首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Coldwater fish oxythermal habitat in Minnesota lakes: influence of total phosphorus, July air temperature, and relative depth
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Coldwater fish oxythermal habitat in Minnesota lakes: influence of total phosphorus, July air temperature, and relative depth

机译:明尼苏达州湖泊的冷水鱼类氧热栖息地:总磷,7月气温和相对深度的影响

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摘要

An empirical model was developed that describes the influence of lake productivity, climate, and morphometry on coldwater fish oxythermal habitat. An oxythermal habitat variable called temperature at 3 mg.L-1 of dissolved oxygen (T-DO3) was developed by interpolating the water temperature at a benchmark oxygen concentration (3 mg.L-1) from a temperature-oxygen profile. Coldwater habitat was most available in the least productive lakes (total P < 25 mu g.L-1) with the greatest relative depths (geometry ratios < 2 m(-0.5)) and where mean July air temperatures were less than 17 degrees C. Species response curves were developed from values of T-DO3 measured during the greatest period of oxythermal stress in late summer (maxT(DO3)). Lake trout was present in lakes with the lowest values of maxT(DO3), while cisco was present in lakes with the highest and broadest range of maxT(DO3). Projections for a scenario where climate warming (+4 degrees C in mean July air temperature) was accompanied by eutrophication (doubling of total P) indicated that coldwater fish oxythermal habitat would be devastated in a subset of lakes typical for Minnesota. Protecting deep, unproductive lakes from eutrophication will be a necessary management strategy to ensure that coldwater fish persist in at least some Minnesota lakes after climate warming.
机译:建立了一个经验模型,该模型描述了湖泊生产力,气候和形态对冷水鱼氧热生境的影响。通过根据温度-氧气曲线内插基准水氧浓度(3 mg.L-1)的水温,开发出一种氧热生境变量,称为温度为3 mg.L-1溶解氧(T-DO3)。冷水栖息地在生产力最差的湖泊(总P <25μgL-1)中具有最多的相对深度(几何比<2 m(-0.5)),并且七月平均气温低于17摄氏度。响应曲线是根据夏末氧热应力最大时期(maxT(DO3))测得的T-DO3值绘制的。鳟鱼存在于maxT(DO3)值最低的湖泊中,而思科舞存在于maxT(DO3)范围最大和最广的湖泊中。对于气候变暖(7月平均气温为+4摄氏度)伴有富营养化(总磷增加一倍)的情景的预测表明,冷水鱼的氧热生境将在明尼苏达州典型的一部分湖泊中遭到破坏。保护深水,无生产力的湖泊免于富营养化将是一项必要的管理策略,以确保气候变暖后至少在明尼苏达州的某些湖泊中仍存在冷水鱼。

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