Marques Thiago L, Sasaki Milton K, Nunes Lidiane C, Rocha Fábio R P
Center for Nuclear Energy in Agriculture, University of São Paulo, Av. Centenário, 303, 13416-000 Piracicaba, SP, Brazil.
Federal University of Rio Grande do Sul, Avenida Bento Gonçalves, 91540-000 Porto Alegre, RS, Brazil.
J Anal Methods Chem. 2020 Jul 17;2020:8865849. doi: 10.1155/2020/8865849. eCollection 2020.
Salicylic acid (SA) is an important stress signaling phytohormone and plays an essential role in physiological processes in plants. SA fractionation has been carried out batchwise, which is not compatible with the high analytical demand in agronomical studies and increases susceptibility to analytical errors. In this context, a novel flow-batch sample preparation system for SA fractionation on fresh plant leaves was developed. It was based on microwave-assisted extraction with water and conversion of the conjugated species to free SA by alkaline hydrolysis. Free and total SA were quantified by fluorimetry after separation by sequential injection chromatography in a C18 monolithic column. The proposed procedure is directly applicable to plant leaves containing up 16 mg kg SA, with a limit of detection of 0.1 mg kg of SA, coefficient of variation of 3.0% ( = 10), and sampling rate of 4 samples h. The flow-batch sample preparation system was successfully applied to SA fractionation in sugarcane, corn, and soybean leaves without clogging or increasing in backpressure. The proposed approach is simple, less time-consuming, and more environmentally friendly in comparison to batchwise procedures.
水杨酸(SA)是一种重要的应激信号植物激素,在植物的生理过程中起着至关重要的作用。水杨酸的分级分离一直是分批进行的,这与农学研究中的高分析需求不兼容,并且增加了分析误差的易感性。在此背景下,开发了一种用于新鲜植物叶片水杨酸分级分离的新型流动-分批进样样品制备系统。它基于水的微波辅助萃取以及通过碱性水解将共轭物转化为游离水杨酸。在C18整体柱中通过顺序注射色谱分离后,通过荧光法对游离和总水杨酸进行定量。所提出的方法可直接应用于含有高达16mg/kg水杨酸的植物叶片,水杨酸的检测限为0.1mg/kg,变异系数为3.0%(n = 10),进样速率为每小时4个样品。流动-分批进样样品制备系统已成功应用于甘蔗、玉米和大豆叶片中的水杨酸分级分离,未出现堵塞或背压增加的情况。与分批进样方法相比,所提出的方法简单、耗时少且更环保。