膜表皮常见的气孔在ful突变体瓣膜中完全消失。除了对果实发育的影响外,ful茎生叶比野生型更宽,并且内部细胞层数减少。这些数据表明,AGL8/FUL在果实和叶片发育过程中调节细胞分化所需基因的转录。