Searching for Paralytic Toxin, Tetrodotoxin, in Swedish Bivalve Shellfish
Abstract
1. Introduction
2. Results and Discussion
- The relationship between TTX and Vibrio bacteria is particularly interesting given the strong correlation between bacterial prevalence, TTX occurrence and warmer climate, as highlighted in previous research [14,40,41,42,43,44,45]. Coastal waters and brackish areas with moderate salinity, typically dominating in Scandinavian marine environments, favours Vibrio populations [46,47,48]. However, high abundance of Vibrio bacteria has also been reported in more saline waters of the Skagerrak Sea, especially in warm summer days [49]. One notable Vibrio outbreak in the Baltic Sea occurred during the warm summer in 2014, when the sea surface temperatures became unusually high [50]. This Vibrio outbreak temporally corresponded with a TTX-positive mussel sample (26 µg/kg) in Scottland (North Sea) [37], assumptively indicating the presence of TTX in Swedish marine waters (no samples were tested for TTX presence in Sweden during this period).
- Furthermore, the assumption of TTX presence in Swedish marine environment is supported with the knowledge that sea surface temperature seems to be one of the ultimate criteria reported earlier for the occurrence of TTX [23,34,37]. The threshold of 15 °C was suggested to indicate a limit above which TTX is more likely to occur in shellfish. Certainly, surface temperatures of the seawater around Sweden can reach well above that threshold during the summer season, as exemplified for the sampling seasons of this study in Figure 4, and the summer of 2014 described above.
- 3.
- Introduction of invasive species, like the pufferfish or the spread of the invasive ribbon worm Cephalotrix simula to southern and northern Europe in the last decade, is strongly associated with the occurrence of TTX in European marine waters [21,55,56,57]. To the best of our knowledge, the latest biodiversity survey concerning nemerteans along the Swedish west coast was conducted in 2007 [58]. Various nemertean species have been studied in Sweden since then [59], but the occurrence of C. simula has not been reported yet. It is, however, reasonable to assume that the species could have become introduced into Swedish marine waters. One of the main vectors for the introduction of marine invasive species globally is ballast water of ships by which aquatic organisms are transported to new environments. Aspects of its constantly increasing impact on the existing ecosystems have been addressed elsewhere [60,61,62,63]. A majority of Sweden’s blue mussel production is located within 60 km north of the Port of Gothenburg, which is the largest port in Scandinavia.
3. Materials and Methods
3.1. Standards, Reagents and Chemicals
3.2. Sampling and Sample Preparation
3.3. Screening Analysis
4. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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Zuberovic Muratovic, A.; Dharavath, S.; Bergquist, J.; Persson, M.; Renborg, E.; Pekar, H.; Klijnstra, M. Searching for Paralytic Toxin, Tetrodotoxin, in Swedish Bivalve Shellfish. Mar. Drugs 2025, 23, 257. https://doi.org/10.3390/md23060257
Zuberovic Muratovic A, Dharavath S, Bergquist J, Persson M, Renborg E, Pekar H, Klijnstra M. Searching for Paralytic Toxin, Tetrodotoxin, in Swedish Bivalve Shellfish. Marine Drugs. 2025; 23(6):257. https://doi.org/10.3390/md23060257
Chicago/Turabian StyleZuberovic Muratovic, Aida, Shyamraj Dharavath, Jonas Bergquist, Malin Persson, Elin Renborg, Heidi Pekar, and Mirjam Klijnstra. 2025. "Searching for Paralytic Toxin, Tetrodotoxin, in Swedish Bivalve Shellfish" Marine Drugs 23, no. 6: 257. https://doi.org/10.3390/md23060257
APA StyleZuberovic Muratovic, A., Dharavath, S., Bergquist, J., Persson, M., Renborg, E., Pekar, H., & Klijnstra, M. (2025). Searching for Paralytic Toxin, Tetrodotoxin, in Swedish Bivalve Shellfish. Marine Drugs, 23(6), 257. https://doi.org/10.3390/md23060257