Wu Shijie, Yu Kaiqiang, Ding Xiaoli, Song Fuyang, Liang Xinhua, Li Zhenkai, Peng Li
School of Life Sciences, Ningxia University, Yinchuan, 750021, China; College of Environmental Science and Engineering, Ocean University of China, Qingdao, 266100, China.
College of Environmental Science and Engineering, Ocean University of China, Qingdao, 266100, China.
Plant Physiol Biochem. 2021 Jun;163:358-366. doi: 10.1016/j.plaphy.2021.04.010. Epub 2021 Apr 24.
The amount of solar ultraviolet-B (UV-B) radiation reaching the Earth's surface is increasing due to stratospheric ozone dynamics and global climate change. Increased UV-B radiation poses a major threat to ecosystems. Although many studies have focused on the potential effects of enhanced UV-B radiation on plants, the dynamic changes of defense response in plants under continuous UV-B radiation remains enigmatic. In this study, we investigated the effect of UV-B radiation at 0.024 W/m on the UVR8-and reactive oxygen species (ROS-) signaling pathways, antioxidant system, and wax synthesis of G. uralensis. These parameters were investigated at different UV-B radiation stages (2 h, 6 h, 12 h, 24 h, 48 h, and 96 h). The results revealed that the uvr8 expression level was significantly repressed after 2 h of UV-B radiation, partly because G. uralensis rapidly acclimated to UV-B. Significant HO accumulation occurred after 12 h UV-B radiation, resulting in activation of the ROS signaling pathway and the antioxidant system. After 24 h of UV-B radiation, wax synthesis was enhanced alongside a decrease in the capacity of the main antioxidant system. The dynamic and ordered changes in these pathways reveal how different strategies function in G. uralensis at different times during adaption to enhanced UV-B radiation. This study will help us better understand dynamic changes of defense response in plant under enhanced UV-B radiation, further providing fundamental knowledge to develop plant resistance gene resources.
由于平流层臭氧动态变化和全球气候变化,到达地球表面的太阳紫外线B(UV-B)辐射量正在增加。UV-B辐射增加对生态系统构成重大威胁。尽管许多研究聚焦于增强UV-B辐射对植物的潜在影响,但植物在持续UV-B辐射下防御反应的动态变化仍不清楚。在本研究中,我们研究了0.024W/m的UV-B辐射对甘草UVR8和活性氧(ROS)信号通路、抗氧化系统及蜡质合成的影响。在不同UV-B辐射阶段(2小时、6小时、12小时、24小时、48小时和96小时)对这些参数进行了研究。结果显示,UV-B辐射2小时后uvr8表达水平显著受到抑制,部分原因是甘草迅速适应了UV-B。UV-B辐射12小时后出现显著的HO积累,导致ROS信号通路和抗氧化系统激活。UV-B辐射24小时后,蜡质合成增强,同时主要抗氧化系统能力下降。这些通路的动态且有序的变化揭示了甘草在适应增强UV-B辐射的不同时间里不同策略是如何发挥作用的。本研究将帮助我们更好地理解增强UV-B辐射下植物防御反应的动态变化,进一步为开发植物抗性基因资源提供基础知识。