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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Impacts of episodic acidification on in-stream survival and physiological impairment of Atlantic salmon (Salmo salar) smolts
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Impacts of episodic acidification on in-stream survival and physiological impairment of Atlantic salmon (Salmo salar) smolts

机译:间歇性酸化对大西洋鲑(Salmo salar)软体动物河内生存和生理损伤的影响

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摘要

We conducted field Studies to determine the levels of acid and aluminum (Al) that affect survival, smolt development, ion homeostasis, and stress in Atlantic salmon (Salmo salar) smolts in restoration streams of the Connecticut River in southern Vermont. USA. Fish were held in cages in five streams encompassing a wide range of acid and At levels for two 6-day intervals during the peak of smolt development in late April and early May. Physiological parameters were unchanged from initial sampling at the hatchery and the high water quality reference site (pH > 7.0, inorganic At < 12 mu g.L-1). Mortality, substantial loss of plasma chloride, and gill Na+/K+-ATPase activity, and elevated gill At Occurred at sites with the lowest pH (5.4-5.6) and highest inorganic Al (50-80 mu g.L-1). Moderate loss of plasma chloride, increased plasma cortisol and glucose, and moderately elevated gill Al occurred at less severely impacted sites. Gill Al was a better predictor of integrated physiological impacts than water chemistry alone. The results indicate that At and low pH under field conditions in some New England streams can cause mortality and impair smolt development in juvenile Atlantic salmon and provide direct evidence that episodic acidification is impacting conservation and recovery of Atlantic salmon in the northeastern USA.
机译:我们进行了现场研究,以确定影响生存,鲑鱼发育,离子体内稳态和佛蒙特州南部康涅狄格河恢复流中大西洋鲑(Salmo salar)鲑鱼应激的酸和铝(Al)的水平。美国。在四月下旬和五月初的mol鱼发展高峰期间,将鱼以五种溪流关在网箱中,其中含有多种酸和六价硫。在孵化场和高水质参考地点(pH> 7.0,无机浓度<12μg.L-1),从初始采样开始,生理参数没有变化。在最低pH(5.4-5.6)和最高无机Al(50-80μgL-1)的位置处发生死亡率,血浆氯化物的大量损失和g Na + / K + -ATPase活性以及At的升高。血浆氯化物的中度损失,血浆皮质醇和葡萄糖的增加以及受影响较轻的部位的ill铝适度升高。与单独的水化学相比,Gill Al是更好的综合生理影响预测指标。结果表明,田野条件下的低pH和低pH值可能导致大西洋大西洋鲑幼鱼死亡并损害其软体动物的发展,并提供了循序酸化作用正在影响美国东北大西洋鲑的保存和恢复的直接证据。

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