Li Zhuang, Lyu Xiangguang, Li Hongyu, Tu Qichao, Zhao Tao, Liu Jun, Liu Bin
State Key Laboratory of Crop Gene Resources and Breeding, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.
Nat Commun. 2024 Jan 27;15(1):798. doi: 10.1038/s41467-024-45086-5.
Leaf senescence is a crucial trait that has a significant impact on crop quality and yield. Previous studies have demonstrated that light is a key factor in modulating the senescence process. However, the precise mechanism by which plants sense light and control senescence remains largely unknown, particularly in crop species. In this study, we reveal that the reduction in blue light under shading conditions can efficiently induce leaf senescence in soybean. The blue light receptors GmCRY1s rather than GmCRY2s, primarily regulate leaf senescence in response to blue light signals. Our results show that GmCRY1s interact with DELLA proteins under light-activated conditions, stabilizing them and consequently suppressing the transcription of GmWRKY100 to delay senescence. Conversely, LBL reduces the interaction between GmCRY1s and the DELLA proteins, leading to their degradation and premature senescence of leaves. Our findings suggest a GmCRY1s-GmDELLAs-GmWRKY100 regulatory cascade that is involved in mediating LBL-induced leaf senescence in soybean, providing insight into the mechanism of how light signals regulate leaf senescence. Additionally, we generate GmWRKY100 knockout soybeans that show delayed leaf senescence and improved yield under natural field conditions, indicating potential applications in enhancing soybean production by manipulating the leaf senescence trait.
叶片衰老 是一个关键性状,对作物品质和产量有重大影响。以往的研究表明,光是调节衰老过程的关键因素。然而,植物感知光并控制衰老的精确机制在很大程度上仍然未知,尤其是在作物物种中。在本研究中,我们发现遮荫条件下蓝光的减少可有效诱导大豆叶片衰老。蓝光受体GmCRY1s而非GmCRY2s主要响应蓝光信号调节叶片衰老。我们的结果表明,在光激活条件下,GmCRY1s与DELLA蛋白相互作用,使其稳定,从而抑制GmWRKY100的转录以延缓衰老。相反,低蓝光水平(LBL)降低了GmCRY1s与DELLA蛋白之间的相互作用,导致它们降解,叶片过早衰老。我们的研究结果表明,存在一个GmCRY1s - GmDELLAs - GmWRKY100调控级联,参与介导大豆中低蓝光水平(LBL)诱导的叶片衰老,为光信号调节叶片衰老的机制提供了见解。此外,我们培育出了GmWRKY100基因敲除的大豆,在自然田间条件下,这些大豆叶片衰老延迟且产量提高,这表明通过操纵叶片衰老性状在提高大豆产量方面具有潜在应用价值。