Biotechnology of Horticultural Crops, TUM School of Life Sciences, Technical University of Munich, Freising, Germany.
Sainsbury Laboratory, Cambridge University, Cambridge, UK.
Plant Physiol. 2022 Mar 28;188(4):2012-2025. doi: 10.1093/plphys/kiac008.
Brassinosteroids (BRs) are plant steroids that have growth-promoting capacities, which are partly enabled by an ability to induce biosynthesis of gibberellins (GAs), a second class of plant hormones. In addition, BRs can also activate GA catabolism; here we show that in Arabidopsis (Arabidopsis thaliana) the basic helix-loop-helix transcription factor CESTA (CES) and its homologues BRASSINOSTEROID-ENHANCED EXPRESSION (BEE) 1 and 3 contribute to this activity. CES and the BEEs are BR-regulated at the transcriptional and posttranslational level and participate in different physiological processes, including vegetative and reproduction development, shade avoidance, and cold stress responses. We show that CES/BEEs can induce the expression of the class III GA 2-oxidase GA2ox7 and that this activity is increased by BRs. In BR signaling - and CES/BEE-deficient mutants, GA2ox7 expression decreased, yielding reduced levels of GA110, a product of GA2ox7 activity. In plants that over-express CES, GA2ox7 expression is hyper-responsive to BR, GA110 levels are elevated and amounts of bioactive GA are reduced. We provide evidence that CES directly binds to the GA2ox7 promoter and is activated by BRs, but can also act by BR-independent means. Based on these results, we propose a model for CES activity in GA catabolism where CES can be recruited for GA2ox7 induction not only by BR, but also by other factors.
油菜素内酯(BRs)是具有生长促进能力的植物甾醇,部分能力是通过诱导赤霉素(GAs)生物合成实现的,赤霉素是植物激素的第二大类。此外,BRs 还可以激活 GA 分解代谢;在这里,我们表明在拟南芥(Arabidopsis thaliana)中,基本螺旋-环-螺旋转录因子 CESTA(CES)及其同源物 BRASSINOSTEROID-ENHANCED EXPRESSION(BEE)1 和 3 有助于这一活性。CES 和 BEEs 在转录和翻译后水平上受到 BR 的调节,参与不同的生理过程,包括营养和生殖发育、避荫和冷应激反应。我们表明 CES/BEEs 可以诱导 III 类 GA 2-氧化酶 GA2ox7 的表达,并且这种活性可以通过 BR 增加。在 BR 信号转导和 CES/BEE 缺陷突变体中,GA2ox7 的表达减少,导致 GA110 水平降低,GA110 是 GA2ox7 活性的产物。在过表达 CES 的植物中,GA2ox7 的表达对 BR 超敏感,GA110 水平升高,生物活性 GA 的量减少。我们提供了证据表明 CES 直接结合到 GA2ox7 启动子上并被 BR 激活,但也可以通过 BR 独立的方式发挥作用。基于这些结果,我们提出了 CES 在 GA 分解代谢中的活性模型,其中 CES 不仅可以通过 BR,还可以通过其他因素被招募来诱导 GA2ox7。