Department of Experimental Biology, Faculty of Science, Palacký University in Olomouc, Šlechtitelů 27, Olomouc, 783 71, Czech Republic.
Department of Chemical Biology, Faculty of Science, Palacký University in Olomouc, Šlechtitelů 27, Olomouc, 783 71, Czech Republic.
Phytochemistry. 2023 Nov;215:113855. doi: 10.1016/j.phytochem.2023.113855. Epub 2023 Sep 9.
Cis-(+)-12-oxophytodienoic acid (cis-(+)-OPDA) is a bioactive jasmonate, a precursor of jasmonic acid, which also displays signaling activity on its own. Modulation of cis-(+)-OPDA actions may be carried out via biotransformation leading to metabolites of various functions. This work introduces a methodology for the synthesis of racemic cis-OPDA conjugates with amino acids (OPDA-aa) and their deuterium-labeled analogs, which enables the unambiguous identification and accurate quantification of these compounds in plants. We have developed a highly sensitive liquid chromatography-tandem mass spectrometry-based method for the reliable determination of seven OPDA-aa (OPDA-Alanine, OPDA-Aspartate, OPDA-Glutamate, OPDA-Glycine, OPDA-Isoleucine, OPDA-Phenylalanine, and OPDA-Valine) from minute amount of plant material. The extraction from 10 mg of fresh plant tissue by 10% aqueous methanol followed by single-step sample clean-up on hydrophilic-lipophilic balanced columns prior to final analysis was optimized. The method was validated in terms of accuracy and precision, and the method parameters such as process efficiency, recovery and matrix effects were evaluated. In mechanically wounded 30-day-old Arabidopsis thaliana leaves, five endogenous (+)-OPDA-aa were identified and their endogenous levels were estimated. The time-course accumulation revealed a peak 60 min after the wounding, roughly corresponding to the accumulation of cis-(+)-OPDA. Our synthetic and analytical methodologies will support studies on cis-(+)-OPDA conjugation with amino acids and research into the biological significance of these metabolites in plants.
顺式-(+)-12-氧代植二烯酸(cis-(+)-OPDA)是一种生物活性茉莉酸,是茉莉酸的前体,本身也具有信号活性。cis-(+)-OPDA 作用的调节可以通过生物转化来进行,从而产生具有各种功能的代谢物。本工作介绍了一种合成手性 cis-OPDA 与氨基酸(OPDA-aa)及其氘标记类似物的方法,该方法可用于明确鉴定和准确定量植物中的这些化合物。我们开发了一种高灵敏度的基于液相色谱-串联质谱的方法,用于可靠地测定七种 OPDA-aa(OPDA-丙氨酸、OPDA-天冬氨酸、OPDA-谷氨酸、OPDA-甘氨酸、OPDA-异亮氨酸、OPDA-苯丙氨酸和 OPDA-缬氨酸),所需植物材料量仅为 10mg。通过 10%甲醇水溶液从 10mg 新鲜植物组织中提取,然后在亲水亲脂平衡柱上进行一步样品净化,最后进行分析,对该方法进行了优化。该方法在准确性和精密度方面进行了验证,并评估了方法参数,如过程效率、回收率和基质效应。在机械损伤的 30 天大田芥菜叶片中,鉴定出五种内源性(+)-OPDA-aa,并估算了它们的内源性水平。时间进程的积累表明在损伤后 60 分钟出现峰值,大致与 cis-(+)-OPDA 的积累相对应。我们的合成和分析方法将支持 cis-(+)-OPDA 与氨基酸的缀合研究,并研究这些代谢物在植物中的生物学意义。