Zhu Lekui, Li Wenchao, Chen Dong, Gao Yiheng, Han Rui
Key Laboratory of Water Cycle and Related Land Surface Processes, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China.
College of Resources and Environment, University of Chinese Academy of Sciences, Beijing 100049, China.
Animals (Basel). 2025 Aug 25;15(17):2488. doi: 10.3390/ani15172488.
Understanding the impoundment effects of cascade reservoirs on fish reproduction is essential for the conservation and management of river ecosystems. Using the lower Jinsha River as an eco-hydraulic reference, this study conducted laboratory experiments to investigate how hydrodynamic-microtopography interactions influence the near-bed transport of drifting fish eggs and how sediment deposition affects the hatching success of adhesive demersal eggs. A predictive formula for near-bed egg drift was established, and a novel threshold for near-bed drift was proposed. In a separate set of experiments, sediment deposition was found to significantly reduce the hatching success of adhesive demersal eggs-specifically and -primarily by decreasing dissolved oxygen levels ( < 0.05). These findings provide a scientific basis for improving reservoir operation strategies and mitigating the ecological impacts of sedimentation on fish reproduction in impounded rivers.
了解梯级水库蓄水对鱼类繁殖的影响对于河流生态系统的保护和管理至关重要。本研究以金沙江下游作为生态水力学参考,开展实验室实验,探究水动力与微地形相互作用如何影响漂流鱼卵的近底输移,以及泥沙淤积如何影响黏性沉性卵的孵化成功率。建立了近底鱼卵漂流的预测公式,并提出了近底漂流的新阈值。在另一组实验中,发现泥沙淤积显著降低了黏性沉性卵的孵化成功率,具体而言,主要是通过降低溶解氧水平(<0.05)。这些研究结果为改进水库运行策略和减轻淤积对蓄水河流鱼类繁殖的生态影响提供了科学依据。