Uppsala BioCenter, Department of Plant Biology and Forest Genetics, Swedish University of Agricultural Sciences, SE-75007 Uppsala, Sweden.
Plant Physiol. 2011 Dec;157(4):2069-80. doi: 10.1104/pp.111.182253. Epub 2011 Oct 5.
Auxin/indole-3-acetic acid (IAA) biosynthesis in Arabidopsis (Arabidopsis thaliana) plays a major role in growth responses to developmental and genetic signals as well as to environmental stimuli. Knowledge of its regulation, however, remains rudimentary, and few proteins acting as transcriptional modulators of auxin biosynthesis have been identified. We have previously shown that alteration in the expression level of the SHORT INTERNODES/STYLISH (SHI/STY) family member STY1 affects IAA biosynthesis rates and IAA levels and that STY1 acts as a transcriptional activator of genes encoding auxin biosynthesis enzymes. Here, we have analyzed the upstream regulation of SHI/STY family members to gain further insight into transcriptional regulation of auxin biosynthesis. We attempted to modulate the normal expression pattern of STY1 by mutating a putative regulatory element, a GCC box, located in the proximal promoter region and conserved in most SHI/STY genes in Arabidopsis. Mutations in the GCC box abolish expression in aerial organs of the adult plant. We also show that induction of the transcriptional activator DORNRÖSCHEN-LIKE (DRNL) activates the transcription of STY1 and other SHI/STY family members and that this activation is dependent on a functional GCC box. Additionally, STY1 expression in the strong drnl-2 mutant or the drn drnl-1 puchi-1 triple mutant, carrying knockdown mutations in both DRNL and its close paralogue DRN as well as one of their closest homologs, PUCHI, was significantly reduced, suggesting that DRNL regulates STY1 during normal plant development and that several other genes might have redundant functions.
生长素/吲哚-3-乙酸(IAA)在拟南芥(Arabidopsis thaliana)中的生物合成在生长对发育和遗传信号以及环境刺激的反应中起着重要作用。然而,其调控机制仍处于基础阶段,并且很少有作为生长素生物合成转录调节剂的蛋白质被鉴定出来。我们之前已经表明,SHORT INTERNODES/STYLISH(SHI/STY)家族成员 STY1 的表达水平的改变会影响 IAA 生物合成速率和 IAA 水平,并且 STY1 作为生长素生物合成酶基因的转录激活剂起作用。在这里,我们分析了 SHI/STY 家族成员的上游调控,以进一步深入了解生长素生物合成的转录调控。我们试图通过突变位于近端启动子区域并在拟南芥中的大多数 SHI/STY 基因中保守的一个假定调节元件(GCC 盒)来调节 STY1 的正常表达模式。GCC 盒的突变会导致成年植株的空中器官表达缺失。我们还表明,转录激活剂 DORNRÖSCHEN-LIKE(DRNL)的诱导会激活 STY1 和其他 SHI/STY 家族成员的转录,并且这种激活依赖于功能性的 GCC 盒。此外,在强 drnl-2 突变体或 drn drnl-1 puchi-1 三重突变体中,STY1 的表达显著降低,drnl-2 突变体或 drn drnl-1 puchi-1 三重突变体携带 DRNL 和其近缘物 DRN 以及它们的一个最近的同源物 PUCHI 的敲低突变,这表明 DRNL 在正常植物发育过程中调节 STY1,并且其他几个基因可能具有冗余功能。