Sublethal effects of chlorfenapyr on the life table parameters, nutritional physiology and enzymatic properties of Bradysia odoriphaga (Diptera: Sciaridae)

Pestic Biochem Physiol. 2018 Jun:148:93-102. doi: 10.1016/j.pestbp.2018.04.003. Epub 2018 Apr 6.

Abstract

Bradysia odoriphaga (Diptera: Sciaridae) is the major pest affecting Chinese chive production. Chlorfenapyr is a halogenated pyrrole-based pro-insecticide that is currently used to control insects and mites on a variety of crops. In the present study, fourth-instar larvae of B. odoriphaga were exposed to chlorfenapyr at LC1, LC20 and LC50 concentrations. The developmental duration of the treated larvae was not significantly different, but fecundity was significantly increased in the LC1 and LC20 treatment groups compared with the control group. The population parameters of the LC1 treatment group were increased significantly, whereas those of the LC50 treatment group were reduced significantly compared with the control. The food consumption by larvae and pupal weight were significantly increased under the LC1 treatment and decreased under the LC50 treatment compared with the control. Moreover, chlorfenapyr decreased the lipid, carbohydrate and trehalose contents significantly, whereas the total protein content was increased compared with the control. Additionally, the activities of protease, lipase and trehalase were significantly decreased. Chlorfenapyr treatment for 24 h also induced the activities of glutathione S-transferase (GST), carboxylesterase (CarE) and O-demethylation. The results of this study suggest that low lethal concentrations of chlorfenapyr can affect oviposition, population development, the activities of digestion and detoxification enzymes, and nutrient accumulation in B. odoriphaga. This study provides valuable information for the assessment and rational application of chlorfenapyr for effective control of this pest.

Keywords: Bradysia odoriphaga; Chlorfenapyr; Detoxification enzymes; Developmental duration; Nutrient content; Population dynamics.

MeSH terms

  • Animals
  • Carbohydrates / analysis
  • Carboxylesterase / biosynthesis*
  • China
  • Chive / parasitology
  • Crops, Agricultural / parasitology
  • Digestion / drug effects
  • Diptera / drug effects*
  • Diptera / enzymology
  • Diptera / physiology
  • Enzyme Induction
  • Feeding Behavior / drug effects*
  • Fertility / drug effects
  • Glutathione Transferase / biosynthesis
  • Inactivation, Metabolic
  • Insect Control / methods
  • Insect Proteins / analysis
  • Insecticides / toxicity*
  • Larva / drug effects
  • Larva / physiology
  • Lipids / analysis
  • Oviposition / drug effects
  • Pyrethrins / toxicity*
  • Toxicity Tests, Subacute*
  • Trehalose / analysis

Substances

  • Carbohydrates
  • Insect Proteins
  • Insecticides
  • Lipids
  • Pyrethrins
  • Trehalose
  • Glutathione Transferase
  • Carboxylesterase
  • chlorfenapyr