College of Ecological Technology and Engineering, Shanghai Institute of Technology, Shanghai 201418, P.R. China; College of Biological, Chemical Science and Engineering, Jiaxing University, Jiaxing 314001, P.R. China.
College of Biological, Chemical Science and Engineering, Jiaxing University, Jiaxing 314001, P.R. China.
Aquat Toxicol. 2021 Jul;236:105840. doi: 10.1016/j.aquatox.2021.105840. Epub 2021 Apr 18.
In this study, effects of polystyrene microplastics (MPS) on Euglena gracilis were investigated via examination on its photosynthesis and motility, two typical properties of the protozoan. No adverse effects were observed after 4-d exposure except for decrease in motility at two high MPS concentrations (5 and 25 mg/L). After 8-d duration, MPS at 1 mg/L had no obvious effects on E. gracilis, but two higher concentrations (5 and 25 mg/L) of MPS inhibited protozoan growth, motility, and photosynthesis. The reduced protozoan photosynthetic activity was reflected by changes in F/F (the maximum photochemical yield of PSII), ΔF (difference between F and F) and PI (the performance index), indicative of reduced quantum yield of electron transport and enhanced energy dissipation. A dose-dependent effect of MPS on E. gracilis was found in protozoan growth, photosynthesis and motility, especially photosynthetic indices. MPS of small size (75 nm) seemed more toxic to the protozoa than large size (1000 nm). Internalization of MPS in the cells and chloroplasts was observed clearly for the first time, likely responsible for their toxicity. Analysis on photosynthetic process and motility of E. gracilis could provide more comprehensive understanding of MPS toxicity in the aquatic environment, and may potentially serve as a biomonitoring tool.
本研究通过考察聚对苯二甲酸乙二酯微塑料(MPS)对眼虫的光合作用和运动性这两个原生动物的典型特性的影响,来研究 MPS 对眼虫的影响。在 4 天的暴露期内,除了在两个较高的 MPS 浓度(5 和 25mg/L)下运动性下降外,没有观察到任何不良反应。在 8 天的时间里,1mg/L 的 MPS 对眼虫没有明显影响,但两个较高浓度(5 和 25mg/L)的 MPS 抑制了原生动物的生长、运动和光合作用。原生动物光合作用活性的降低反映在 F/F(PSII 的最大光化学产量)、ΔF(F 和 F 之间的差异)和 PI(性能指数)的变化上,表明电子传递的量子产量降低,能量耗散增加。MPS 对眼虫的生长、光合作用和运动性,特别是光合作用指标,表现出剂量依赖性的影响。较小尺寸(75nm)的 MPS 似乎比较大尺寸(1000nm)的 MPS 对原生动物更具毒性。首次清楚地观察到 MPS 在细胞和叶绿体中的内化,这可能是其毒性的原因。对眼虫光合作用过程和运动性的分析可以提供对水生环境中 MPS 毒性的更全面的理解,并可能潜在地用作生物监测工具。