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暴露于聚苯乙烯微塑料后,大型溞(Daphnia pulex)生活史特征、抗氧化防御、能量代谢和分子结果的变化。

Changes in life-history traits, antioxidant defense, energy metabolism and molecular outcomes in the cladoceran Daphnia pulex after exposure to polystyrene microplastics.

机构信息

Freshwater Fisheries Research Institute of Jiangsu Province, 79 Chating East Street, Nanjing, 210017, China; College of Agricultural Science and Engineering, Hohai University, 8 Focheng West Road, Nanjing, 211000, China.

Freshwater Fisheries Research Institute of Jiangsu Province, 79 Chating East Street, Nanjing, 210017, China.

出版信息

Chemosphere. 2022 Dec;308(Pt 1):136066. doi: 10.1016/j.chemosphere.2022.136066. Epub 2022 Aug 17.

Abstract

Ubiquitous plastic pollution is a threat to the organisms' survival and ecosystem functions, especially in aquatic environments. Although there is increasing concern about the toxicity of microplastics, knowledge about the effects of microplastics of diverse sizes and adverse impacts on freshwater organisms is still limited. In the present study, the alteration in life-history traits, antioxidant defense and energy metabolism of the model freshwater zooplankton Daphnia pulex were assessed after chronic exposure to gradient concentrations (0.5, 1, 2 and 4 mg/L) of 500-nm polystyrene microplastics (PS-MPs). Changes in protein abundance were analyzed using proteomics after exposure to 1 mg/L of PS-MPs for 14 days. The results showed that ingested PS-MPs accumulated in the digestive tract of D. pulex. 2 and 4 mg/L of PS-MPs inhibited the survival function and 4 mg/L of PS-MPs reduced the body length of D. pulex after 14 or 21 days of exposure. The exposure did not decrease the fecundity of D. pulex. After 14 days of exposure, PS-MPs changed the antioxidant capacity in a dose-dependent way and all concentrations of PS-MPs induced lipid oxidative damage. Exposure to 500-nm PS-MPs for 14 days decreased glucose and fructose contents and disturbed the lipid transport and utilization in D. pulex. Meanwhile, PS-MPs activated DNA repair and transcription regulation but inhibited lipid metabolism and response to unfolded or misfolded proteins. These results indicated that chronic exposure to 500-nm PS-MPs negatively affected D. pulex and showed similar toxic mechanisms to smaller nano-sized microplastics. Exposure to 500-nm PS-MPs resulted in restricted resources such as inhibited antioxidant capacity or energy metabolisms and D. pulex showed a potential trade-off among life-history traits to maintain fecundity at the cost of self-maintenance. The present study offers perspectives for understanding the differences in ecological effects caused by microplastics of different sizes.

摘要

无处不在的塑料污染对生物的生存和生态系统功能构成威胁,尤其是在水生环境中。尽管人们越来越关注微塑料的毒性,但对于不同大小的微塑料的影响以及对淡水生物的不利影响的知识仍然有限。在本研究中,慢性暴露于梯度浓度(0.5、1、2 和 4 mg/L)的 500nm 聚苯乙烯微塑料(PS-MPs)后,评估了模式淡水浮游动物大型溞(Daphnia pulex)的生活史特征、抗氧化防御和能量代谢的变化。暴露于 1 mg/L PS-MPs 14 天后,使用蛋白质组学分析蛋白质丰度的变化。结果表明,摄入的 PS-MPs 在大型溞的消化道中积累。暴露 2 和 4 mg/L PS-MPs 抑制了大型溞的生存功能,暴露 4 mg/L PS-MPs 降低了大型溞的体长,暴露 14 或 21 天后。暴露并未降低大型溞的繁殖力。暴露 14 天后,PS-MPs 以剂量依赖的方式改变了抗氧化能力,所有浓度的 PS-MPs 均诱导了脂质氧化损伤。暴露于 500nm PS-MPs 14 天降低了葡萄糖和果糖含量,并干扰了大型溞的脂质转运和利用。同时,PS-MPs 激活了 DNA 修复和转录调节,但抑制了脂质代谢和对未折叠或错误折叠蛋白的反应。这些结果表明,慢性暴露于 500nm PS-MPs 对大型溞产生负面影响,并表现出与较小纳米级微塑料相似的毒性机制。暴露于 500nm PS-MPs 导致资源受限,例如抗氧化能力或能量代谢受到抑制,而大型溞则表现出在生活史特征之间进行潜在权衡的能力,以牺牲自我维持为代价维持繁殖力。本研究为理解不同大小的微塑料引起的生态效应差异提供了新视角。

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