Dow AgroSciences LLC, 9330 Zionsville Road, Indianapolis, Indiana 46268, United States.
Environ Sci Technol. 2015 May 5;49(9):5579-83. doi: 10.1021/es506334y. Epub 2015 Apr 20.
Improved retention and distribution of agrochemicals on plant surfaces is an important attribute in the biological activity of pesticide. Although retention of agrochemicals on plants after spray application can be quantified using traditional analytical techniques including LC or GC, the spatial distribution of agrochemicals on the plants surfaces has received little attention. Matrix assisted laser desorption/ionization (MALDI) imaging technology has been widely used to determine the distribution of proteins, peptides and metabolites in different tissue sections, but its application to environmental research has been limited. Herein, we probed the potential utility of MALDI imaging in characterizing the distribution of three commercial fungicides on wheat leaf surfaces. Using this MALDI imaging method, we were able to detect 500 ng of epoxiconazole, azoxystrobin, and pyraclostrobin applied in 1 μL drop on the leaf surfaces using MALDI-MS. Subsequent dilutions of pyraclostrobin revealed that the compound can be chemically imaged on the leaf surfaces at levels as low as 60 ng of total applied in the area of 1 μL droplet. After application of epoxiconazole, azoxystrobin, and pyraclostrobin at a field rate of 100 gai/ha in 200 L water using a track sprayer system, residues of these fungicides on the leaf surfaces were sufficiently visualized. These results suggest that MALDI imaging can be used to monitor spatial distribution of agrochemicals on leaf samples after pesticide application.
提高农药在植物表面的保留和分布是其生物活性的一个重要属性。尽管可以使用传统的分析技术(包括 LC 或 GC)来量化喷雾施药后农药在植物上的保留量,但农药在植物表面的空间分布却很少受到关注。基质辅助激光解吸/电离(MALDI)成像技术已广泛用于确定不同组织切片中蛋白质、肽和代谢物的分布,但它在环境研究中的应用有限。在这里,我们探讨了 MALDI 成像在表征三种商业杀菌剂在小麦叶片表面分布中的潜在应用。使用这种 MALDI 成像方法,我们能够检测到在叶片表面用 1μL 液滴施加的 500ng 的环丙唑醇、唑菌酯和吡唑醚菌酯,使用 MALDI-MS 进行检测。随后对吡唑醚菌酯进行稀释,结果表明该化合物可以在叶片表面以低至 60ng 的总浓度进行化学成像,而施加面积为 1μL 液滴。使用轨道喷雾器系统在 200L 水中以 100gai/ha 的田间用量施药后,这些杀菌剂在叶片表面的残留量可以被充分可视化。这些结果表明,MALDI 成像可用于监测施药后叶片样品中农药的空间分布。