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Potential effects of dam cascade on fish: lessons from the Yangtze River

机译:大坝对鱼类的潜在影响:长江的教训

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Construction of hydroelectric dams affect river ecosystems, fish diversity, and fisheries yields. However, there are no studies assessing the combined effects on fish caused by several adjacent dams and their reservoirs, as in a 'dam cascade'. This study predicts the potential effects that a cascade of ten dams currently under construction in the upper Yangtze River in China will have on local fishes, and uses such predictions to assess the effectiveness of possible fish conservation measures. We found that the dam cascade will have serious combined effects on fishes mainly due to impoundment, habitat fragmentation and blocking, flow regime modification, and hypolimnetic discharges. The impoundments will cause loss of critical habitats for 46 endemic species. The dams will fragment the populations of 134 species and will block migration routes for 35 potamodromous fishes. Corieus guichenoti will have a high risk of extinction due to the combined effects of impoundment and blocking. Modification of the flow regime will adversely affect the recruitment of 26 species that produce drifting eggs. The start of annual spawning for 13 fishes will be postponed by more than 1 month, and fish spawning and growth opportunities will be reduced due to low water temperatures associated with hypolimnetic discharges. Combined dam effects will further reduce the likelihood of successful recruitment of some endangered species, such as Acipenser dabryanus and Psephurus gladius. Three countermeasures hold promise to mitigate the near-term effects of the dam cascade, including preservation and rehabilitation of critical habitat, restoration of a semi-natural flow regime, and stock enhancement that respects genetic integrity. These conclusions can guide the development of protection plans for fishes in the upper Yangtze River. The approach undertaken in this study-by which the known and likely effects of present and future dams were simultaneously considered in light of the biology of the species-highlights the usefulness of ichthyology for fish conservation.
机译:水电大坝的建设影响河流生态系统,鱼类多样性和渔业产量。但是,没有像“大坝级联”那样评估几个相邻水坝及其水库对鱼类的综合影响的研究。这项研究预测了目前在中国长江上游正在兴建的十座大坝对当地鱼类的潜在影响,并使用这种预测来评估可能采取的鱼类保护措施的有效性。我们发现,大坝级联将对鱼类产生严重的综合影响,这主要是由于蓄水,生境破碎和阻塞,水流变化和低速排放。这些水库将导致46种特有物种的关键栖息地丧失。这些水坝将使134种物种分裂,并阻止35种河鳟的迁移路线。由于蓄水和阻塞的共同作用,吉里埃斯ie鼠(Corieus guichenoti)灭绝的风险很高。流动方式的改变将不利地影响26种产生漂流卵的物种的募集。每年有13条鱼的产卵开始时间会推迟1个月以上,并且由于水温过低而与低通量排放有关,鱼的产卵和生长机会将减少。大坝的综合作用将进一步减少成功招募某些濒危物种的可能性,例如Acipenser dabryanus和Psephurus gladius。三种对策有望减轻水坝梯级的近期影响,包括重要栖息地的保护和恢复,半自然流态的恢复以及尊重遗传完整性的种群增加。这些结论可以指导长江上游鱼类保护计划的制定。在这项研究中采取的方法-根据物种的生物学性同时考虑了当前和未来大坝的已知和可能的影响-突出了鱼类学对鱼类保护的有用性。

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