Sicard Adrien, Petit Johann, Mouras Armand, Chevalier Christian, Hernould Michel
Institut National de la Recherche Agronomique, Université de Bordeaux, Unité Mixte de Recherche 619 sur la Biologie du Fruit, Institut Fédératif de Recherche 103, BP 81, F-33883 Villenave d'Ornon Cedex, France.
Plant J. 2008 Aug;55(3):415-27. doi: 10.1111/j.1365-313X.2008.03520.x. Epub 2008 Apr 12.
Plants have the ability to form new organs as a result of indeterminate growth ensured by specific regions of pluripotent cells, called meristems. Flowers are produced by the activity of floral meristems which differ from vegetative meristems in their determinate fate. Transcriptional complexes associating C-, D- and E-type MADS box proteins are responsible for flower determinacy by controlling the stem cell population within the floral meristem. We report here that the INHIBITOR OF MERISTEM ACTIVITY (IMA) gene encoding a mini zinc finger (MIF) protein from tomato (Solanum lycopersicum) regulates the processes of flower and ovule development. IMA inhibits cell proliferation during floral termination, controls the number of carpels during floral development and acts as a repressor of the meristem organizing centre gene WUSCHEL. Underexpression of IMA prevents the formation of gametophytic tissue, which is replaced by an undetermined sporophytic tissue. Molecular analyses of MADS box gene expression revealed that IMA participates in the termination of floral meristems and initiation of ovule primordia by activating D-type gene expression. Taken together, our data indicate that both termination of floral meristems and differentiation of nucelli during ovule development require a similar mechanism involving the repression of WUSCHEL and the activation of D-class genes.
植物具有形成新器官的能力,这是由多能细胞的特定区域(称为分生组织)确保的不确定生长的结果。花是由花分生组织的活动产生的,花分生组织在其确定的命运上与营养分生组织不同。与C型、D型和E型MADS盒蛋白相关的转录复合物通过控制花分生组织内的干细胞群体来决定花的确定性。我们在此报告,编码来自番茄(Solanum lycopersicum)的小锌指(MIF)蛋白的分生组织活性抑制剂(IMA)基因调节花和胚珠发育过程。IMA在花终止期间抑制细胞增殖,在花发育过程中控制心皮数量,并作为分生组织组织中心基因WUSCHEL的阻遏物。IMA的表达不足会阻止配子体组织的形成,取而代之的是不确定的孢子体组织。对MADS盒基因表达的分子分析表明,IMA通过激活D型基因表达参与花分生组织的终止和胚珠原基的起始。综上所述,我们的数据表明,花分生组织的终止和胚珠发育过程中珠心的分化都需要一种类似的机制,即抑制WUSCHEL和激活D类基因。