Design, synthesis and insecticidal evaluation of aryloxy dihalopropene derivatives.

Bioorg Med Chem

State Key Laboratory of the Discovery and Development of Novel Pesticide, Shenyang Research Institute of Chemical Industry Co. Ltd, Shenyang 110021, China.

Published: February 2016

AI Article Synopsis

  • Plutella xylostella is a significant pest affecting cruciferous crops globally, and pyridalyl is an effective insecticide against it.
  • A series of new insecticidal compounds were developed from pyridalyl using specialized chemical methods and their structures were confirmed through various analytical techniques.
  • Among these compounds, 10e and 10g showed over 75% insecticidal activity against P. xylostella, with compound 10e proving to be as effective as pyridalyl in field trials.

Article Abstract

Plutella xylostella (P. xylostella) is a highly migratory, cosmopolitan species and one of the most important pest of cruciferous crops worldwide. Pyridalyl as a novel class of insecticides has good efficacy against P. xylostella. On the basis of the commercial insecticide pyridalyl, a series of new aryloxy dihalopropene derivatives were designed and synthesized by using Intermediate Derivatization Methods. Their chemical structures were confirmed by (1)H NMR, high-resolution mass spectrum (HRMS), and single-crystal X-ray diffraction analysis. The insecticidal activities of the new compounds against P. xylostella were evaluated. The results of bioassays indicated that most of the compounds showed moderate to high activities at the tested concentration, especially compounds 10e and 10g displayed more than 75% insecticidal activity against P. xylostella at 6.25mg/L, while pyridalyl showed 50% insecticidal activity at the same concentration. The field trials result of the insecticidal activities showed that compound 10e as a 10% emulsifiable concentrate (EC) was effective in the control of P. xylostella at 75-150g a.i./ha, and the mortality of P. xylostella for treatment with compound 10e at 75g a.i./ha was equivalent to pyridalyl at 105g a.i./ha.

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http://dx.doi.org/10.1016/j.bmc.2015.09.030DOI Listing

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Design, synthesis and insecticidal evaluation of aryloxy dihalopropene derivatives.

Bioorg Med Chem

February 2016

State Key Laboratory of the Discovery and Development of Novel Pesticide, Shenyang Research Institute of Chemical Industry Co. Ltd, Shenyang 110021, China.

Article Synopsis
  • Plutella xylostella is a significant pest affecting cruciferous crops globally, and pyridalyl is an effective insecticide against it.
  • A series of new insecticidal compounds were developed from pyridalyl using specialized chemical methods and their structures were confirmed through various analytical techniques.
  • Among these compounds, 10e and 10g showed over 75% insecticidal activity against P. xylostella, with compound 10e proving to be as effective as pyridalyl in field trials.
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