阿维菌素暴露对斑马鱼的急性毒性和肠道菌群功能扰动

    Acute toxicity and intestinal flora function disturbance of zebrafish exposed to avermectin

    • 摘要: 为研究阿维菌素对水生生物的残留风险,建立了阿维菌素在养殖水体中的高效液相色谱-质谱联用痕量检测方法,以斑马鱼为模式生物进行梯度 (0.0335~0.0833 mg a.i./L) 染毒试验,采用静态法进行暴露试验,观察斑马鱼的行为变化,计算死亡率及相关生理指标,分析肠道菌群结构与功能的差异。结果发现,阿维菌素对斑马鱼96 h 半致死剂量 (LC50) 为0.0680 mg a.i./L,可归类为剧毒药物;非致死浓度暴露下,斑马鱼运动活力显著降低,体内丙二醛 (MDA) 含量与过氧化氢酶 (CAT) 活性随染毒浓度增加而上升,超氧化物歧化酶 (SOD) 活性呈现低浓度促进、高浓度抑制的现象。此外,阿维菌素暴露显著降低了斑马鱼肠道菌群的多样性和均匀度,改变了菌群组成结构,特别是提高了条件致病菌的丰度占比,通过菌群功能预测显示这将导致正常代谢和免疫功能的失调,说明阿维菌素可以通过机体应激氧化损伤与扰乱肠道菌群组成及功能对斑马鱼产生长期毒性效应,其在水产养殖中的残留问题需引起高度重视,以确保水产品质量安全。

       

      Abstract: To investigate the residue risks of avermectin to aquatic organisms, a trace detection method for avermectin in aquaculture water was established using high-performance liquid chromatography-mass spectrometry (HPLC-MS). Zebrafish (Danio rerio) were used as a model organism for gradient toxicity tests (0.0335-0.0833 mg a.i./L). A static exposure method was employed to observe behavioral changes, mortality, and related physiological indicators in zebrafish, as well as differences in gut microbiota structure and function. The results showed that the 96-hour LC50 value of avermectin for zebrafish was 0.0680 mg a.i./L, which was classified as highly toxic substance. At non-lethal exposure concentrations, the locomotor activity of zebrafish was significantly reduced. The content of malondialdehyde (MDA) and the activity of catalase (CAT) in zebrafish increased with increasing exposure concentrations, while the activity of superoxide dismutase (SOD) showed a promoting effect at low concentrations and an inhibitory effect at high concentrations. Additionally, the exposure to avermectin significantly reduced the diversity and evenness of the gut microbiota in zebrafish, altered the compositional structure of the microbiota, and particularly increased the abundance of conditional pathogens. Functional prediction of the microbiota indicated that this would lead to dysregulation of normal metabolism and immune functions. These findings suggest that avermectin can produce long-term toxic effects on zebrafish through stress-induced oxidative damage and disruption of gut microbiota composition and function. The residue issues of avermectin in aquaculture should be highly concerned to ensure the safety and quality of aquatic products.

       

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