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January 23, 2026Environmental Toxicology0 citations

Biochemical and Genotoxic Effects of Maneb on Eisenia fetida

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SDSalih DikilitaşÖAÖzlem Aksoy

Key Points

  • The aim is to investigate the biochemical and genotoxic effects of maneb on the earthworm E. fetida.
  • Combined physiological, biochemical, cellular, and molecular analyses
  • Probit analysis to determine LC50 of maneb
  • Assessment of lipid peroxidation and antioxidant enzyme activities
  • Comet assay for detecting cell damage
  • Real-time PCR to analyze expression of antioxidant enzymes
  • LC50 of maneb was determined as 798.4 mg/kg in dry soil
  • Weight of worms decreased with increasing maneb concentrations
  • Lipid peroxidation, indicated by increased MDA levels, rose alongside maneb concentration
  • CAT and GST enzyme activities were elevated in treated worms compared to controls
  • Comet assay revealed increasing cell damage with higher maneb exposure

Abstract

ABSTRACT Maneb is a dithiocarbamate pesticide that is widely used to control many fungal diseases affecting vegetables, fruits, and field crops because of its low acute toxicity and short environmental persistence and is classified as carcinogenic to humans. Eisenia fetida is the preferred model organism for investigating the toxic effects of pesticides and other environmental pollutants. The toxic effects of a maneb fungicide on E. fetida were examined at physiological, biochemical, cellular, and molecular levels. As a result of probit analysis, the lethal concentration (LC50) of maneb on E. fetida was 798.4 mg/kg (dry soil). At sublethal concentrations (50, 100, and 200 mg/kg (dry soil)), decreases were detected in the weight of worms exposed to maneb as the concentration increased. In the analyses performed to detect lipid peroxidation, the amount of MDA increased in parallel with the increase in the maneb concentration and exposure time. CAT and GST enzyme activities were increased at all concentrations compared with the control group during the four sampling days. In the data obtained as a result of comet assay, cell damage increased depending on the changes in the maneb concentration and exposure time. As a result of real‐time PCR analysis, increases in the expression of antioxidant enzymes were detected in worms exposed to maneb to clear reactive oxygen species (ROS). This study investigated the effects of maneb on E. fetida for the first time at physiological, biochemical, and molecular levels and contributed to the elucidation of changes in maneb in worms.

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Cite This Study

Dikilitaş et al. (2026) studied this question.

synapsesocial.com/papers/69730f59c8125b09b0d1f159https://doi.org/10.1002/tox.70042
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