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纳米塑料和邻苯二甲酸二(2-乙基己基)酯在淡水食物链(蛋白核小球藻-大型溞-斑点叉尾鮰)中的营养传递导致鱼类脂质代谢紊乱。

Trophic transfer of nanoplastics and di(2-ethylhexyl) phthalate in a freshwater food chain (Chlorella Pyrenoidosa-Daphnia magna-Micropterus salmoides) induced disturbance of lipid metabolism in fish.

机构信息

College of Marine Sciences, South China Agricultural University, Guangzhou 510642, China.

Institute of Eco-Environmental Research, Guangxi Academy of Sciences, Nanning 530007, China.

出版信息

J Hazard Mater. 2023 Oct 5;459:132294. doi: 10.1016/j.jhazmat.2023.132294. Epub 2023 Aug 14.

Abstract

Nanoplastics and di(2-ethylhexyl) phthalate (DEHP) are ubiquitous emerging contaminants that are transferred among organisms through food chain in the ecosystem. This study evaluated the trophic transfer of polystyrene nanoplastics (PSNPs) and DEHP in a food chain including Chlorella pyrenoidosa, Daphnia magna and Micropterus salmoides (algae-crustacean-fish) and lipid metabolism at a higher trophic level in fish. Our results showed that the PSNPs and DEHP accumulated in C. pyrenoidosa or D. magna were transferred to the M. salmoides, of which the DEHP were not biomagnified, while the PSNPs were trophically amplified by the food chain. It is suggested that more PSNPs might be accumulated by higher level consumers in a longer food chain. Additionally, the trophic transfer of PSNPs and DEHP resulted in antioxidant response and histopathological damage in M. salmoides. Moreover, the lipid biochemical parameters and lipid metabolism related genes (fasn, hsl, cpt1a, atgl, apob, fabp1, lpl, cetp) of M. salmoides were significantly affected, which indicated disturbance of lipid metabolism. This study offers great insight into the transfer of contaminants by trophic transfer and their negative effects on organisms at higher trophic levels, which cause human exposure to MNPs and organic contaminants in the ecosystem.

摘要

纳米塑料和邻苯二甲酸二(2-乙基己基)酯(DEHP)是普遍存在的新兴污染物,它们通过食物链在生态系统中在生物体之间传递。本研究评估了食物链中聚苯乙烯纳米塑料(PSNPs)和 DEHP 的营养转移,该食物链包括绿球藻、大型溞和斑点叉尾鮰(藻类-甲壳类动物-鱼类),以及鱼类中更高营养级别的脂质代谢。我们的结果表明,PSNPs 和 DEHP 在绿球藻或大型溞中积累,然后转移到斑点叉尾鮰中,其中 DEHP 没有生物放大,而 PSNPs 则通过食物链进行营养放大。这表明在更长的食物链中,更高营养级别的消费者可能会积累更多的 PSNPs。此外,PSNPs 和 DEHP 的营养转移导致斑点叉尾鮰产生抗氧化反应和组织病理学损伤。此外,斑点叉尾鮰的脂质生化参数和脂质代谢相关基因(fasn、hsl、cpt1a、atgl、apob、fabp1、lpl、cetp)受到显著影响,这表明脂质代谢受到干扰。本研究深入了解了食物链中污染物的转移及其对更高营养级生物的负面影响,这导致人类暴露于生态系统中的 MNPs 和有机污染物中。

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