Ji Qianfeng, Li Kefeng, Wang Yuanming, Liang Ruifeng, Feng Jingjie, Li Ran, Zhu David Z
State Key Laboratory of Hydraulics and Mountain River Engineering, Sichuan University, Yihuan Road, Chengdu 610065, China.
Department of Civil and Environmental Engineering, University of Alberta, Edmonton, Alberta, T6G 1H9, Canada.
Conserv Physiol. 2022 Jul 21;10(1):coac047. doi: 10.1093/conphys/coac047. eCollection 2022.
During flood discharges of upstream dams in the Yangtze River, the pelagic fish have a stress risk from total dissolved gas (TDG) supersaturation in the river water. This study took the silver carp as the object and systematically evaluated the effects of TDG supersaturation levels and exposure time on their critical swimming speed (Ucrit) at different temperatures. The external symptoms of gas bubble disease were found when TDG levels exceeded 130%. Both exposure time and TDG level did not significantly impact the Ucrit of fish under 6 days of non-lethal exposure (110%, 120%, 130% TDG) with lower or higher water temperature. Significant differences in Ucrit were found among different exposure times at 11.0 ± 1.0°C under 10 hours of lethal exposure (135%, 140%, 150% TDG) and the Ucrit reduced by 59.88%, 83.32%, and 92.40%, respectively. TDG level had a significant impact on the Ucrit at 21.0 ± 1.0°C when exposure time exceeded 8 hours. Ucrit at 21.0 ± 1.0°C water were significantly greater than those at 11.0 ± 1.0°C water where conditions had the same TDG supersaturation and exposure time. Differences in Ucrit between temperatures ranged from 3.24 to 6.12 BL/s under non-lethal exposure and from 6.38 to 13.88 BL/s under lethal exposure. The results of this study can provide a reference for fish conservation during flood discharge.
在长江上游大坝泄洪期间,洄游鱼类面临河水中总溶解气体(TDG)过饱和带来的应激风险。本研究以鲢鱼为对象,系统评估了TDG过饱和水平和暴露时间对其在不同温度下的临界游泳速度(Ucrit)的影响。当TDG水平超过130%时,发现了气泡病的外部症状。在较低或较高水温下,暴露时间和TDG水平在6天非致死暴露(110%、120%、130% TDG)期间对鱼类的Ucrit均无显著影响。在11.0±1.0°C下10小时致死暴露(135%、140%、150% TDG)期间,不同暴露时间的Ucrit存在显著差异,Ucrit分别降低了59.88%、83.32%和92.40%。当暴露时间超过8小时时,TDG水平对21.0±1.0°C下的Ucrit有显著影响。在TDG过饱和和暴露时间相同的条件下,21.0±1.0°C水温下的Ucrit显著高于11.0±1.0°C水温下的Ucrit。非致死暴露下不同温度间Ucrit的差异为3.24至6.12 BL/s,致死暴露下为6.38至13.88 BL/s。本研究结果可为泄洪期间鱼类保护提供参考。