Ren Ziyin, Zhang Ling, Li Haizhen, Yang Mi, Wu Xuesong, Hu Runxu, Lu Jingjing, Wang Hui, Wu Xinying, Wang Zhijuan, Li Xia
National Key Laboratory of Crop Genetic Improvement, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, China.
Jilin Provincial Key Laboratory of Agricultural Biotechnology, Jilin Academy of Agricultural Sciences, Changchun, China.
Nat Plants. 2025 Mar;11(3):595-611. doi: 10.1038/s41477-024-01896-5. Epub 2025 Feb 3.
Legumes form root nodules with symbiotic nitrogen-fixing rhizobacteria, which require ample iron to ensure symbiosis establishment and efficient nitrogen fixation. The functions and mechanisms of iron in nitrogen-fixing nodules are well established. However, the role of iron and the mechanisms by which legumes sense iron and incorporate this cue into nodulation signalling pathways remain unclear. Here we show that iron is a key driver of nodulation because symbiotic nodules cannot form without iron, even under conditions of sufficient light and low nitrogen. We further identify an iron optimum for soybean nodulation and the iron sensor BRUTUS A (BTSa) which acts as a hub for integrating iron and nodulation cues. BTSa is induced by rhizobia, binds to and is stabilized by iron. In turn, BTSa stabilizes and enhances the transcriptional activation activity of pro-nodulation transcription factor NSP1a by monoubiquitination from its RING domain and consequently activates nodulation signalling. Monoubiquitination of NSP1 by BTS is conserved in legumes to trigger nodulation under iron sufficiency. Thus, iron status is an essential cue to trigger nodulation and BTSa integrates cues from rhizobial infection and iron status to orchestrate host responses towards establishing symbiotic nitrogen fixation.
豆科植物与共生固氮根瘤菌形成根瘤,根瘤菌需要充足的铁来确保共生关系的建立和高效的固氮作用。铁在固氮根瘤中的功能和机制已得到充分证实。然而,铁的作用以及豆科植物感知铁并将这一信号整合到结瘤信号通路中的机制仍不清楚。在这里,我们表明铁是结瘤的关键驱动因素,因为即使在光照充足和低氮条件下,没有铁共生根瘤也无法形成。我们进一步确定了大豆结瘤的最适铁浓度以及铁传感器BRUTUS A(BTSa),它作为整合铁和结瘤信号的枢纽。BTSa由根瘤菌诱导,与铁结合并被铁稳定。反过来,BTSa通过其RING结构域的单泛素化作用稳定并增强结瘤转录因子NSP1a的转录激活活性,从而激活结瘤信号。BTS对NSP1的单泛素化在豆科植物中是保守的,以在铁充足的情况下触发结瘤。因此,铁状态是触发结瘤的重要信号,BTSa整合来自根瘤菌感染和铁状态的信号,以协调宿主对建立共生固氮的反应。