State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, Hangzhou, 311300, China.
J Integr Plant Biol. 2023 Aug;65(8):1904-1917. doi: 10.1111/jipb.13501. Epub 2023 Jul 4.
Plant growth and development are significantly hampered in saline environments, limiting agricultural productivity. Thus, it is crucial to unravel the mechanism underlying plant responses to salt stress. β-1,4-Galactan (galactan), which forms the side chains of pectic rhamnogalacturonan I, enhances plant sensitivity to high-salt stress. Galactan is synthesized by GALACTAN SYNTHASE1 (GALS1). We previously showed that NaCl relieves the direct suppression of GALS1 transcription by the transcription factors BPC1 and BPC2 to induce the excess accumulation of galactan in Arabidopsis (Arabidopsis thaliana). However, how plants adapt to this unfavorable environment remains unclear. Here, we determined that the transcription factors CBF1, CBF2, and CBF3 directly interact with the GALS1 promoter and repress its expression, leading to reduced galactan accumulation and enhanced salt tolerance. Salt stress enhances the binding of CBF1/CBF2/CBF3 to the GALS1 promoter by inducing CBF1/CBF2/CBF3 transcription and accumulation. Genetic analysis suggested that CBF1/CBF2/CBF3 function upstream of GALS1 to modulate salt-induced galactan biosynthesis and the salt response. CBF1/CBF2/CBF3 and BPC1/BPC2 function in parallel to regulate GALS1 expression, thereby modulating the salt response. Our results reveal a mechanism in which salt-activated CBF1/CBF2/CBF3 inhibit BPC1/BPC2-regulated GALS1 expression to alleviate galactan-induced salt hypersensitivity, providing an activation/deactivation fine-tune mechanism for dynamic regulation of GALS1 expression under salt stress in Arabidopsis.
在盐环境中,植物的生长和发育受到严重阻碍,限制了农业生产力。因此,揭示植物对盐胁迫反应的机制至关重要。β-1,4-半乳糖(半乳糖)形成果胶鼠李半乳糖醛酸 I 的侧链,增强植物对高盐胁迫的敏感性。半乳糖由半乳糖合酶 1(GALS1)合成。我们之前表明,NaCl 缓解了转录因子 BPC1 和 BPC2 对 GALS1 转录的直接抑制作用,诱导拟南芥(Arabidopsis thaliana)中半乳糖的过度积累。然而,植物如何适应这种不利环境仍不清楚。在这里,我们确定转录因子 CBF1、CBF2 和 CBF3 直接与 GALS1 启动子相互作用并抑制其表达,导致半乳糖积累减少和耐盐性增强。盐胁迫通过诱导 CBF1/CBF2/CBF3 转录和积累,增强 CBF1/CBF2/CBF3 与 GALS1 启动子的结合,从而增强对半乳糖合成和盐响应的抑制作用。遗传分析表明,CBF1/CBF2/CBF3 在前馈调节 GALS1 介导的盐诱导半乳糖生物合成和盐响应中起作用。CBF1/CBF2/CBF3 和 BPC1/BPC2 平行作用于调节 GALS1 表达,从而调节盐响应。我们的结果揭示了一种机制,即盐激活的 CBF1/CBF2/CBF3 抑制 BPC1/BPC2 调节的 GALS1 表达,以减轻半乳糖诱导的盐敏感,为拟南芥中盐胁迫下 GALS1 表达的动态调控提供了一种激活/失活的微调机制。