Yu Wang, Zhou Xiangru, Meng Jinhao, Xu Hongwei, Zhou Xiaofu
Jilin Provincial Key Laboratory of Plant Resource Science and Green Production, Jilin Normal University, Siping 136000, China.
Plants (Basel). 2025 Jan 4;14(1):133. doi: 10.3390/plants14010133.
The depletion of the ozone layer has resulted in elevated ultraviolet-B (UV-B) radiation levels, posing a significant risk to terrestrial plant growth. Pall. (), adapted to high-altitude and high-irradiation environments, has developed unique adaptive mechanisms. This study exposed to UV-B radiation for two days, with an 8 h daily treatment, utilizing metabolomic and transcriptomic analyses to explore the role of WRKY transcription factors in the plant's UV-B stress response and their regulation of flavonoid synthesis. UV-B stress resulted in a significant decrease in rETR and Ik and a significant increase in 1-qP. These chlorophyll fluorescence parameters indicate that UV-B stress impaired photosynthesis in . Faced with the detrimental impact of UV-B radiation, is capable of mitigating its effects by modulating its flavonoid biosynthetic pathways to adapt positively to the stress. This study revealed changes in the expression of 113 flavonoid-related metabolites and 42 associated genes, with WRKY transcription factors showing significant correlation with these alterations. WRKY transcription factors can influence the expression of key enzyme genes in the flavonoid metabolic pathway, thereby affecting metabolite production. A theoretical reference for investigating plant stress physiology is provided in this work, which also offers insights into the stress responses of alpine plants under adverse conditions.
臭氧层的消耗导致紫外线B(UV-B)辐射水平升高,对陆地植物生长构成重大风险。适应高海拔和高辐射环境的Pall.()已经形成了独特的适应机制。本研究将Pall.()暴露于UV-B辐射下两天,每天处理8小时,利用代谢组学和转录组学分析来探究WRKY转录因子在植物UV-B胁迫响应中的作用及其对类黄酮合成的调控。UV-B胁迫导致rETR和Ik显著降低,1-qP显著升高。这些叶绿素荧光参数表明UV-B胁迫损害了Pall.()的光合作用。面对UV-B辐射的有害影响,Pall.()能够通过调节其类黄酮生物合成途径来减轻其影响,从而积极适应胁迫。本研究揭示了113种类黄酮相关代谢物和42个相关基因的表达变化,WRKY转录因子与这些变化呈现出显著相关性。WRKY转录因子可影响类黄酮代谢途径中关键酶基因的表达,进而影响代谢物的产生。本研究为研究植物胁迫生理学提供了理论参考,也为高山植物在逆境下的胁迫响应提供了见解。