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Ecotoxicological Method with Marine Bacteria Vibrio anguillarum to Evaluate the Acute Toxicity of Environmental Contaminants
Published on: May 26, 2017
A comparative study on the influence of manganese on the bactericidal response of marine invertebrates
Carolina Oweson1, Bodil Hernroth
1Inst. of Marine Ecology, University of Gothenburg, Kristineberg 566, 450 34 Fiskebäckskil, Sweden.
Abstract:
Manganese, Mn, is a naturally abundant metal in marine sediments. During hypoxic conditions the metal converts into a bioavailable state and can reach levels that have been shown immunotoxic to the crustacean Nephrops norvegicus. For this species it has previously been shown that exposure to 15 mg L(-1) of Mn decreased the number of circulating haemocytes while it for the echinoderm Asterias rubens increased the number of coelomocytes. Here, we compared if five days of exposure to the same concentration of Mn affects the bactericidal capacity of these two species and the mollusc Mytilus edulis when inoculated with the bacterium Vibrio parahaemolyticus. Viable counts of the bacteria were investigated at a time-course post-injection in the blood and the digestive glands of Mn-exposed and un-exposed (controls) animals. Accumulation of Mn was also analyzed in these tissues. When exposed to Mn the haemocyte numbers were significantly reduced in M. edulis and it was shown that the bactericidal capacity was impaired in the mussels as well as in N. norvegicus. This was most obvious in the digestive glands. These two species also showed the highest accumulation of the metal. In A. rubens the bactericidal capacity was not affected and the metal concentration was similar to the exposure concentration. After a recovery period of three days the concentration of Mn was significantly reduced in all three species. However, in M. edulis and N. norvegicus it was still double that of A. rubens which could explain the remaining bactericidal suppression observed in N. norvegicus. This study pointed out that exposure to such Mn-levels that are realistic to find in nature could have effects on the whole organism level, in terms of susceptibility to infections. The effect seemed associated to the accumulated concentration of Mn which differed on species level.
Insights
Marine manganese (Mn) exposure impairs bactericidal capacity in mussels and Norway lobsters, but not starfish. This effect is linked to Mn accumulation and highlights risks to marine invertebrates from environmental metal levels.
Area of Science:
- Environmental toxicology
- Marine biology
- Immunology
Background:
- Manganese (Mn) is abundant in marine sediments and becomes bioavailable under hypoxic conditions.
- Elevated Mn levels can be immunotoxic to marine invertebrates, affecting immune cell counts.
Purpose of the Study:
- To investigate the impact of Mn exposure on the bactericidal capacity of Mytilus edulis, Nephrops norvegicus, and Asterias rubens.
- To compare Mn accumulation and its effects on immune function across these three species.
Main Methods:
- Exposure of marine invertebrates to 15 mg L(-1) Mn for five days.
- Inoculation with Vibrio parahaemolyticus and monitoring of bacterial counts over time.
- Analysis of Mn accumulation in blood and digestive glands, and assessment of bactericidal capacity.
Main Results:
- Mn exposure significantly reduced haemocyte numbers and impaired bactericidal capacity in M. edulis and N. norvegicus, particularly in digestive glands.
- A. rubens showed no effect on bactericidal capacity and minimal Mn accumulation.
- Mn levels remained elevated in M. edulis and N. norvegicus after a recovery period, correlating with persistent immune suppression.
Conclusions:
- Environmentally relevant Mn concentrations can negatively impact marine invertebrate immune function and increase susceptibility to infections.
- Species-specific Mn accumulation influences the severity of immunotoxic effects.
- The findings underscore the ecological risks of Mn pollution to marine ecosystems.
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