Department of Wildlife, Fish, and Conservation Biology, University of California, Davis, Davis, CA, United States.
Zoophysiology, Department of Bioscience, Aarhus University, 8000 Aarhus-C, Denmark.
Comp Biochem Physiol A Mol Integr Physiol. 2019 Jun;232:34-39. doi: 10.1016/j.cbpa.2019.02.026. Epub 2019 Mar 12.
Acidic freshwater habitats disrupt ion-homeostasis in fishes, yet the often acidic waters of the Mekong host the second highest diversity of freshwater fish in the world. To investigate how five Mekong fish species tolerate water acidity, we measured: time to loss of equilibrium (LOE) at sustained (4 days) low pH (3.5) and net ion flux in acute low pH (3.5 and 3) in Chitala ornata, Pangasianodon hypophthalmus, Osphronemus goramy, Trichogaster pectoralis, and Monopterus albus. Our sustained low pH exposures revealed that C. ornata was least tolerant, P. hypophthalmus and M. albus were moderately tolerant, and O. goramy and T. pectoralis were highly tolerant to low pH. In general, net ion loss in acute low pH exposures was greatest in species with the shortest time to LOE in the sustained low pH exposure. We also explored how low water [Ca] (relative to current Mekong levels) affected ion flux at low water pH in the least tolerant C. ornata and highly tolerant T. pectoralis. In C. ornata, low water Ca (56 ± 1 μmol L) increased net ion loss relative to high Ca (342 ± 3 μmol L) water while no effect was observed in T. pectoralis. Finally, we find that T. pectoralis is among the most acid-tolerant fish species examined to date.
淡水酸性环境会破坏鱼类的离子稳态平衡,然而湄公河的水体往往呈酸性,却是世界上拥有第二高淡水鱼类多样性的水域。为了研究 5 种湄公河流域鱼类如何耐受酸性水域,我们测量了它们在持续低 pH 值(4 天,3.5)和急性低 pH 值(3.5 和 3)下的失衡时间(LOE)和净离子通量:Chitala ornata、Pangasianodon hypophthalmus、Osphronemus goramy、Trichogaster pectoralis 和 Monopterus albus。我们的持续低 pH 值暴露实验表明,C. ornata 的耐受性最差,P. hypophthalmus 和 M. albus 耐受性中等,O. goramy 和 T. pectoralis 对低 pH 值的耐受性较高。一般来说,在持续低 pH 值暴露中 LOE 时间最短的物种,在急性低 pH 值暴露中的净离子损失最大。我们还探讨了在最不耐受的 C. ornata 和最耐受的 T. pectoralis 中,低水[Ca](相对于当前湄公河水平)如何影响低水 pH 值下的离子通量。在 C. ornata 中,低水 Ca(56±1μmol/L)相对于高水 Ca(342±3μmol/L)增加了净离子损失,而在 T. pectoralis 中则没有观察到这种影响。最后,我们发现 T. pectoralis 是迄今为止研究过的最耐酸的鱼类之一。