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中国西南部金沙江一条源头支流低水头水坝拆除及新安装鱼道后的鱼类群落动态

Fish community dynamics following the low-head dam removal and newly installed fish passage in a headstream tributary of Jinsha River, Southwest China.

作者信息

Tan Junjun, Sun Junjian, Wang Yuanyang, Tian Huiwu, Cheng Bixin, Qing Jie, Yan Xin, Sun Gan, Ke Senfan, Kattel Giri Raj, Shi Xiaotao

机构信息

Hubei International Science and Technology Cooperation Base of Fish Passage, China Three Gorges University, Yichang 443002, China; College of Hydraulic and Environmental Engineering, China Three Gorges University, Yichang 443002, China.

Yangtze River Fisheries Research Institute, Chinese Academy of Fishery Science, Wuhan 430223, China.

出版信息

Sci Total Environ. 2024 Dec 1;954:176774. doi: 10.1016/j.scitotenv.2024.176774. Epub 2024 Oct 10.

Abstract

Low-head dams and small hydropower developments are widely distributed in global rivers because of their high cost-efficiency and smooth implementation. However, these installations have great ecological impacts on native fish communities due to the loss of longitudinal river connectivity. Although dam removal and fishway construction are effective measures to mitigate river fragmentation, research on their effects on fish communities remains limited to date. In this study, we investigated fish community dynamics in a mountainous tributary of the Jinsha River-Heishui River following dam removal, fishway construction, and fishway renovation. Our fish sampling data from 2018 to 2023 yielded 6137 fish belonging to 25 species, 12 families, and 3 orders. The native fish community predominantly represented the typical fish fauna of the Qinghai-Tibetan Plateau, primarily including the genus Schizothorax and the families Sisoridae and Nemacheilidae. Representative fish species in the Heishui River demonstrate notable adaptations to cold water, high altitude, and rapid flow environments. After removing the Laomuhe Dam, upstream fish abundance increased sharply, but species richness slightly decreased in the short term. Fishway construction significantly enhanced species richness and abundance and reduced the difference between the upstream and downstream fish communities from the Songxin Dam. However, the subsequent fishway renovation altered the dominance of fish species, with marginal changes in community structure and abundance. Variations in fish community dynamics in the river channel and fishway structure can be attributed to differences in ecological guilds (e.g., flow preference and thermal regime) and environmental factors (e.g., flow discharge, water temperature, and water depth). The present study provides insight into the significance of mitigation measures for the impact of dams on mountainous rivers in southwest China through ecological assessment and guides for decision-making in the conservation and restoration of specific fish communities.

摘要

低水头水坝和小型水电开发项目因其高成本效益和实施顺利而广泛分布于全球河流中。然而,由于河流纵向连通性的丧失,这些设施对本地鱼类群落具有重大生态影响。尽管拆除水坝和修建鱼道是减轻河流破碎化的有效措施,但迄今为止,关于它们对鱼类群落影响的研究仍然有限。在本研究中,我们调查了金沙江-黑水河一条山区支流在拆除水坝、修建鱼道和鱼道改造后的鱼类群落动态。我们从2018年至2023年的鱼类采样数据共获得6137条鱼,分属3目12科25种。本地鱼类群落主要代表了青藏高原的典型鱼类区系,主要包括裂腹鱼属以及鮡科和条鳅科。黑水河中的代表性鱼类物种对冷水、高海拔和急流环境表现出显著的适应性。拆除老木河大坝后,上游鱼类数量急剧增加,但短期内物种丰富度略有下降。修建鱼道显著提高了物种丰富度和数量,并缩小了松新大坝上下游鱼类群落之间的差异。然而,随后的鱼道改造改变了鱼类物种的优势地位,群落结构和数量变化不大。河道和鱼道结构中鱼类群落动态的变化可归因于生态类群(如水流偏好和热状况)和环境因素(如流量、水温、水深)的差异。本研究通过生态评估,深入了解了缓解措施对中国西南山区河流大坝影响的重要性,并为特定鱼类群落的保护和恢复决策提供了指导。

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