Shartau Ryan B, Shu Jacelyn, Baker Daniel W
Department of Biology, The University of Texas at Tyler, 3900 University Blvd., Tyler, TX, USA, 75799.
Department of Zoology, University of British Columbia, 4200 - 6270 University Blvd., Vancouver, British Columbia, Canada V6T 1Z4.
Conserv Physiol. 2023 Mar 17;11(1):coad009. doi: 10.1093/conphys/coad009. eCollection 2023.
White sturgeon () in the Lower Fraser River are the focus of a catch-and-release angling fishery in British Columbia, Canada. However, the lower region of the catch area includes areas where tidal waters invade, and the consequence of salinity levels on recovery from an angling challenge are not characterized in sturgeon, despite theoretical implications of its import. We acclimated white sturgeon to various salinities (0, 10 and 20‰ (parts per thousand)) to investigate the effects of acclimation on recovery from stimulated angling stress that was induced through manual chasing. This challenge elicited the traditional physiological responses such as ion homeostasis disturbance, increases in secondary stress indicators and metabolic acidosis; however, environmental salinity altered the timing of recovery in some of the parameters measured. In addition, the severity of the intracellular pH disturbance in both heart and red blood cell seemed to be mediated in fresh water, yet the recovery pattern of plasma chloride and bicarbonate ions seemed to be facilitated by higher salinity. In general, responses were similar but not identical, leading us to conclude that the role of salinity on recovery from exercise is complex but not insignificant. Salinity may be important to behaviours exhibited by white sturgeon (such as migrations) in their respective saline environments, but less so around the impact of an angling stressor. Further exploration of this response may provide insight on whether the current tidal boundaries for angling white sturgeon are appropriate.
加拿大不列颠哥伦比亚省弗雷泽河下游的白鲟是一种休闲钓渔业的重点捕捞对象,实行钓后放生。然而,捕捞区域的下游包括受潮水侵袭的区域,尽管盐度水平对鲟鱼应对垂钓挑战后恢复的影响具有理论意义,但目前尚无相关研究。我们将白鲟驯化至不同盐度(0、10和20‰(千分比)),以研究驯化对其在人工追逐诱导的模拟垂钓应激后恢复情况的影响。这种应激引发了传统的生理反应,如离子稳态紊乱、次要应激指标升高和代谢性酸中毒;然而,环境盐度改变了部分测量参数的恢复时间。此外,心脏和红细胞内pH值紊乱的严重程度在淡水中似乎受到调节,而血浆氯化物和碳酸氢根离子的恢复模式在较高盐度下似乎更易实现。总体而言,反应相似但不完全相同,这使我们得出结论,盐度对运动恢复的作用复杂但并非微不足道。盐度可能对白鲟在其各自盐环境中的行为(如洄游)很重要,但对垂钓应激源影响的作用较小。进一步探究这种反应可能有助于了解目前白鲟垂钓的潮汐边界是否合适。