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Updated: Jan 8, 2026

Thermal Limits Determination for Zooplankton Using a Heat Block
Published on: November 18, 2022
Rising temperature increases methomyl (Lannate® BR) toxicity in Amazonian frog tadpoles: Impacts on survival and
Guilherme Azambuja1,2, Igor Luis Kaefer1, Adalberto Luis Val2
1Post-Graduate Program in Zoology, Institute of Biological Sciences, Federal University of Amazonas, Manaus, Brazil.
Abstract:
The increased use of pesticides in tropical regions, combined with rapid warming due to climate change, poses a critical threat to amphibian populations. However, the interactive effects of these stressors on tropical amphibians remain poorly understood. In this study, we assessed lethal and sublethal responses to methomyl in two Amazonian anurans, Osteocephalus taurinus and Scinax ruber. Tadpoles were exposed to methomyl at two temperatures (26.5 °C and 30 °C), simulating current and projected climate scenarios. Acute toxicity was quantified through LC50, and thermal tolerance was assessed via critical thermal maximum (CTmax). Warming significantly increased methomyl toxicity in O. taurinus, lowering the LC50 from 96.4 mg/L to 45.9 mg/L at 30 °C. S. ruber showed no such effect, with LC50 values of 15.5 mg/L (26.5 °C) and 19.7 mg/L (30 °C). S. ruber was approximately six times more sensitive to methomyl than O. taurinus across temperatures. Methomyl exposure did not alter CTmax in either species, although variability increased in O. taurinus at higher concentrations. These findings provide novel evidence of temperature-modulated methomyl toxicity in Amazonian frog tadpoles, highlighting the need to incorporate native species, sublethal endpoints, and climate-relevant stressors in ecotoxicological risk assessments.
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