凡纳滨对虾对模拟风电场海底电缆磁场的氧化应激与代谢响应

Oxidative stress and metabolic responses of Litopenaeus vannamei to magnetic fields from simulated submarine cables in offshore wind farms

  • 摘要: 为评估海上风电场海底电缆磁场对海洋生物的影响,本研究分别以凡纳滨对虾 (Litopenaeus vannamei) 幼虾(体质量约3 g,暴露组与对照组各30尾) 和成虾 (体质量约25 g,每组30尾) 为试验生物,开展了为期14 d的磁场 (0.2 mT) 暴露试验。暴露后,观察幼虾肝胰腺形态变化;随后在相同条件下开展成虾暴露试验,检测肝胰腺抗氧化酶活性,并采用非靶向代谢组技术分析肝胰腺、肌肉组织的差异代谢物。结果显示,磁异常导致幼虾肝胰腺白化,而成虾则无此现象。与对照组相比,暴露组成虾肝胰腺中超氧化物歧化酶 (SOD) 活性和丙二醛 (MDA) 浓度均显著降低,而谷胱甘肽过氧化物酶 (GSH-Px) 活性显著升高。KEGG通路富集分析显示,肝胰腺中差异代谢物主要富集于嘌呤、苯丙氨酸、花生四烯酸 (AA) 代谢等通路,而肌肉组织中则显著富集于ABC转运体、氨基酸代谢、神经活性配体-受体相互作用等通路。此外,肝胰腺中D-木糖酸、鸟苷一磷酸 (GMP)、腺苷-5'-单磷酸 (AMP)、胞苷5'-单磷酸 (CMP)、尿苷一磷酸 (UMP)、白三烯C4等显著上调,琥珀酸和L-苏糖酸等显著下调;肌肉组织中虾青素显著上调,AA及其衍生物2-花生四烯酰甘油 (2-AG) 和N-花生四烯酰多巴胺 (NADA)、牛磺酸、D-苹果酸和D-赤藓糖4-磷酸等显著下调。研究揭示了磁场暴露对凡纳滨对虾能量代谢、氧化防御和炎症反应的分子响应,为风电场海底电缆磁场对海洋生物的影响评估提供了基础数据。

     

    Abstract: To evaluate the impact of submarine cable magnetic fields from offshore wind farms on marine organisms, we used Litopenaeus vannamei juveniles (Body mass ca. 3 g, 30 individuals per exposure group and control group) and adults (Body mass ca. 25 g, 30 individuals per group) as experimental subjects to conduct a 14-day magnetic field (0.2 mT) exposure experiment. First, we observed the post-exposure, morphological changes in the hepatopancreas of juveniles, then performed an exposure experiment on adults under the same conditions to assess antioxidant enzyme activity in the hepatopancreas, and to analyze differential metabolites in both hepatopancreas and muscle tissues using non-targeted metabolomics technology. Results show that magnetic field exposure led to albino damage of the hepatopancreas of juveniles. Compared with the control group, the 0.2 mT group showed a significant decrease in superoxide dismutase (SOD) activity in the hepatopancreas of adults, an increase in glutathione peroxidase (GSH-Px) activity and a decrease in malondialdehyde (MDA) concentration. KEGG enrichment analysis reveals that differentially expressed metabolites in the hepatopancreas were primarily enriched in purine metabolism, phenylalanine metabolism, and arachidonic acid (AA) metabolism pathways, whereas those in muscle tissue were significantly associated with ABC transporters, amino acid biosynthesis, and neuroactive ligand-receptor interactions. In the hepatopancreas of adults, D-xylonic acid, guanosine monophosphate (GMP), adenosine 5'-monophosphate (AMP), cytidine 5'-monophosphate (CMP), uridine monophosphate (UMP) and leukotriene C4 were upregulated. In contrast, succinate and L-threonic acid were downregulated. In muscle cells, astaxanthin was upregulated, AA and its derivatives 2-arachidonoyl glycerol (2-AG) and N-arachidonoyl dopamine (NADA) were downregulated, and taurine, D-malic acid, and D-erythrose 4-phosphate were significantly downregulated. The results reveal the molecular responses of magnetic field exposure to energy metabolism, oxidative defense, and inflammatory response in L. vannamei, providing basic data for assessing the impact of magnetic fields of submarine cables in wind farms on marine life.

     

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