Transcriptome alterations in zebrafish gill after exposure to different sizes of microplastics

Ying-Hao Xue, Tao Jia, Ning Yang, Zhanxiang Sun, Zhiyuan Xu, Xin-Li Wen, Liang-shan Feng
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引用次数: 6

Abstract

Abstract Most studies on microplastics (MPs) focused on gut, liver, and brain, and MPs toxicity was size-dependent, but less has been reported on gill. Here, zebrafish were exposed to three sizes of MPs (45-53 μm, 90-106 μm, and 250-300 μm). Next, comparative transcriptome analysis and determination of physiological indices were performed in zebrafish gills to elucidate the size-associated toxicity of MPs to fish gills. Compared with the control, 60, 344, and 802 differentially expressed genes (DEGs) were identified after exposure to 45-53 μm, 90-106 μm, and 250-300 μm MPs for 5 days, respectively. More DEGs in treatment with bigger MPs suggested that bigger MPs might induce more changes in zebrafish gills than smaller ones. These DEGs were significantly enriched in the FoxO signaling, cellular senescence, circadian rhythm and p53 signaling pathways. Besides, 90-106 μm and 250-300 μm MPs treatments inhibited the cell cycle and prevented the apoptosis. The GSH content significantly increased after MPs exposure, suggesting the induction of oxidative stress. AChE and Na+/K+-ATPase activities were significantly lowered in all MPs treatments than in the control, suggesting the inhibition of neurotransmission and ion regulation. These changes might negatively influence the normal functioning of gills, such as osmoregulation, ion regulation, and respiration.
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暴露于不同大小的微塑料后斑马鱼鳃的转录组变化
大多数关于微塑料的研究集中在肠道、肝脏和大脑,微塑料的毒性与大小有关,但对鳃的毒性报道较少。在这里,斑马鱼暴露于三种尺寸的MPs (45-53 μm, 90-106 μm和250-300 μm)。接下来,在斑马鱼鳃中进行比较转录组分析和生理指标测定,以阐明MPs对鱼鳃的大小相关毒性。与对照组相比,暴露于45-53 μm、90-106 μm和250-300 μm mp环境5天后,分别鉴定出60、344和802个差异表达基因(deg)。用较大的MPs治疗更多的deg表明,较大的MPs可能比较小的MPs诱导斑马鱼鳃发生更多的变化。这些deg在FoxO信号通路、细胞衰老、昼夜节律和p53信号通路中显著富集。此外,90 ~ 106 μm和250 ~ 300 μm的MPs处理能抑制细胞周期,防止细胞凋亡。MPs暴露后GSH含量显著升高,提示诱导了氧化应激。与对照组相比,所有MPs处理组的AChE和Na+/K+- atp酶活性均显著降低,表明MPs抑制了神经传递和离子调节。这些变化可能会对鳃的正常功能产生负面影响,如渗透调节、离子调节和呼吸。
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