Sun Jingjing, Liu Hongchi, Wang Weinan, Fan Chunguo, Yuan Guozhen, Zhou Rui, Lu Jun, Liu Jinyi, Wang Changquan
Key Laboratory of Landscaping, Ministry of Agriculture and Rural Affairs, Key Laboratory of State Forestry and Grassland Administration on Biology of Ornamental Plants in East China, College of Horticulture, Nanjing Agricultural University, Nanjing, 210095, China.
New Phytol. 2024 Aug;243(4):1387-1405. doi: 10.1111/nph.19885. Epub 2024 Jun 7.
Flowering is a vital agronomic trait that determines the economic value of most ornamental plants. The flowering time of rose (Rosa spp.) is photoperiod insensitive and is thought to be tightly controlled by light intensity, although the detailed molecular mechanism remains unclear. Here, we showed that rose plants flower later under low-light (LL) intensity than under high-light (HL) intensity, which is mainly related to the stability of PHYTOCHROME-INTERACTING FACTORs (RcPIFs) mediated by OPEN STOMATA 1-Like (RcOST1L) under different light intensity regimes. We determined that HL conditions trigger the rapid phosphorylation of RcPIFs before their degradation. A yeast two-hybrid screen identified the kinase RcOST1L as interacting with RcPIF4. Moreover, RcOST1L positively regulated rose flowering and directly phosphorylated RcPIF4 on serine 198 to promote its degradation under HL conditions. Additionally, phytochrome B (RcphyB) enhanced RcOST1L-mediated phosphorylation of RcPIF4 via interacting with the active phyB-binding motif. RcphyB was activated upon HL and recruited RcOST1L to facilitate its nuclear accumulation, in turn leading to decreased stability of RcPIF4 and flowering acceleration. Our findings illustrate how RcPIF abundance safeguards proper rose flowering under different light intensities, thus uncovering the essential role of RcOST1L in the RcphyB-RcPIF4 module in flowering.
开花是一项至关重要的农艺性状,它决定了大多数观赏植物的经济价值。玫瑰(蔷薇属)的开花时间对光周期不敏感,尽管其详细的分子机制尚不清楚,但人们认为它受光照强度的严格控制。在这里,我们发现玫瑰植株在低光照(LL)强度下比在高光照(HL)强度下开花更晚,这主要与不同光照强度条件下由类开放气孔1(RcOST1L)介导的光敏色素互作因子(RcPIFs)的稳定性有关。我们确定,HL条件会在RcPIFs降解之前触发其快速磷酸化。酵母双杂交筛选鉴定出激酶RcOST1L与RcPIF4相互作用。此外,RcOST1L正向调控玫瑰开花,并在HL条件下直接将RcPIF4的丝氨酸198位点磷酸化以促进其降解。另外,光敏色素B(RcphyB)通过与活性phyB结合基序相互作用增强RcOST1L介导的RcPIF4磷酸化。RcphyB在HL条件下被激活,并招募RcOST1L以促进其核积累,进而导致RcPIF4稳定性降低并加速开花。我们的研究结果阐明了RcPIF丰度如何在不同光照强度下保障玫瑰正常开花,从而揭示了RcOST1L在开花过程中RcphyB - RcPIF4模块中的关键作用。