Department of Hydrobiology and Protection of Ecosystems, Faculty of Environmental Biology, University of Life Sciences in Lublin, Dobrzańskiego 37, 20-262, Lublin, Poland.
Department of Hydrobiology and Protection of Ecosystems, Faculty of Environmental Biology, University of Life Sciences in Lublin, Dobrzańskiego 37, 20-262, Lublin, Poland.
Toxicon. 2021 Jul 30;198:1-11. doi: 10.1016/j.toxicon.2021.04.023. Epub 2021 Apr 26.
Comparison of the toxic effects caused by the pure cyanobacterial cyclic hexapeptide anabaenopeptin-B (AN-B), the heptapeptides: microcystin-LR (MC-LR) and MC-LF as well as a binary mixture of AN-B with MC-LR on the swimming speed and hopping frequency - essential activities of Daphnia, was experimentally determined. Till now, no information on behavioral effects of AN-B and its mixture with microcystins, commonly produced by cyanobacteria, was available. Also MC-LF effect on aquatic crustaceans was determined for the first time. The results showed that AN-B exerted considerable inhibition of D. magna swimming speed and hopping frequency similar to MC-LR and MC-LF. The mixture of AN-B and MC-LR caused stronger toxic effects, than the individual oligopeptides used at the same concentration. The much lower 48 h- EC value of the AN-B and MC-LR mixture (0.95 ± 0.12 μg/mL) than those of individual oligopeptides AN-B (6.3 ± 0.63 μg/mL), MC-LR (4.0 ± 0.27 μg/mL), MC-LF (3.9 ± 0.20 μg/mL) that caused swimming speed inhibition explains the commonly observed stronger toxicity of complex crude cyanobacterial extracts to daphnids than individual microcystins. The obtained results indicated that AN-B, microcystins and their mixture exerted time- and concentration-dependent motility disturbances of crustaceans and they can be good candidates for evaluation of toxicity in early warning systems. Other cyanobacterial oligopeptides beyond microcystins should be considered as a real threat for aquatic organisms.
比较了纯蓝藻环六肽 anabaenopeptin-B(AN-B)、七肽:微囊藻-LR(MC-LR)和 MC-LF 以及 AN-B 与 MC-LR 的二元混合物对水蚤游泳速度和跳跃频率(水蚤的基本活动)的毒性作用,实验确定。到目前为止,还没有关于 AN-B 及其与蓝藻普遍产生的微囊藻混合后的行为效应的信息。同时,这也是首次确定 MC-LF 对水生甲壳类动物的影响。结果表明,AN-B 对大型溞的游泳速度和跳跃频率有相当大的抑制作用,类似于 MC-LR 和 MC-LF。AN-B 和 MC-LR 的混合物比单独使用相同浓度的寡肽产生更强的毒性作用。AN-B 和 MC-LR 混合物的 48 小时 EC 值(0.95±0.12μg/mL)远低于单独使用寡肽时的 EC 值,即 AN-B(6.3±0.63μg/mL)、MC-LR(4.0±0.27μg/mL)、MC-LF(3.9±0.20μg/mL),这解释了通常观察到的复杂粗蓝藻提取物对水蚤的毒性比单独的微囊藻更强的原因。研究结果表明,AN-B、微囊藻及其混合物对甲壳类动物的运动产生了时间和浓度依赖性的干扰,它们可以作为毒性预警系统中评估毒性的良好候选物。除微囊藻以外的其他蓝藻寡肽也应被视为水生生物的真正威胁。