Liang Weiwenhui, Li Bowen, Jong Mui-Choo, Ma Cuizhu, Zuo Chencheng, Chen Qiqing, Shi Huahong
State Key Laboratory of Estuarine and Coastal Research, East China Normal University, Shanghai 200241, China.
Institute of Environment and Ecology, Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen 518055, China.
J Hazard Mater. 2023 Apr 15;448:130856. doi: 10.1016/j.jhazmat.2023.130856. Epub 2023 Jan 23.
Microplastic pollution has raised global concern for its hazards to biota. To determine the direct impact of microplastics during their contact with fish, we exposed goldfish (Carassius auratus) to 100 and 1000 items/L waterborne microplastic fibers in the short- and long-term. In the presence of 1000 items/L of microplastic fibers, the coughing behavior of fish increased significantly after 2 h of exposure. Predatory behaviors decreased significantly by 53.0% after 45 d of exposure, and the reduction in daily food intake was negatively related to exposure duration in the 1000 items/L group. In addition, microplastic fibers stimulated dynamic mucus secretion across different fish tissues during the different processes evaluated in this study, with 30.0% and 62.9% overall increases in the secretory capacity of mucus cells in the 100 and 1000 items/L groups, respectively. These behavioral and histological alterations were derived from the ventilation, feeding, and swimming processes of goldfish. We regarded these changes as process-oriented impacts, suggesting the effects of microplastics on fish and how fish cope with microplastics.
微塑料污染因其对生物群的危害而引发了全球关注。为了确定微塑料与鱼类接触期间的直接影响,我们在短期和长期内将金鱼(Carassius auratus)暴露于每升水中含有100和1000个微塑料纤维的环境中。在每升水中含有1000个微塑料纤维的情况下,暴露2小时后,鱼的咳嗽行为显著增加。暴露45天后,捕食行为显著减少了53.0%,并且在每升水中含有1000个微塑料纤维的组中,每日食物摄入量的减少与暴露持续时间呈负相关。此外,在本研究评估的不同过程中,微塑料纤维刺激了不同鱼类组织中的动态黏液分泌,在每升水中含有100和1000个微塑料纤维的组中,黏液细胞的分泌能力总体分别增加了30.0%和62.9%。这些行为和组织学改变源自金鱼的呼吸、摄食和游泳过程。我们将这些变化视为面向过程的影响,表明了微塑料对鱼类的影响以及鱼类如何应对微塑料。