Papanin Institute for Biology of Inland Waters Russian Academy of Sciences, 152742, Russia, Borok, IBIW RAS, 109.
Papanin Institute for Biology of Inland Waters Russian Academy of Sciences, 152742, Russia, Borok, IBIW RAS, 109.
Pestic Biochem Physiol. 2024 Sep;204:106036. doi: 10.1016/j.pestbp.2024.106036. Epub 2024 Jul 20.
Herbicide exposure can pose a considerable threat to non-target aquatic animals. We aimed to study changes in the liver proteome of a model cyprinid fish species, zebrafish Danio rerio, to provide a molecular basis for the adverse effects of environmentally relevant concentrations of glyphosate (100 μg/L), its breakdown product aminomethylphosphonic acid (AMPA; 100 μg/L), and a mixture of both (50 + 50 μg/L) in the presence of humic acid (20 mg/L), which simulated a component of natural organic matter in the aquatic environment. Proteomic analysis was performed by means of high-performance liquid chromatography-tandem mass spectrometry employing a label-free quantification approach. The results present molecular evidence of the stress responses and disturbance of primary metabolic processes such as immune response, dysregulation in DNA repair, necroptosis and apoptosis signaling pathways, oxidative phosphorylation, cholesterol, lipoprotein, and carbohydrate metabolism. We registered the synergistic effect of the glyphosate and AMPA co-exposure, which was expressed in a substantial increase in the number of dysregulated proteins compared to the solo treatments. Humic acid alleviated the effects of glyphosate and its mixture with AMPA and aggravated the impact of AMPA exposure. RuvB-like 2, a protein taking part in DNA repair, and EIF2S1, involved in the regulation of stress-induced gene expression, were downregulated in the liver of zebrafish from all treatments.
除草剂暴露会对非靶标水生动物构成相当大的威胁。我们旨在研究模型鲤科鱼类斑马鱼 Danio rerio 的肝蛋白质组的变化,为环境相关浓度的草甘膦(100μg/L)、其分解产物氨甲基膦酸(AMPA;100μg/L)以及两者混合物(50+50μg/L)在腐殖酸(20mg/L)存在下的不利影响提供分子基础,腐殖酸模拟了水生环境中天然有机质的一个组成部分。采用无标记定量方法的高效液相色谱-串联质谱法进行蛋白质组学分析。结果提供了分子证据,证明了应激反应和初级代谢过程的紊乱,如免疫反应、DNA 修复失调、坏死性凋亡和细胞凋亡信号通路、氧化磷酸化、胆固醇、脂蛋白和碳水化合物代谢。我们记录了草甘膦和 AMPA 共同暴露的协同效应,与单独处理相比,这种协同效应表现为失调蛋白数量的大量增加。腐殖酸减轻了草甘膦及其与 AMPA 的混合物的影响,并加重了 AMPA 暴露的影响。参与 DNA 修复的 RuvB-like 2 蛋白和参与应激诱导基因表达调控的 EIF2S1 蛋白在所有处理的斑马鱼肝中均下调。