Li Luoxin, Yu Jiani, Ma Yonghua, Tan Hui, Tan Fengxia, Chai Yi, Zhang Hui
Key Lab of Freshwater Biodiversity Conservation Ministry of Agriculture and Rural Affairs of China, Yangtze River Fisheries Research Institute, CAFS, Wuhan 4302232, China.
College of Animal Science and Technology, Yangtze University, Jingzhou 434025, China.
Ecotoxicol Environ Saf. 2025 Feb;291:117813. doi: 10.1016/j.ecoenv.2025.117813. Epub 2025 Feb 3.
This study explores the combined toxicity of microplastics (MPs) and chromium (Cr) on the freshwater green algae Scenedesmus obliquus. As emerging contaminants in aquatic ecosystems, MPs have been shown to intensify the toxicity of Cr, leading to a more significant impact on algal growth and biochemical responses than either stressor alone. A 30-day experimental simulation revealed that co-exposure to Cr and 5 µm diameter polystyrene MPs resulted in significantly enhanced toxicity compared to individual exposures, characterized by a notable decrease in algal growth, diminished photosynthetic pigments, and protein content, alongside oxidative system damage. 100 nm MPs exhibited a distinct toxicity profile, with more pronounced effects when not combined with Cr, suggesting size-dependent interactions with algal cells. Transcriptomic analysis illuminated the complex regulatory mechanisms, indicating that toxicity primarily modulates metabolic pathways essential for photosynthesis, oxidative phosphorylation, the TCA cycle, and ribosome function in Scenedesmus obliquus. This study not only delineates the distinct toxicity effects of single and combined exposure systems but also emphasizes the need for a deeper understanding of the role of MPs in environmental pollution and their potential to modulate the toxicity of heavy metals in aquatic ecosystems.
本研究探讨了微塑料(MPs)与铬(Cr)对淡水绿藻斜生栅藻的联合毒性。作为水生生态系统中的新兴污染物,微塑料已被证明会增强铬的毒性,对藻类生长和生化反应产生比单独任何一种应激源更显著的影响。一项为期30天的实验模拟表明,与单独暴露相比,铬与直径5微米的聚苯乙烯微塑料共同暴露导致毒性显著增强,其特征为藻类生长显著下降、光合色素和蛋白质含量减少,同时氧化系统受损。100纳米的微塑料表现出不同的毒性特征,在不与铬结合时影响更为明显,表明其与藻类细胞存在尺寸依赖性相互作用。转录组分析揭示了复杂的调控机制,表明毒性主要调节斜生栅藻光合作用、氧化磷酸化、三羧酸循环和核糖体功能所必需的代谢途径。本研究不仅描述了单一和联合暴露系统的不同毒性效应,还强调了深入了解微塑料在环境污染中的作用及其调节水生生态系统中重金属毒性的潜力的必要性。