Laboratory of Biochemistry and Environmental Toxicology, ISA, Chott-Mariem, Sousse, Tunisia.
Department of Biology and CESAM, University of Aveiro, Campus Universitário de Santiago, 3810-193, Aveiro, Portugal.
Environ Sci Pollut Res Int. 2020 Feb;27(4):3686-3696. doi: 10.1007/s11356-019-04488-5. Epub 2019 Feb 18.
Assessment of pesticides toxicity using zebrafish early life stages is relevant for aquatic systems safety. This study aimed to evaluate the short-term effects of 2,4-dichlorophenoxyacetic acid (2,4-D) on zebrafish (Danio rerio) embryos from 3 h post fertilization to 96 hpf. A set of 2,4-D concentrations ranging from 0.32 to 80 mg/L were tested and median lethal concentration (LC) at 96-h was calculated as 2.86 mg/L. A sub-teratogenic concentrations range from 0.02 to 0.8 mg/L was then used to assess effects at ontogenic, biochemical, and behavioral levels. The main developmental defects were tail deformities and pericardial edema at concentrations equal or above 0.32 mg/L. Cholinesterase activity (at 96 hpf) and larvae swimming behavior (at 120 hpf) were affected even at the lowest tested dose (0.02 mg/L). The behavior analysis was a sensitive endpoint, with a decrease in the swimming distance of exposed larvae during light period. The effect of 2,4-D in ChE was translated by an inhibition of the enzyme activity in all treated groups. These findings demonstrate that 2,4-D can alter the cholinergic system by affecting ChE activity which may be involved in the locomotion reduction of exposed larvae and emphasize the potential of neurotransmission and behavioral endpoints as early warning signs of herbicides contamination in aquatic ecosystems.
使用斑马鱼早期生活阶段评估农药毒性与水生系统安全相关。本研究旨在评估 2,4-二氯苯氧基乙酸(2,4-D)对从受精后 3 小时到 96 小时的斑马鱼(Danio rerio)胚胎的短期影响。测试了一系列 2,4-D 浓度范围从 0.32 到 80 毫克/升,计算出 96 小时的中位致死浓度(LC)为 2.86 毫克/升。然后使用亚致畸浓度范围从 0.02 到 0.8 毫克/升来评估在个体发生、生化和行为水平上的影响。主要的发育缺陷是尾巴畸形和心包水肿,浓度等于或高于 0.32 毫克/升。在 96 小时时,乙酰胆碱酯酶活性(hpf)和幼虫游泳行为(在 120 hpf)受到影响,甚至在测试的最低剂量(0.02 毫克/升)下也是如此。行为分析是一个敏感的终点,在暴露的幼虫在光周期中游泳距离减少。2,4-D 在 ChE 中的作用通过抑制所有处理组中的酶活性来转化。这些发现表明,2,4-D 可以通过影响 ChE 活性来改变胆碱能系统,这可能与暴露幼虫运动减少有关,并强调神经传递和行为终点作为水生生态系统中除草剂污染的早期预警信号的潜力。