Wang Jiayi, Zhang Chuanyu, Li Hua, Xu Yuejun, Zhang Bo, Zheng Fuyu, Zhao Beiping, Zhang Haiwen, Zhao Hui, Liu Baohai, Xiao Minggang, Zhang Zhijin
Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing 100081, China.
National Key Facility of Crop Gene Resources and Genetic Improvement, Sanya 571763, China.
Plants (Basel). 2023 Nov 15;12(22):3859. doi: 10.3390/plants12223859.
Reactive oxygen species (ROS) play dual roles in plant stress response, but how plants modulate the dual roles of ROS in stress response is still obscure. () encodes the rice CSN5 (COP9 signalsome subunit 5). This study showed that, similar to the homolog gene , -overexpressing (driven by a CaMV 35S promoter) plants (OEs) impaired rice salt stress tolerance; in contrast, -inhibited-expression (using RNA-interfering technology) plants (RIs) enhanced rice salt stress tolerance. Differing from CSN5B that negatively regulated ascorbate (Asc) biosynthesis, Asc content increased in OEs and decreased in RIs. ROS analysis showed that RIs clearly increased, but OEs inhibited ROS accumulation at the early stage of salt treatment; in contrast, RIs clearly decreased, but OEs promoted ROS accumulation at the late stage of salt treatment. The qPCR revealed that OEs decreased but RIs enhanced the expressions of ROS-scavenging genes. This indicated that OsJAB1 negatively regulated rice salt stress tolerance by suppressing the expression of ROS-scavenging genes. This study provided new insights into the CSN5 homologous protein named OsJAB1 in rice, which developed different functions during long-term evolution. How OsJAB1 regulates the Asc biosynthesis that coordinates the balance between cell redox signaling and ROS scavenging needs to be investigated in the future.
活性氧(ROS)在植物应激反应中发挥双重作用,但植物如何调节ROS在应激反应中的双重作用仍不清楚。()编码水稻CSN5(COP9信号体亚基5)。本研究表明,与同源基因相似,过表达(由CaMV 35S启动子驱动)的植株(OEs)削弱了水稻的耐盐性;相反,抑制表达(使用RNA干扰技术)的植株(RIs)增强了水稻的耐盐性。与负向调节抗坏血酸(Asc)生物合成的CSN5B不同,OEs中的Asc含量增加,而RIs中的Asc含量降低。ROS分析表明,在盐处理早期,RIs中ROS明显增加,但OEs抑制ROS积累;相反,在盐处理后期,RIs中ROS明显减少,但OEs促进ROS积累。qPCR结果显示,OEs中ROS清除基因的表达降低,但RIs中ROS清除基因的表达增强。这表明OsJAB1通过抑制ROS清除基因的表达负向调节水稻的耐盐性。本研究为水稻中名为OsJAB1的CSN5同源蛋白提供了新的见解,该蛋白在长期进化过程中发挥了不同的功能。未来需要研究OsJAB1如何调节Asc生物合成以协调细胞氧化还原信号和ROS清除之间的平衡。