Department of Plant Biotechnology, Korea University, Seoul, Republic of Korea.
Department of Plant Biotechnology, Korea University, Seoul, Republic of Korea; Institute of Life Science and Natural Resources, Korea University, Seoul, Republic of Korea.
Plant Sci. 2024 Dec;349:112241. doi: 10.1016/j.plantsci.2024.112241. Epub 2024 Aug 30.
The initiation of transition to flowering is carefully managed by endogenous and environmental cues, which is critical for flowering plant reproductive success. Here, we found that wheat RING-type E3 ligase TaFRFP was highly expressed from the double ridge to degeneration stage (WS2.5-WS9). TaFRFP is localized in the nucleus and has E3 ligase activity in vitro. TaFRFP overexpression in Arabidopsis resulted in an early flowering phenotype, but to a lesser extent, under short-day conditions. Under the SA-treated condition, overexpression of TaFRFP shows higher root growth and has more accumulation of SA contents. A proteomic comparison revealed that the amount of FRL4A protein, a FRIGIDA LIKE 4 A, was considerably lower in SA-treated TaFRFP seedlings compared to normal condition. We further found that TaFRFP directly interacts with FRL4A in the nucleus and recruits it to the FLC locus in Arabidopsis. Moreover, an ubiquitination assay showed that TaFRPF physically interact and ubiquitinates TaFRL as a substrate. Our findings support the concept that the TaFRFP E3 ligase works as a positive regulator, and that the ubiquitination of its substrate proteins plays a significant role in controlling flowering time via an SA-dependent pathway.
开花的启动是由内源性和环境线索精心管理的,这对开花植物的生殖成功至关重要。在这里,我们发现小麦 RING 型 E3 连接酶 TaFRFP 从双脊到退化期(WS2.5-WS9)高度表达。TaFRFP 定位于细胞核内,具有体外 E3 连接酶活性。拟南芥中 TaFRFP 的过表达导致早花表型,但在短日照条件下,程度较轻。在 SA 处理条件下,过表达 TaFRFP 显示出更高的根生长,并积累更多的 SA 含量。蛋白质组比较表明,与正常条件相比,SA 处理的 TaFRFP 幼苗中 FRIGIDA LIKE 4A(FRL4A)蛋白的量明显降低。我们进一步发现 TaFRFP 可在核内直接与 FRL4A 相互作用,并将其募集到拟南芥的 FLC 基因座。此外,泛素化测定表明 TaFRPF 物理相互作用并泛素化 TaFRL 作为其底物。我们的研究结果支持 TaFRFP E3 连接酶作为正调节剂起作用的观点,并且其底物蛋白的泛素化通过依赖 SA 的途径在控制开花时间方面起着重要作用。