Yang Yuzhou, Kong Que, Ma Zhiming, Lim Peng Ken, Singh Sanjay K, Pattanaik Sitakanta, Mutwil Marek, Miao Yansong, Yuan Ling, Ma Wei
School of Biological Sciences, Nanyang Technological University, Singapore 637551, Singapore.
Department of Plant and Soil Sciences, Kentucky Tobacco Research and Development Center, University of Kentucky, Lexington, KY 40546, USA.
Plant Physiol. 2025 Feb 7;197(2). doi: 10.1093/plphys/kiae674.
MYB family transcription factors (TFs) play crucial roles in plant development, metabolism, and responses to various stresses. However, whether MYB TFs are involved in regulating fatty acid biosynthesis in seeds remains largely elusive. Here, we demonstrated that transgenic Arabidopsis (Arabidopsis thaliana) plants overexpressing MYB73 exhibit altered FATTY ACID ELONGATION1 (FAE1) expression, seed oil content, and seed fatty acid composition. Electrophoretic mobility shift assays showed that FAE1 is a direct target of MYB73, and functional assays revealed that MYB73 represses FAE1 promoter activity. Transcriptomic analysis of the MYB73-overexpressing plants detected significant changes in the expression of genes involved in fatty acid biosynthesis and triacylglycerol assembly. Furthermore, MYB73 expression was responsive to abscisic acid (ABA), and ABA-responsive element binding factor 2 directly bound to the ABA-responsive element in the MYB73 promoter to activate its expression. Additionally, we determined that MYB73 exhibits the hallmarks of an intrinsically disordered protein and forms phase-separated condensates with liquid-like characteristics, which are important in regulating target gene expression. Together, our findings suggest that MYB73 condensate formation likely fine-tunes seed oil biosynthesis.
MYB家族转录因子(TFs)在植物发育、代谢以及对各种胁迫的响应中发挥着关键作用。然而,MYB转录因子是否参与调控种子中的脂肪酸生物合成仍不清楚。在此,我们证明了过表达MYB73的转基因拟南芥植株表现出脂肪酸延长酶1(FAE1)表达、种子油含量和种子脂肪酸组成的改变。电泳迁移率变动分析表明FAE1是MYB73的直接靶标,功能分析显示MYB73抑制FAE1启动子活性。对过表达MYB73的植株进行转录组分析发现,参与脂肪酸生物合成和三酰甘油组装的基因表达发生了显著变化。此外,MYB73的表达对脱落酸(ABA)有响应,ABA响应元件结合因子2直接结合到MYB73启动子中的ABA响应元件上以激活其表达。此外,我们确定MYB73具有内在无序蛋白的特征,并形成具有类液体特性的相分离凝聚物,这在调控靶基因表达中很重要。总之,我们的研究结果表明MYB73凝聚物的形成可能微调种子油的生物合成。