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Impacts of climate warming and nitrogen deposition on alpine plankton in lake and pond habitats: an in vitro experiment

机译:气候变暖和氮沉降对湖泊和池塘生境中高山浮游生物的影响:一项体外实验

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The combined effects of multiple ecological stressors determine the net impact of global change on environmentally sensitive alpine and polar environments. For example, climate warming and nitrogen deposition both increasingly affect ecosystems at high elevations. We hypothesized that the net impact of warming and nitrogen on alpine plankton differs between consumers and producers because of the greater environmental sensitivity of higher trophic levels. Also, we expected that habitat conditions would mediate the responses of plankton to these two stressors as sediments function as ecological buffers against environmental change. These hypotheses were tested in a growth chamber by applying temperature (8 vs. 15 degrees C) and nitrogen (200 vs. 1000 mu g N L-1) treatments to a planktonic alpine community in the presence and absence of sediments obtained from Pipit Lake, Banff National Park, Alberta. A significant nitrogen-temperature interaction affected phytoplankton abundance because the positive effect of fertilization depended on warming. Warming also amplified the effect of nitrogen on herbivores while suppressing the fecundity of omnivores. The presence of sediments suppressed the positive effect of warming on herbivores, but stimulated omnivores. The observed prevalence of non-additive effects highlights the strong potential for global change causing future ecological surprises in alpine environments.
机译:多种生态压力源的综合作用决定了全球变化对环境敏感的高山和极地环境的净影响。例如,气候变暖和氮沉降都越来越多地影响高海拔地区的生态系统。我们假设变暖和氮对高山浮游生物的净影响在消费者和生产者之间是不同的,因为较高的营养水平对环境的敏感性更高。此外,我们期望栖息地条件将介导浮游生物对这两种压力的响应,因为沉积物起着抵御环境变化的生态缓冲作用。通过在存在和不存在从皮皮特湖获得的沉积物的情况下,对浮游性高山群落进行温度(8 vs. 15摄氏度)和氮气(200 vs. 1000μgN L-1)氮处理(在生长室中)来检验这些假设。 ,艾伯塔省班夫国家公园。氮与氮的显着相互作用影响了浮游植物的丰度,因为施肥的积极作用取决于变暖。变暖还放大了氮对草食动物的作用,同时抑制杂食动物的繁殖力。沉积物的存在抑制了变暖对食草动物的积极影响,但刺激了杂食动物。观察到的非加性效应的普遍性凸显了全球变化的强大潜力,这会在高山环境中引起未来的生态意外。

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