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梯度浓度聚苯乙烯纳米塑料对 razor clams 代谢过程的渐进影响。

Gradual effects of gradient concentrations of polystyrene nanoplastics on metabolic processes of the razor clams.

机构信息

Freshwater Fishers Research Institute of Jiangsu Province, 79 Chatting East Street, Nanjing, 210017, China.

Institute of Animal Genetic Resource, Nanjing Normal University, 1 Wenyuan Street, Nanjing, 210046, China; State Key Laboratory of Marine Environmental Science, College of Ocean and Earth Sciences, Xiamen University, Xiamen, 361102, China.

出版信息

Environ Pollut. 2021 Oct 15;287:117631. doi: 10.1016/j.envpol.2021.117631. Epub 2021 Jun 23.

Abstract

With the widespread occurrence and accumulation of plastic waste in the world, plastic pollution has become a serious threat to ecosystem and ecological security, especially to estuarine and coastal areas. Understanding the impacts of changing nanoplastics concentrations on aquatic organisms living in these areas is essential for revealing the ecological effects caused by plastic pollution. In the present study, we revealed the effects of exposure to gradient concentrations (0.005, 0.05, 0.5 and 50 mg/L) of 75 nm polystyrene nanoplastics (PS-NPs) for 48 h on metabolic processes in muscle tissue of a bivalve, the razor clam Sinonovacula constricta, via metabolomic and transcriptomic analysis. Our results showed that PS-NPs caused dose-dependent adverse effects on energy reserves, membrane lipid metabolism, purine metabolism and lysosomal hydrolases. Exposure to PS-NPs reduced energy reserves, especially lipids. Membrane lipid metabolism was sensitive to PS-NPs with contents of phosphocholines (PC), phosphatidylethanolamines (PE) and phosphatidylserines (PS) increasing and degradation being inhibited in all concentrations. High concentrations of PS-NPs altered the purine metabolism via increasing contents of guanosine triphosphate (GTP) and adenine, which may be needed for DNA repair, and consuming inosine and hypoxanthine. During exposure to low concentrations of PS-NPs, lysosomal hydrolases in S. constricta, especially cathepsins, were inhibited while this influence was improved transitorily in 5 mg/L of PS-NPs. These adverse effects together impacted energy metabolism in S. constricta and disturbed energy homeostasis, which was manifested by the low levels of acetyl-CoA in high concentrations of PS-NPs. Overall, our results revealed the effects of acute exposure to gradient concentrations of PS-NPs on S. constricta, especially its metabolic process, and provide perspectives for understanding the toxicity of dynamic plastic pollution to coastal organisms and ecosystem.

摘要

随着世界范围内塑料废弃物的广泛出现和积累,塑料污染已成为对生态系统和生态安全的严重威胁,尤其是对港湾和沿海地区。了解不断变化的纳米塑料浓度对生活在这些地区的水生生物的影响,对于揭示塑料污染造成的生态效应至关重要。在本研究中,我们通过代谢组学和转录组学分析,揭示了暴露于梯度浓度(0.005、0.05、0.5 和 50 mg/L)的 75nm 聚苯乙烯纳米塑料(PS-NPs)48 小时对双壳贝类刀额新对虾肌肉组织代谢过程的影响。结果表明,PS-NPs 对能量储备、膜脂代谢、嘌呤代谢和溶酶体水解酶产生了剂量依赖性的不良影响。暴露于 PS-NPs 降低了能量储备,尤其是脂质。膜脂代谢对 PS-NPs 敏感,所有浓度下的磷酸胆碱(PC)、磷脂酰乙醇胺(PE)和磷脂酰丝氨酸(PS)含量增加,降解受到抑制。高浓度的 PS-NPs 通过增加鸟苷三磷酸(GTP)和腺嘌呤的含量来改变嘌呤代谢,这可能是 DNA 修复所必需的,并消耗肌苷和次黄嘌呤。在暴露于低浓度的 PS-NPs 时,刀额新对虾的溶酶体水解酶,特别是组织蛋白酶,受到抑制,而在 5mg/L 的 PS-NPs 中,这种影响会暂时得到改善。这些不利影响共同影响了刀额新对虾的能量代谢,扰乱了能量稳态,表现为高浓度 PS-NPs 中乙酰辅酶 A 水平较低。总的来说,本研究结果揭示了刀额新对虾急性暴露于梯度浓度 PS-NPs 对其代谢过程的影响,为理解动态塑料污染对沿海生物和生态系统的毒性提供了新视角。

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