University of New Brunswick, New Brunswick, Saint John, NB, Canada.
Centre Eau Terre Environnement de l'Institut National de la Recherche Scientifique, Québec, QC, Canada.
Aquat Toxicol. 2024 Oct;275:107066. doi: 10.1016/j.aquatox.2024.107066. Epub 2024 Aug 24.
Freshwater fish that are acutely exposed to copper (Cu) can experience disturbances of ion regulation and ammonia excretion. Temperature has been shown to affect Cu bioaccumulation and toxicity in fish, but the focus has largely been on warm temperature effects. Yet, acclimation of freshwater fish to near-freezing temperatures encountered during the winter of temperate regions can challenge fish condition and physiology, including ion regulation. Thus, temperate freshwater fish might be particularly sensitive to Cu in the winter. We investigated how winter cold affects acute Cu bioaccumulation and toxicity in juvenile brook char (Salvelinus fontinalis). Following gradual acclimation to cold temperature (-2 °C/week from 14 °C, then 4 weeks at 3 °C) vs. a warmer temperature around the species thermal optimum (14 °C for 9 weeks), and following a cold challenge (-3 °C/day from 14 °C, then 24 h at 3 °C) vs. a cold acclimation (-2 °C/week from 14 °C, then 13 weeks at 3 °C), we measured gill-Cu bioaccumulation, net fluxes of ammonia (NH), chloride (Cl) and net and unidirectional fluxes of sodium (Na) over a 30-h Cu exposure. Overall, winter cold did not appear to be challenging to brook char, as cold-acclimated fish had a higher fish condition and showed no sign of ion regulation impairment or increased Cu sensitivity. Contrary to our prediction, we found that Cu bioaccumulation over a 30-h Cu exposure was not significantly affected by acclimation temperature. Effects of temperature on Cu physiological effects were relatively limited (mainly on inhibition of Na influx and of NH excretion), with slightly greater effects observed in 14 °C-acclimated fish.
淡水鱼在急性暴露于铜(Cu)时,可能会经历离子调节和氨排泄紊乱。温度已被证明会影响鱼类的 Cu 生物积累和毒性,但主要集中在暖温效应上。然而,温带地区鱼类在冬季会适应接近冰点的温度,这可能会对鱼类的状况和生理机能造成挑战,包括离子调节。因此,温带淡水鱼可能对冬季的 Cu 特别敏感。我们研究了冬季寒冷如何影响幼年溪红点鲑(Salvelinus fontinalis)的急性 Cu 生物积累和毒性。在逐渐适应低温(从 14°C 以每周-2°C 的速度降温,然后在 3°C 下适应 4 周)与接近物种最适温度(14°C 下适应 9 周)相比,以及在寒冷挑战(从 14°C 以每天-3°C 的速度降温,然后在 3°C 下适应 24 小时)与寒冷适应(从 14°C 以每周-2°C 的速度降温,然后在 3°C 下适应 13 周)后,我们测量了鳃 Cu 生物积累、氨(NH)、氯(Cl)的净通量以及 Cu 暴露 30 小时后钠(Na)的净通量和单向通量。总体而言,冬季寒冷似乎对溪红点鲑没有挑战性,因为适应寒冷的鱼类具有更高的鱼类状况,并且没有表现出离子调节受损或对 Cu 敏感性增加的迹象。与我们的预测相反,我们发现 30 小时 Cu 暴露期间的 Cu 生物积累不受适应温度的显著影响。温度对 Cu 生理效应的影响相对有限(主要是对 Na 内流和 NH 排泄的抑制),在 14°C 适应的鱼类中观察到的影响略大。