Jilin Provincial Key Laboratory of Plant Resource Science and Green Production, Jilin Normal University, Siping 136000, China.
Biomolecules. 2023 Nov 24;13(12):1700. doi: 10.3390/biom13121700.
The plant defense system is immediately triggered by UV-B irradiation, particularly the production of metabolites and enzymes involved in the UV-B response. Although substantial research on UV-B-related molecular responses in has been conducted, comparatively few studies have examined the precise consequences of direct UV-B treatment on . The ultra-high-performance liquid chromatography tandem mass spectrometry (UPLC-MS/MS) methodology and TMT quantitative proteomics are used in this study to describe the metabolic response of to UV-B radiation and annotate the response mechanism of the primary metabolism and phenolic metabolism of . The outcomes demonstrated that following UV-B radiation, the primary metabolites (L-phenylalanine and D-lactose*) underwent considerable changes to varying degrees. This gives a solid theoretical foundation for investigating the use of precursor substances, such as phenylalanine, to aid plants in overcoming abiotic stressors. The external application of ABA produced a considerable increase in the phenolic content and improved the plants' resistance to UV-B damage. Our hypothesis is that externally applied ABA may work in concert with UV-B to facilitate the transformation of primary metabolites into phenolic compounds. This hypothesis offers a framework for investigating how ABA can increase a plant's phenolic content in order to help the plant withstand abiotic stressors. Overall, this study revealed alterations and mechanisms of primary and secondary metabolic strategies in response to UV-B radiation.
植物防御系统会立即被 UV-B 辐射触发,特别是与 UV-B 反应相关的代谢物和酶的产生。尽管已经对 中与 UV-B 相关的分子反应进行了大量研究,但相对较少的研究考察了直接 UV-B 处理对 的精确影响。本研究采用超高效液相色谱串联质谱(UPLC-MS/MS)方法和 TMT 定量蛋白质组学来描述 对 UV-B 辐射的代谢反应,并注释初生代谢物和酚类代谢物的响应机制。研究结果表明,UV-B 辐射后,初生代谢物(L-苯丙氨酸和 D-乳糖*)发生了不同程度的显著变化。这为研究利用苯丙氨酸等前体物质来帮助植物克服非生物胁迫提供了坚实的理论基础。ABA 的外源施加显著增加了酚类物质的含量,提高了植物对 UV-B 损伤的抗性。我们的假设是,外源施加的 ABA 可能与 UV-B 协同作用,促进初生代谢物向酚类化合物的转化。这一假设为研究 ABA 如何增加植物的酚类物质含量以帮助植物抵御非生物胁迫提供了框架。总的来说,本研究揭示了 对 UV-B 辐射的初生和次生代谢策略的改变和机制。