Wang Hua, Jones Brian, Li Zhengguo, Frasse Pierre, Delalande Corinne, Regad Farid, Chaabouni Salma, Latché Alain, Pech Jean-Claude, Bouzayen Mondher
Unité Mixte de Recherche 990, Institut National de la Recherche Agronomique/Institut National Polytechnique-Ecole Nationale Supérieure Agronomique Toulouse, 31326 Castanet-Tolosan Cedex, France.
Plant Cell. 2005 Oct;17(10):2676-92. doi: 10.1105/tpc.105.033415. Epub 2005 Aug 26.
Auxin/indole-3-acetic acid (Aux/IAA) proteins are transcriptional regulators that mediate many aspects of plant responses to auxin. While functions of most Aux/IAAs have been defined mainly by gain-of-function mutant alleles in Arabidopsis thaliana, phenotypes associated with loss-of-function mutations have been scarce and subtle. We report here that the downregulation of IAA9, a tomato (Solanum lycopersicum) gene from a distinct subfamily of Aux/IAA genes, results in a pleiotropic phenotype, consistent with its ubiquitous expression pattern. IAA9-inhibited lines have simple leaves instead of wild-type compound leaves, and fruit development is triggered before fertilization, giving rise to parthenocarpy. This indicates that IAA9 is a key mediator of leaf morphogenesis and fruit set. In addition, antisense plants displayed auxin-related growth alterations, including enhanced hypocotyl/stem elongation, increased leaf vascularization, and reduced apical dominance. Auxin dose-response assays revealed that IAA9 downregulated lines were hypersensitive to auxin, although the only early auxin-responsive gene that was found to be upregulated in the antisense lines was IAA3. The activity of the IAA3 promoter was stimulated in the IAA9 antisense genetic background, indicating that IAA9 acts in planta as a transcriptional repressor of auxin signaling. While no mutation in any member of subfamily IV has been reported to date, the phenotypes associated with the downregulation of IAA9 reveal distinct and novel roles for members of the Aux/IAA gene family.
生长素/吲哚-3-乙酸(Aux/IAA)蛋白是转录调节因子,介导植物对生长素反应的多个方面。虽然大多数Aux/IAA的功能主要通过拟南芥中的功能获得突变等位基因来定义,但与功能丧失突变相关的表型却很少且不明显。我们在此报告,IAA9(番茄(Solanum lycopersicum)中Aux/IAA基因一个不同亚家族的基因)的下调导致多效性表型,这与其普遍的表达模式一致。IAA9抑制系具有单叶而非野生型复叶,并且在受精前就触发了果实发育,导致单性结实。这表明IAA9是叶片形态发生和坐果的关键调节因子。此外,反义植株表现出生长素相关的生长变化,包括下胚轴/茎伸长增强、叶片维管束增加和顶端优势减弱。生长素剂量反应试验表明,IAA9下调系对生长素超敏感,尽管在反义系中发现唯一上调的早期生长素反应基因是IAA3。在IAA9反义遗传背景下,IAA3启动子的活性受到刺激,表明IAA9在植物中作为生长素信号的转录抑制因子发挥作用。虽然迄今为止尚未报道亚家族IV任何成员的突变,但与IAA9下调相关的表型揭示了Aux/IAA基因家族成员的独特和新作用。