Behavioral toxicity, histopathological alterations and oxidative stress in Tubifex tubifex exposed to aromatic carboxylic acids- acetic acid and benzoic acid: A comparative time-dependent toxicity assessment

Sci Total Environ. 2023 Jun 10:876:162739. doi: 10.1016/j.scitotenv.2023.162739. Epub 2023 Mar 10.

Abstract

This study evaluated Acetic acid (AA) and Benzoic acid's (BA) acute and sublethal toxicity by observing mortality, behavioral responses, and changes in the levels of oxidative stress enzymes in Tubifex tubifex. Exposure-induced changes in antioxidant activity (Catalase, Superoxide dismutase), oxidative stress (Malondialdehyde concentrations), and histopathological alterations in the tubificid worms were also noted across exposure intervals. The 96 h LC50 values of AA and BA to T. tubifex were 74.99 and 37.15 mg/l, respectively. Severity in behavioral alterations (including increased mucus production, wrinkling, and reduction in clumping) and autotomy showed concentration-dependent trends for both toxicants. Although histopathological effects also showed marked degeneration in the alimentary and integumentary systems in highest exposure groups (worms exposed to 14.99 mg/l for AA and 7.42 mg/l for BA) for both toxicants. Antioxidant enzymes (catalase and superoxide dismutase) also showed a marked increase of up to 8-fold and 10-fold for the highest exposure group of AA and BA respectively. While species sensitivity distribution analysis revealed T. tubifex as most sensitive to AA and BA compared to other freshwater vertebrates and invertebrates, General Unified Threshold model of Survival (GUTS) predicted individual tolerance effects (GUTS-IT), with slower potential for toxicodynamic recovery, as a more likely pathway for population mortality. Study findings demonstrate BA with greater potential for ecological effects compared to AA within 24 h of exposure. Furthermore, ecological risks to critical detritus feeders like T. tubifex may have severe implications for ecosystem services and nutrient availability within freshwater habitats.

Keywords: Autotomy; Chloragogenous tissue; Detritus feeders; Ecosystem services; Oxidative stress; Toxicodynamic model.

MeSH terms

  • Acetic Acid / metabolism
  • Acetic Acid / toxicity
  • Animals
  • Antioxidants / metabolism
  • Benzoates / metabolism
  • Catalase / metabolism
  • Ecosystem
  • Oligochaeta* / metabolism
  • Oxidative Stress
  • Water Pollutants, Chemical* / metabolism

Substances

  • Catalase
  • Acetic Acid
  • Antioxidants
  • Benzoates
  • Water Pollutants, Chemical