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January 23, 2026Biology0 citationsOpen Access

Physiological and Transcriptomic Responses of the Freshwater Hydrozoan Craspedacusta sowerbii to Acute Antibiotic and Cadmium Exposure

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HYHailong YanYWY. WangYHYufan He

Key Points

  • The research aims to examine how the freshwater hydrozoan Craspedacusta sowerbii responds physiologically and at the genetic level to two pollutants: an antibiotic and cadmium.
  • Conducted morphological and behavioral assessments of Craspedacusta sowerbii under acute exposure to sulfamethoxazole and cadmium.
  • Performed RNA sequencing to analyze gene expression changes in response to each pollutant.
  • Compared transcriptional response patterns to identify shared and unique stress-related pathways between the two chemicals.
  • Sulfamethoxazole caused reduced motility and body shrinkage, while cadmium led to a complete mortality rate within 24 hours.
  • RNA sequencing indicated distinct patterns of gene expression, with sulfamethoxazole up-regulating oxidative stress and immune response genes.
  • Cadmium exposure resulted in significant down-regulation of metabolic and cellular regulation genes, indicating severe physiological disruption.

Abstract

Chemical contaminants are increasingly detected in freshwater environments, yet the physiological and molecular responses of many non-model freshwater invertebrates to acute chemical stress remain poorly understood. In this study, we investigated the physiological and transcriptomic responses of the freshwater hydrozoan Craspedacusta sowerbii to two widespread aquatic pollutants: the antibiotic sulfamethoxazole (20 μM) and the heavy metal salt CdSO4 (10 μM). Morphological and behavioral observations showed that sulfamethoxazole exposure led to reduced motility and body shrinkage, whereas cadmium exposure caused rapid loss of movement and complete mortality within 24 h. RNA sequencing revealed distinct transcriptional response patterns to the two stressors. Sulfamethoxazole exposure primarily induced the up-regulation of genes associated with oxidative stress, apoptosis, immune responses, and signaling pathways, suggesting an active but limited stress-adaptation response. In contrast, cadmium exposure resulted in extensive down-regulation of genes involved in metabolic pathways, cell cycle regulation, fatty acid metabolism, and anti-aging processes, suggesting severe disruption of core metabolic processes. Comparative pathway analyses identified both shared stress-related responses and pollutant-specific transcriptional signatures, with cadmium exerting markedly stronger inhibitory effects at both physiological and molecular levels. These results reveal clear thresholds of stress tolerance and response failure in C. sowerbii under chemical pollution, and highlight its ecological sensitivity to water quality deterioration. Together, these findings provide mechanistic insight into acute pollutant-induced stress responses in a freshwater Cnidarian and offer a useful reference for understanding how freshwater invertebrates respond to short-term chemical disturbances.

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Cite This Study

Yan et al. (2026) studied this question.

synapsesocial.com/papers/69731089c8125b09b0d202dehttps://doi.org/10.3390/biology15020193
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