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Assessing the water quality in a World Heritage Site using biomarkers in top fish predators. | LitMetric

AI Article Synopsis

  • The study evaluates how human activities affect water quality and fish health in the Guaraguaçu River, Brazil, by using top predator fish, Hoplias malabaricus, as indicators.
  • Fish were sampled from three different sectors representing varying levels of human impact, revealing significant neurotoxic effects and oxidative stress in fish from more impacted areas.
  • Despite no pesticides found in water samples, harmful biomarkers indicated serious health issues in fish, demonstrating that water quality can impact biota even without visible pollutants.

Article Abstract

The use of biomarkers in fish for biomonitoring is a valuable approach to reveal effects of human impacts on biota health. Top predator fish are effective models for monitoring human activities' impacts on aquatic ecosystems. The Guaraguaçu River is the largest river-system on coastal region of South Brazil and a World Heritage site. The river receives contaminants from disorderly urban growth, including discharges of domestic sewage and small fishery boats, particularly during the tourist season. Our study aimed to assess impact of anthropogenic activities on water quality in the Guaraguaçu River by analyzing environmental contamination biomarkers in the top fish predator Hoplias malabaricus. Fish were collected using a fyke net trap across sectors representing a gradient of anthropic impact: sector 1 - pristine; sector 2 - impacted; and sector 3 - less impacted. Water samples were collected to analyze the presence of trace elements and pesticide. Biomarkers of the antioxidant system, histopathology, genotoxicity, neurotoxicity, and concentration of trace elements were analyzed in fish tissues. In water samples Al, Fe and Mn were detected, but no pesticides were found. In fish muscle, zinc and iron were detected. Brain acetylcholinesterase activity decreased in impacted sectors, indicating neurotoxic effects. The antioxidant system increased activity in gills and liver, and damage from lipoperoxidation was observed, particularly in sector 2 when compared to sector 1, suggesting oxidative stress. Histopathological biomarkers revealed lesions in the liver and gills of fish in impacted sectors. Micronuclei, a genotoxicity biomarker, were observed in organisms from all sectors. Our results demonstrate detrimental effects of poor water quality on biota health, even when contaminants are not detected in water.

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Source
http://dx.doi.org/10.1016/j.scitotenv.2024.172072DOI Listing

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