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February 2, 2026Toxics0 citationsOpen Access

Environmental Stress Shaping Oxidative Responses in the Invasive Crayfish Procambarus clarkii from Lake Trasimeno

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BCBarbara CaldaroniUniversity of PerugiaGPGianandrea La PortaUniversity of PerugiaADAmbrosius Josef Martin DörrUniversity of Perugia

Key Points

  • The study aims to determine how environmental fluctuations affect oxidative stress responses in Procambarus clarkii.
  • Analyzed oxidative stress responses in hepatopancreas and abdominal muscle tissues.
  • Evaluated environmental parameters, including hydrometric levels, temperature, and pH.
  • Used Generalised Additive Models to assess relationships between oxidative responses and environmental factors.
  • Considered sex differences in responses among male and female specimens.
  • Identified significant differences in oxidative stress markers based on tissue type, sex, and season.
  • Found associations between oxidative responses and hydrometric levels, temperature, and dissolved oxygen.
  • Results indicate the adaptive physiological plasticity of P. clarkii in changing freshwater conditions.

Abstract

Procambarus clarkii (red swamp crayfish) exhibits physiological plasticity that enables adaptation to variable freshwater conditions, such as those in Lake Trasimeno. This study examined whether fluctuations in hydrometric level and associated physicochemical parameters affect oxidative stress responses in the hepatopancreas and abdominal muscle of male and female individuals. Superoxide dismutase, catalase, glutathione peroxidase, and metallothionein reveal tissue, sex, and season-specific differences that indicate adaptive physiological adjustments. Temporal trends were evaluated, and multivariate analyses summarised environmental and metal gradients. Generalised Additive Models (GAMs) were used to explore relationships between oxidative responses and these gradients, with sex as a categorical factor. Associations were identified with hydrometric level, temperature, conductivity, transparency, pH, dissolved oxygen, and metals of biological relevance. These results highlight the remarkable physiological plasticity of P. clarkii, which underpins its success as an invasive species in fluctuating freshwater ecosystems.

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Cite This Study

Caldaroni et al. (2026) studied this question.

synapsesocial.com/papers/6980ff19c1c9540dea811caehttps://doi.org/10.3390/toxics14020137
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