Centre for Novel Agricultural Products, Department of Biology, University of York, YO10 5DD York, United Kingdom.
Centre for Novel Agricultural Products, Department of Biology, University of York, YO10 5DD York, United Kingdom
Proc Natl Acad Sci U S A. 2018 Aug 14;115(33):8442-8447. doi: 10.1073/pnas.1806460115. Epub 2018 Jul 30.
Seed germination in many plant species is triggered by sunlight, which is rich in the red (R) wavelength and repressed by under-the-canopy light rich in far red (FR). R:FR ratios are sensed by phytochromes to regulate levels of gibberellins (GAs) and abscisic acid (ABA), which induce and inhibit germination respectively. In this study we have discovered that, under FR light conditions, germination is repressed by MOTHER-OF-FT-AND-TFL1 (MFT) through the regulation of the ABA and GA signaling pathways. We also show that gene expression is tightly regulated by light quality. Previous work has shown that under FR light conditions the transcription factor PHYOCHROME-INTERACTING-FACTOR1 (PIF1) accumulates and promotes expression of () that, in turn, leads to increased ABA and decreased GA levels. PIF1 also promotes expression of genes encoding ABA-INSENSITIVE5 (ABI5) and DELLA growth-repressor proteins, which act in the ABA and GA signaling pathways, respectively. Here we show that gene expression is promoted by FR light through the PIF1/SOM/ABI5/DELLA pathway and is repressed by R light via the transcription factor SPATULA (SPT). Consistent with this, we also show that gene expression is repressed under FR light in a PIF1-dependent manner. Furthermore, transcriptomic analyses presented in this study indicate that MFT exerts its function by promoting expression of known ABA-induced genes and repressing cell wall expansion-related genes.
许多植物物种的种子萌发受富含红光(R)波长的阳光触发,而被富含远红光(FR)的冠层下光线抑制。植物色素感知 R:FR 比值,以调节赤霉素(GA)和脱落酸(ABA)的水平,分别诱导和抑制萌发。在这项研究中,我们发现,在 FR 光条件下,MOTHER-OF-FT-AND-TFL1 (MFT) 通过调节 ABA 和 GA 信号通路来抑制萌发。我们还表明,基因表达受到光质的严格调控。先前的工作表明,在 FR 光条件下,转录因子 PHYOCHROME-INTERACTING-FACTOR1 (PIF1) 积累并促进的表达,而这反过来又导致 ABA 水平升高和 GA 水平降低。PIF1 还促进编码 ABA-INSENSITIVE5 (ABI5) 和 DELLA 生长抑制蛋白的基因的表达,它们分别作用于 ABA 和 GA 信号通路。在这里,我们表明,通过 PIF1/SOM/ABI5/DELLA 途径,FR 光促进基因的表达,而通过转录因子 SPATULA (SPT),R 光抑制基因的表达。与此一致,我们还表明,在 FR 光下,基因的表达以 PIF1 依赖的方式受到抑制。此外,本研究中的转录组分析表明,MFT 通过促进已知 ABA 诱导基因的表达和抑制细胞壁扩张相关基因的表达来发挥其功能。