Enantioselective degradation of metalaxyl in grape, tomato, and rice plants

Chirality. 2015 Feb;27(2):109-14. doi: 10.1002/chir.22397. Epub 2014 Oct 14.

Abstract

Enantioselective biodegradation of chiral pesticide metalaxyl in grape, tomato, and rice plants under field conditions were studied. Metalaxyl enantiomers were completely separated with a resolution (Rs) of 5.01 by high-performance liquid chromatography (HPLC) based on a cellulose tris (3-chloro-4-methyl phenyl carbamate) chiral column (Lux Cellulose-2). Metalaxyl enantiomers from matrixes were extracted by acetonitrile and purged using Cleanert Alumina-A solid phase extraction (SPE). The linearity, recovery, precision, sensitivity, and matrix effect of the method were assessed. The result showed that significant stereoselectivity occurred in grape, tomato, and rice plants. In grape, (+)-S-metalaxyl with a half-life of 5.5 d degraded faster than (-)-R-metalaxyl with that of 6.9 d, and the enantiomer fraction (EF) value reached 0.37 at 21 d. The same enantioselectivity was observed in tomato, and the half-life was 2.2 d for the S-enantiomer and 3.0 d for the R-enantiomer. The EF values decreased from 0.49 of 0 d to 0.26 of 14 d. On the other hand, a preferential degradation of the R-form was found in rice plants, with an EF value of 0.70 at 14 d, and the corresponding half-life was 2.3 d for the R-form and 2.8 d for the S-form.

Keywords: enantioselective degradation; grape; metalaxyl; rice plant; tomato.

MeSH terms

  • Acetonitriles / chemistry
  • Alanine / analogs & derivatives*
  • Alanine / chemistry
  • Alanine / pharmacokinetics
  • Biodegradation, Environmental
  • Calibration
  • Chromatography, High Pressure Liquid / methods
  • Fungicides, Industrial / chemistry
  • Fungicides, Industrial / pharmacokinetics
  • Half-Life
  • Oryza / drug effects
  • Oryza / metabolism*
  • Reproducibility of Results
  • Solanum lycopersicum / drug effects
  • Solanum lycopersicum / metabolism*
  • Solid Phase Extraction
  • Vitis / drug effects
  • Vitis / metabolism*

Substances

  • Acetonitriles
  • Fungicides, Industrial
  • metalaxyl
  • Alanine
  • acetonitrile