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Temporary Increase in Sea Salt Deposition Accelerates Recovery of Brown Trout (Salmo Trutta) Populations in Very Dilute and Acidified Mountain Lakes

机译:海盐沉积的暂时增加促进了在非常稀和酸化的高山湖泊中褐鳟(Salmo Trutta)种群的恢复

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We studied the recovery of brown trout populations from 1970 to 2010 in acidified mountain lakes with low ionic content in southwestern Norway. A total of 181 test fishing surveys with gill net series were performed in 59 lakes. We found that the most significant recovery occurred during the 1980s and early 1990s. In this period, only limited improvement in the water chemistry related to acidification, i.e., pH, was observed. However, due to a temporary increase in sea salt deposition, water conductivity almost doubled during this period. In many of the mountain lakes in the study area, the brown trout populations are restricted by ion deficit. Moreover, greater ionic strength ameliorates the effects of acidification by increasing the tolerance to H+. Well-established relationships between conductivity and the relative abundance of brown trout (CPUE) explain the observed recovery. We conclude that the dynamics of the sea salt ion contribution should be taken into consideration wherever biological recovery in very diluted water qualities is being evaluated.
机译:我们研究了1970年至2010年挪威西南部离子含量低的酸化高山湖泊中褐鳟种群的恢复情况。在59个湖泊中总共进行了181次带有刺网系列的垂钓试验。我们发现,最显着的恢复发生在1980年代和1990年代初期。在此期间,仅观察到与酸化有关的水化学(即pH)的有限改善。但是,由于海盐沉积的暂时增加,在此期间水的电导率几乎翻了一番。在研究区域的许多高山湖泊中,褐鳟鱼种群受到离子缺乏的限制。此外,更高的离子强度通过增加对H +的耐受性来改善酸化的效果。电导率和褐鳟鱼相对丰度之间的公认关系(CPUE)解释了观察到的恢复。我们得出的结论是,无论何时评估极稀水质的生物回收率,都应考虑到海盐离子贡献的动力学。

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