Bemer Marian, van Mourik Hilda, Muiño Jose M, Ferrándiz Cristina, Kaufmann Kerstin, Angenent Gerco C
Laboratory of Molecular Biology, Wageningen University & Research, Droevendaalsesteeg 1, 6708 PB Wageningen, The Netherlands.
Department of Biology, Institute of Biology, Humboldt University, Berlin, Germany.
J Exp Bot. 2017 Jun 15;68(13):3391-3403. doi: 10.1093/jxb/erx184.
MADS-domain transcription factors are well known for their roles in plant development and regulate sets of downstream genes that have been uncovered by high-throughput analyses. A considerable number of these targets are predicted to function in hormone responses or responses to environmental stimuli, suggesting that there is a close link between developmental and environmental regulators of plant growth and development. Here, we show that the Arabidopsis MADS-domain factor FRUITFULL (FUL) executes several functions in addition to its noted role in fruit development. Among the direct targets of FUL, we identified SMALL AUXIN UPREGULATED RNA 10 (SAUR10), a growth regulator that is highly induced by a combination of auxin and brassinosteroids and in response to reduced R:FR light. Interestingly, we discovered that SAUR10 is repressed by FUL in stems and inflorescence branches. SAUR10 is specifically expressed at the abaxial side of these branches and this localized activity is influenced by hormones, light conditions and by FUL, which has an effect on branch angle. Furthermore, we identified a number of other genes involved in hormone pathways and light signalling as direct targets of FUL in the stem, demonstrating a connection between developmentally and environmentally regulated growth programs.
MADS结构域转录因子因其在植物发育中的作用而广为人知,并调控通过高通量分析所揭示的下游基因集。预计这些靶标中有相当一部分在激素应答或对环境刺激的应答中发挥作用,这表明植物生长发育的发育调控因子与环境调控因子之间存在密切联系。在此,我们表明拟南芥MADS结构域因子FRUITFULL(FUL)除了在果实发育中所起的作用外,还执行多种功能。在FUL的直接靶标中,我们鉴定出小生长素上调RNA 10(SAUR10),这是一种生长调节因子,在生长素和油菜素内酯共同作用下以及在红光:远红光比例降低时高度诱导表达。有趣的是,我们发现SAUR10在茎和花序分支中受到FUL的抑制。SAUR10在这些分支的远轴侧特异性表达,这种局部活性受激素、光照条件以及FUL的影响,而FUL对分支角度有影响。此外,我们鉴定出许多参与激素途径和光信号传导的其他基因作为FUL在茎中的直接靶标,这表明发育调控和环境调控的生长程序之间存在联系。