J Integr Plant Biol.

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Rewiring the SVP-AGL24 module into a flowering-promoting cascade via legume-specific E1 repressors in soybean

Lei Chen1†, Jiemin Chen1†, Haiting Zhong1, Zixiang Yang1, Chao Fang1*, Fanjiang Kong1*, Baohui Liu1*, Sijia Lu1,2*   

  1. 1. Guangdong Key Laboratory of Plant Adaptation and Molecular Design, School of Life Sciences, Guangzhou University, Guangzhou 510006, China;
    2. Guangzhou Key Laboratory for Functional Study on Plant Stress-Resistant Genes, School of Life Sciences, Guangzhou University, Guangzhou 510006, China
    †These authors contributed equally to this work.
    *Correspondences: Sijia Lu (lusijia@gzhu.edu.cn, Dr. Lu is fully responsible for the distribution of all materials associated with this article); Baohui Liu (liubh@gzhu.edu.cn); Fanjiang Kong (kongfj@gzhu.edu.cn); Chao Fang (fangchao@gzhu.edu.cn)
  • Received:2026-05-26 Revised:2026-08-24 Accepted:2026-09-08 Online:2026-09-28
  • Supported by:
    This work was funded by the Innovative Research Group Project of the National Natural Science Foundation of China, NSFC (32521005 to S.L.), the National Natural Science Foundation of China (32372112 to S.L.), and the Guangzhou Municipal Science and Technology Program (2024A04J3862 to S.L.).

Abstract: Photoperiodic flowering is a critical determinant of soybean regional adaptation and yield, and is predominantly governed by the legume-specific E1 repressor family. How evolutionarily conserved MADS-box transcription regulators such as AGAMOUS-LIKE 24 (AGL24) and SHORT VEGETATIVE PHASE (SVP) integrate into the E1 module remains unclear. Here, we show that soybean GmSVP1 and GmSVP2 promote flowering under long-day conditions. GmSVP1/2 directly bind to and repress the E1 family genes, and genetic analyses demonstrate that this repression accounts for the flowering-promoting activity of endogenous GmSVP1/2. Although GmSVP1/2 can also directly repress the florigen gene GmFT2a, their net endogenous function is to advance floral transition via the E1 pathway. We further identify GmAGL24 as an upstream regulator of GmSVP1/2. Collectively, these results establish a GmAGL24-GmSVP-E1-GmFT regulatory cascade that controls photoperiodic flowering in soybean. This work provides mechanistic insight into the functional diversification of conserved flowering regulators in legumes and identifies promising genetic targets for breeding broadly adapted soybean cultivars.

Key words: AGL24, E1, flowering time, soybean, SVP

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