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Metabolomics - A robust bioanalytical approach for the discovery of the modes-of-action of pesticides: A review
Authors:Konstantinos A Aliferis  Suha Jabaji
Institution:Department of Plant Science, McGill University, 21111 Lakeshore Road, Sainte-Anne-de-Bellevue, Quebec, Canada H9X 3V9
Abstract:The agrochemical industry is facing great undertaking that includes increasing demand for the development of new crop protection agents that are safe for the environment and the consumers, and at the same time combat the issue of the emergence of resistance pest strains. The mode-of-action (MoA) is among the features of a bioactive compound that largely determine whether the abovementioned issues are addressed or not, and subsequently whether its commercial development will be addressed. The early discovery of the MoA of bioactive compounds could accelerate pesticide research and development by reducing the required time and costs. Based on advances in synthetic and natural product chemistry, scientists have access to a vast number of compounds that could potentially be developed as crop protection agents. The screening of such compounds with respect to their MoA requires accurate and robust bioanalytical tools. Metabolomics is a powerful bioanalytical tool that will likely play a significant role in the acceleration of the discovery of MoA of bioactive compounds. In the present review, the capabilities and principles and applications of metabolomics for the study of the MoA of herbicides, insecticides, acaricides, fungicides, and antibiotics are discussed.
Keywords:ACCase  acetyl-CoA carboxylase  AHAS  acetohydroxyacid synthase  ALS  acetolactate synthase  EPSPS  5-enolpyruvyl-shikimate-3-phosphate synthase  FT-ICR/MS  Fourier transform-ion cyclotron resonance/mass spectroscopy  GC/MS  gas chromatography/mass spectrometry  1H NMR  proton nuclear magnetic resonance spectroscopy  HPLC-ESI/MS  high performance liquid chromatography electrospray ionization/mass spectrometry  4-HPPD  4-hydroxyphenyl-pyruvate-dioxygenase  LC-TOF/MS  liquid chromatography time-of-flight/mass spectrometry  MoA  mode(s)-of-action  MS  mass spectrometry  PCA  principal components analysis  PDS  phytoene desaturase  PEP  phosphoenolpyruvate  PLS-DA  partial least squares-discriminant analysis  PPO  protoporphyrinogen oxidase  PSI  photosystem I  PSII  photosystem II
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