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基于 LC-MS 代谢组学研究聚苯乙烯微塑料急性暴露对剑尾鱼(Xiphophorus helleri)肝脏的影响。

Effects of polystyrene microplastics acute exposure in the liver of swordtail fish (Xiphophorus helleri) revealed by LC-MS metabolomics.

机构信息

College of Animal Science and Technology, Henan University of Science and Technology, Luoyang, Henan 471003, China; College of Life Science Hainan Normal University, Haikou, Hainan 571158, China.

College of Animal Science and Technology, Henan University of Science and Technology, Luoyang, Henan 471003, China.

出版信息

Sci Total Environ. 2022 Dec 1;850:157772. doi: 10.1016/j.scitotenv.2022.157772. Epub 2022 Aug 5.

Abstract

As global pollution, microplastics pollution has aroused growing concerns. In our experiment, the effect of microplastics acute exposure on the liver of swordtail fish was investigated by using LC-MS metabolomics. Fishes treated with high concentration polystyrene microspheres (1 μm) for 72 h were divided into three concentration groups: (A) no microplastics, (B): 1 × 10 microspheres L, (C): 1 × 10 microspheres L. Metabolomic analysis indicated that exposure to microplastics caused alterations of metabolic profiles in swordtail fish, including 37 differential metabolites were identified in B vs. A, screened out ten significant metabolites, which involved 14 metabolic pathways. One hundred three differential metabolites were identified in C vs. A, screened out 16 significant metabolites, which involved 30 metabolic pathways. Six significant metabolites were overlapping in group B vs. A and C vs. A; they are 3-hydroxyanthranilic acid, l-histidine, citrulline, linoleic acid, pantothenate, and xanthine. In addition, four metabolic pathways are overlapping in group B vs. A and C vs. A; they are beta-alanine metabolism, biosynthesis of amino acids, linoleic acid metabolism, and aminoacyl-tRNA biosynthesis. These differential metabolites were involved in oxidative stress, immune function, energy metabolism, sugar metabolism, lipid metabolism, molecule transport, and weakened feed utilization, growth performance, nutrient metabolism, and animal growth. Furthermore, we found that the number of interfered amino acids and microplastics showed a dose-effect. In summary, great attention should be paid to the potential impact of microplastics on aquatic organisms.

摘要

随着全球污染的加剧,微塑料污染引起了越来越多的关注。在我们的实验中,采用 LC-MS 代谢组学方法研究了微塑料急性暴露对剑尾鱼肝脏的影响。将高浓度聚苯乙烯微球(1 μm)处理 72 h 的鱼类分为三个浓度组:(A)无微塑料,(B):1×10 微球/L,(C):1×10 微球/L。代谢组学分析表明,暴露于微塑料会导致剑尾鱼代谢谱发生变化,在 B 与 A 相比中鉴定出 37 个差异代谢物,筛选出 10 个显著代谢物,涉及 14 条代谢途径。在 C 与 A 相比中鉴定出 103 个差异代谢物,筛选出 16 个显著代谢物,涉及 30 条代谢途径。在 B 与 A 和 C 与 A 相比中,有 6 个显著代谢物重叠;它们是 3-羟基邻氨基苯甲酸、l-组氨酸、瓜氨酸、亚油酸、泛酸和黄嘌呤。此外,在 B 与 A 和 C 与 A 相比中,有 4 条代谢途径重叠;它们是β-丙氨酸代谢、氨基酸生物合成、亚油酸代谢和氨酰-tRNA 生物合成。这些差异代谢物参与氧化应激、免疫功能、能量代谢、糖代谢、脂质代谢、分子运输和降低饲料利用率、生长性能、营养代谢和动物生长。此外,我们发现干扰氨基酸的数量与微塑料呈剂量效应关系。综上所述,应高度重视微塑料对水生生物的潜在影响。

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