Development of a mechanistic model for analyzing avian reproduction data for pesticide risk assessment

Environ Pollut. 2023 Jun 15:327:121477. doi: 10.1016/j.envpol.2023.121477. Epub 2023 Apr 1.

Abstract

Mechanistic effect models are increasingly recommended as tools for refining evaluations of risk from exposure to pesticides. In the context of bird and mammal risk assessments, DEB-TKTD models have been recommended for characterizing sublethal effects at lower tiers. However, there are currently no such models. Currently, chronic, multi-generational studies are performed to characterize potential effects of pesticides on avian reproduction, but it is has not been established to what extent results from these studies can inform effect models. Here, a standard Dynamic Energy Budget (DEB) model was extended to account for the avian toxicity endpoints observed in regulatory studies. We linked this new implementation to a toxicological module to capture observed pesticide effects on reproduction via a decreased efficiency of egg production. We analysed ten reproduction studies with five different pesticides conducted with the mallard (Anas platyrhynchos) and the northern bobwhite (Colinus virginianus). The new model implementation accurately distinguished between effects on egg production from direct mechanism of toxicity and from food avoidance. Due to the specific nature of regulatory studies, model applicability for risk refinement is currently limited. We provide suggestions for next steps in model development.

Keywords: Dynamic energy budget theory; Mallard; Northern bobwhite; Physiological mode of action; Toxicokinetic-toxicodynamic modeling.

MeSH terms

  • Animals
  • Birds
  • Colinus*
  • Mammals
  • Pesticides* / toxicity
  • Reproduction
  • Risk Assessment

Substances

  • Pesticides