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| Oxidative stress in response to xenobiotics in the blue mussel Mytilus edulis L.: evidence for variation along a natural salinity gradient of the Baltic Sea Prevodnik, A.; Gardeström, J.; Lilja, K.; Elfwing, T.; McDonagh, B.; Petrovic, N.; Tedengren, M.; Sheehan, D.; Bollner, T. (2007). Oxidative stress in response to xenobiotics in the blue mussel Mytilus edulis L.: evidence for variation along a natural salinity gradient of the Baltic Sea. Aquat. Toxicol. 82(1): 63-71. https://dx.doi.org/10.1016/j.aquatox.2007.01.006
In: Aquatic Toxicology. Elsevier Science: Tokyo; New York; London; Amsterdam. ISSN 0166-445X; e-ISSN 1879-1514
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Chemical elements > Metals > Transition elements > Heavy metals > Copper Natural resources > Mineral resources > Mineral deposits > Subsurface deposits > Fuels > Fossil fuels > Petroleum Peptides > Proteins > Enzymes > Oxidoreductases > Peroxidases > Catalase Peptides > Proteins > Enzymes > Transferases > Alkyl (aryl) transferases > Glutathione transferase Mytilus edulis Linnaeus, 1758 [WoRMS] Marien/Kust |
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7‰) region had the highest SFG, and displayed the largest SFG decrease in response to treatment, indicating that they had the most energy available for allocation to stress response. They also displayed the least increase in the level of protein carbonyl groups. Mussels from the Northern, less saline ( 5%) region had the highest degree of protein carbonyl groups in response to both treatments, and lowest average SFG. Silver stained diagonal gels for samples from one sampling site in South and North, respectively, demonstrated differences in disulfide bond profiles for both stress treatments. There was also a regional difference in the number of protein disulfides observed on diagonal gels. The most diverse protein disulfide response was found in South. No treatment related effects on GST and CAT activities were observed. We suggest that both SFG and protein carbonyl groups show that geographical difference in stress susceptibility, previously established between the North and the Baltic Seas, also apply on a regional scale within the Baltic Sea, along the salinity gradient. |
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7‰) region had the highest SFG, and displayed the largest SFG decrease in response to treatment, indicating that they had the most energy available for allocation to stress response. They also displayed the least increase in the level of protein carbonyl groups. Mussels from the Northern, less saline (