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Updated: Jan 16, 2026

Quantification of the Potential Impact of Glyphosate-Based Products on Microbiomes
Published on: January 10, 2022
Complex interactions between the gut microbiota, pesticide contamination and physiological traits in grey partridges
Léa Bariod1, Joël White2, Maurice Millet3
1UMR 7372, Centre d'Études Biologiques de Chizé, La Rochelle Université & CNRS, Villiers en Bois, 79360, France.
Abstract:
The intensification of agriculture in recent years, particularly through the massive use of pesticides and fertilizers, has caused a decline in biodiversity, specifically among farmland birds. Emerging research highlights the adverse effects of chronic and low-dose pesticide exposure, particularly on the gut microbiota, which is essential for host metabolism and immune health. Understanding how pesticides disrupt microbial diversity and physiological traits is therefore critical to inform management and conservation strategies. This study examines the impact of pesticide contamination on the gut microbiota composition and physiological responses of captive-bred male grey partridges, a threatened species frequently exposed to pesticide cocktail residues through their habitat and diet. We detected residues of 27 pesticides in the birds' blood, including fungicides, herbicides, and insecticides. Among the different microbial diversity metrics analysed, only MOTU richness was significantly affected by the interaction between pesticide load and body condition, with contrasting effects observed across different body condition groups. Furthermore, higher microbial diversity was positively associated with hematocrit levels, suggesting that microbial diversity may be related to the physiological health of birds. These findings highlight the complex relationship between pesticide exposure, gut microbiota, and host physiology, emphasizing the need for further research to understand these interactions in wildlife health.

