Wang Dandan, Li Chengyang, Song Weihan, Tang Wei, Chen Yuyu, Kou Meng, Gao Runfei, Gao Tianqi, Li Chen, Yan Hui, Zhang Aicen, Wang Xin, Zhang Yungang, Li Qiang
Key Laboratory of Biology and Genetic Breeding of Sweetpotato, Ministry of Agriculture and Rural Affairs, Xuzhou Institute of Agricultural Sciences in Jiangsu Xuhuai District, Sweetpotato Research Institute, CAAS, Xuzhou, 221131, Jiangsu, China.
Plant J. 2025 Jul;123(1):e70307. doi: 10.1111/tpj.70307.
The phytohormone abscisic acid (ABA) plays a critical role as a signaling molecule, mediating adaptive responses of plants to salt stress. However, the orchestration of ABA signaling in response to salt stress in sweetpotato remains poorly understood. In this study, we cloned a gene of unknown function, IbEDL3, which is significantly upregulated in sweetpotato under salt stress conditions. Transgenic sweetpotato plants overexpressing IbEDL3 exhibited enhanced proline accumulation, reaction oxygen species (ROS) scavenging, stomatal closure, and Na efflux compared with wild-type (WT) plants under salt stress. Further investigation revealed that IbEDL3 interacts with IbSKP1-1, forming part of the E3 ubiquitin ligase SCF complex. Although IbEDL3 interacted with IbABI1, IbABI2, and IbPP2CA2, the SCF complex only ubiquitinated and degraded IbPP2CA2. Under salt stress, SCF accelerated the ubiquitination and degradation of IbPP2CA2, leading to the release of more IbSnRK2.6, which further promoted ABA signaling to regulate stomatal closure, proline accumulation and Na efflux. Inhibition of IbPP2CA2 resulted in enhanced salt tolerance in sweetpotato. Collectively, the SCF-IbPP2CA2 module provides insight into the mechanisms underlying ABA signaling in response to salt stress and offers a new avenue for genetic improvement of salt tolerance in sweetpotato.
植物激素脱落酸(ABA)作为一种信号分子发挥着关键作用,介导植物对盐胁迫的适应性反应。然而,甘薯中ABA信号在响应盐胁迫时的调控机制仍知之甚少。在本研究中,我们克隆了一个功能未知的基因IbEDL3,该基因在盐胁迫条件下的甘薯中显著上调。与盐胁迫下的野生型(WT)植株相比,过表达IbEDL3的转基因甘薯植株表现出脯氨酸积累增加、活性氧(ROS)清除能力增强、气孔关闭以及Na外流。进一步研究表明,IbEDL3与IbSKP1-1相互作用,形成E3泛素连接酶SCF复合体的一部分。虽然IbEDL3与IbABI1、IbABI2和IbPP2CA2相互作用,但SCF复合体仅对IbPP2CA2进行泛素化并使其降解。在盐胁迫下,SCF加速了IbPP2CA2的泛素化和降解,导致更多的IbSnRK2.6释放,进而进一步促进ABA信号传导以调节气孔关闭、脯氨酸积累和Na外流。抑制IbPP2CA2可增强甘薯的耐盐性。总的来说,SCF-IbPP2CA2模块为深入了解ABA信号响应盐胁迫的机制提供了见解,并为甘薯耐盐性的遗传改良提供了新途径。