College of Plant Protection, Shenyang Agricultural University, Shenyang, P. R. China.
State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, P. R. China.
J Sep Sci. 2018 Oct;41(20):3871-3880. doi: 10.1002/jssc.201800681. Epub 2018 Sep 10.
Famoxadone is a widely used chiral fungicide on tomato, apple, and grape. But it is still being employed as a racemic mixture without distinguishing the difference between enantiomers, which often leads to its inaccurate risk assessment. In this study, a rapid, sensitive, and reliable chiral analytical method was developed for famoxadone enantiomers by ultra high performance liquid chromatography/tandem mass spectrometry, optimal separation condition was achieved with Lux Amylose-1 column using acetonitrile/water (70:30, v/v) as mobile phase at 0.3 mL/min in 6 min. The average recoveries for two enantiomers in all of the matrices at three spiking levels ranged from 89.8 to 109.4%, with relative standard deviation less than 9.5%. The limits of quantification for all enantiomers in tomato, apple, and grape were not more than 4 μg/kg. And the proposed method was successfully applied to investigate the enantioselective degradation of famoxadone enantiomers in tomato, apple, and grape. The data showed that S-(+)-famoxadone was preferentially degraded comparing to the R-(-)-famoxadone in tomato, apple, and grape. The potential reasons of the enantioselective behavior were also discussed. This study could help in better understanding the environmental fate of famoxadone and the rational use of chiral pesticide in agricultural production.
福美双是一种在番茄、苹果和葡萄上广泛使用的手性杀菌剂。但它仍被作为外消旋混合物使用,而没有区分对映异构体之间的差异,这往往导致其风险评估不准确。在本研究中,采用超高效液相色谱/串联质谱法开发了一种快速、灵敏、可靠的福美双对映异构体分析方法,最优分离条件是在 Lux Amylose-1 柱上,以乙腈/水(70:30,v/v)为流动相,流速为 0.3 mL/min,在 6 min 内实现。在所有基质中,两种对映异构体在三个添加水平下的平均回收率在 89.8%至 109.4%之间,相对标准偏差小于 9.5%。在番茄、苹果和葡萄中的所有对映异构体的定量限均不超过 4 μg/kg。并成功应用于研究福美双对映异构体在番茄、苹果和葡萄中的对映选择性降解。结果表明,S-(+)-福美双优先于 R-(-)-福美双在番茄、苹果和葡萄中降解。还讨论了对映选择性行为的潜在原因。本研究有助于更好地了解福美双的环境命运和在农业生产中合理使用手性农药。