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Projected changes in Brook Trout and Brown Trout distribution in Wisconsin streams in the mid-twenty-first century in response to climate change

机译:二十一世纪中叶威斯康星州溪流溪流鳟鱼和棕色鳟鱼分布的预计变化,以应对气候变化

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摘要

Climate warming is a threat to the survival of fishes adapted to cold water. Brook Trout Salvelinus fontinalis and Brown Trout Salmo trutta are two cold-water species occurring in streams in Wisconsin, where climate change may make these species particularly vulnerable. Vulnerable trout populations need to be identified to aid in the development of adaptation strategies. We used web-based stream temperature and fish-distribution models in FishVis to predict current (late twentieth century) and project future (mid-twenty-first century) distributions of Brook Trout and Brown Trout. The models predict the suitability of habitat for trout in individual reaches using environmental variables in a geographic information system, including adjacent and upstream channel characteristics, surficial geology, landcover, and climate. Future projections of air temperature and precipitation were obtained from 13 general circulation models downscaled for Wisconsin. Currently, 34,251 km of streams are suitable for Brook Trout and 20,011 km for Brown Trout. The models project a decline of 68% (10,995 km) in stream habitat for Brook Trout and a decline of 32% (13,668 km) for Brown Trout. These projected declines, while substantial, were lower than earlier estimates because our models account for projected increased precipitation that may enhance groundwater inputs and partially offset higher air temperatures.
机译:气候变暖是对适应冷水的鱼类生存的威胁。 Brook Trout Salvelinus Fontinalis和Brown Trout Salmo Trutta是威斯康星州溪流发生的两种冷水物种,气候变化可能会使这些物种特别脆弱。需要确定脆弱的鳟鱼群体以帮助制定适应策略。我们使用Fishvis的基于Web的流温度和鱼类分配模型来预测溪流鳟鱼和棕色鳟鱼的当前(二十世纪晚期)和项目未来(二十一世纪中旬)。该模型预测人栖息地在地理信息系统中使用环境变量的个人鳟鱼的适用性,包括相邻和上游通道特征,表地地质,陆地层和气候。从威斯康星素销售的13个一般循环模型获得了空气温度和降水的未来预测。目前,34,251公里的溪流适合布鲁克鳟鱼,为棕色鳟鱼20,011公里。该型号在溪流栖息地下降68%(10,995公里),为Brook Trout且衰落为32%(13,668 km),适用于棕色鳟鱼。这些预计的下降虽然实质性低于前面的估计,因为我们的模型占预计增加的降水量,可以增强地下水输入并部分地抵消较高的空气温度。

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