Liu Lijun, Tang Chen, Zhang Yuhan, Sha Xiaoyu, Tian Shuaibing, Luo Ziyi, Wei Guocheng, Zhu Li, Li Yuxin, Fu Jingye, Luo Peigao, Wang Qiang
State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, College of Agronomy, Sichuan Agricultural University, Chengdu, 611130, China.
College of Life Science, Sichuan Agricultural University, Yaan, 625014, China.
New Phytol. 2025 Mar;245(5):1985-2003. doi: 10.1111/nph.20355. Epub 2024 Dec 16.
Abscisic acid (ABA) and jasmonic acid (JA) are important plant hormones in response to drought stress. We have identified that ZmHsf28 elevated ABA and JA accumulation to confer drought tolerance in maize; however, the underlying mechanism still remains elusive. The knockout line zmhsf28 is generated to confirm the positive role of ZmHsf28 in drought response. Multiple approaches are combined to reveal protein interaction among ZmHsf28, ZmSnRK2.2 and ZmJAZ14/17, which form a regulatory module to mediate maize drought tolerance through regulating ABA and JA key biosynthetic genes ZmNCED3 and ZmLOX8. Upon drought stress, zmhsf28 plants exhibit weaker tolerance than the WT plants with slower stomatal closure and more reactive oxygen species accumulation. ZmHsf28 interacted with ZmSnRK2.2 physically, resulting in phosphorylation at Ser220, which enhances binding to the heat shock elements of ZmNECD3 and ZmLOX8 promoters and subsequent gene expression. Meanwhile, ZmMYC2 upregulates ZmHsf28 gene expression through acting on the G-box of its promoter. Besides, ZmJAZ14/17 competitively interact with ZmHsf28 to interfere with protein interaction between ZmHsf28 and ZmSnRK2.2, blocking ZmHsf28 phosphorylation and impairing downstream gene regulation. The ZmSnRK2.2-ZmHsf28-ZmJAZ14/17 module is identified to regulate drought tolerance through coordinating ABA and JA signaling, providing the insights for breeding to improve drought resistance in maize.
脱落酸(ABA)和茉莉酸(JA)是植物应对干旱胁迫的重要激素。我们已经确定ZmHsf28可提高ABA和JA的积累,从而赋予玉米耐旱性;然而,其潜在机制仍不清楚。我们构建了敲除系zmhsf28以证实ZmHsf28在干旱响应中的积极作用。我们结合多种方法揭示了ZmHsf28、ZmSnRK2.2和ZmJAZ14/17之间的蛋白质相互作用,它们形成了一个调控模块,通过调节ABA和JA关键生物合成基因ZmNCED3和ZmLOX8来介导玉米的耐旱性。在干旱胁迫下,zmhsf28植株表现出比野生型植株更弱的耐受性,气孔关闭较慢,活性氧积累更多。ZmHsf28与ZmSnRK2.2发生物理相互作用,导致Ser220位点磷酸化,增强了与ZmNECD3和ZmLOX8启动子的热休克元件的结合以及随后的基因表达。同时,ZmMYC2通过作用于ZmHsf28启动子的G-box上调其基因表达。此外,ZmJAZ14/17与ZmHsf28竞争性相互作用,干扰ZmHsf28与ZmSnRK2.2之间的蛋白质相互作用,阻断ZmHsf28磷酸化并损害下游基因调控。我们确定ZmSnRK2.2-ZmHsf28-ZmJAZ14/17模块通过协调ABA和JA信号传导来调节耐旱性,为玉米耐旱性育种提供了思路。