College of Life Sciences, Yantai University, Yantai 264005, China.
School of Agriculture, Ludong University, Yantai 264025, China.
Aquat Toxicol. 2023 May;258:106478. doi: 10.1016/j.aquatox.2023.106478. Epub 2023 Mar 5.
With extensive use of plastic products, microplastics (MPs, < 5 mm) and nanoplastics (NPs, < 1 μm) have become major pollutants in ecosystem, especially in marine environment. In recent years, researches on the impact of NPs on organisms have gradually increased. However, studies on the influence of NPs on cephalopods are still limited. Golden cuttlefish (Sepia esculenta), an important economic cephalopod, is a shallow marine benthic organism. In this study, the effect of acute exposure (4 h) to 50-nm polystyrene nanoplastics (PS-NPs, 100 μg/L) on the immune response of S. esculenta larvae was analyzed via transcriptome data. A total of 1260 DEGs were obtained in the gene expression analysis. The analyses of GO, KEGG signaling pathway enrichment, and protein-protein interaction (PPI) network were then performed to explore the potential molecular mechanisms of the immune response. Finally, 16 key immune-related DEGs were obtained according to the number of KEGG signaling pathways involved and the PPI number. This study not only confirmed that NPs had an impact on cephalopod immune response, but also provided novel insights for further unmasking the toxicological mechanisms of NPs.
由于塑料制品的广泛使用,微塑料(MPs,<5 毫米)和纳米塑料(NPs,<1 微米)已成为生态系统中的主要污染物,尤其是在海洋环境中。近年来,关于 NPs 对生物体影响的研究逐渐增多。然而,关于 NPs 对头足类动物影响的研究仍然有限。金乌贼(Sepia esculenta)是一种重要的经济头足类动物,是一种浅海底栖生物。在本研究中,通过转录组数据分析了急性暴露(4 小时)于 50nm 聚苯乙烯纳米塑料(PS-NPs,100μg/L)对金乌贼幼体免疫反应的影响。在基因表达分析中获得了 1260 个差异表达基因。然后进行了 GO、KEGG 信号通路富集和蛋白质-蛋白质相互作用(PPI)网络分析,以探讨免疫反应的潜在分子机制。最后,根据参与的 KEGG 信号通路数量和 PPI 数量,获得了 16 个关键的免疫相关差异表达基因。本研究不仅证实了 NPs 对头足类动物免疫反应有影响,还为进一步揭示 NPs 的毒理学机制提供了新的见解。