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Multiple anthropogenic stressors cause ecological surprises in boreal lakes

机译:多种人为压力源在北方湖泊中引起生态意外

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摘要

The number of combinations of anthropogenic stressors affecting global change is increasing; however, few studies have empirically tested for their interactive effects on ecosystems. Most importantly, interactions among ecological stressors generate nonadditive effects that cannot be easily predicted based on single-stressor studies. Here, we corroborate findings from an in situ mesocosm experiment with evidence from a whole-ecosystem manipulation to demonstrate for the first time that interactions between climate and acidification determine their cumulative impact on the food-web structure of coldwater lakes. Interactions among warming, drought, and acidification, rather than the sum of their individual effects, best explained significant changes in planktonic consumer and producer biomass over a 23-year period. Further, these stressors interactively exerted significant synergistic and antagonistic effects on consumers and producers, respectively. The observed prevalence of long- and short-term ecological surprises involving the cumulative impacts of multiple anthropogenic stressors highlights the high degree of uncertainty surrounding current forecasts of the consequences of global change.
机译:影响全球变化的人为压力源组合的数量正在增加;然而,很少有研究对它们对生态系统的互动影响进行实证测试。最重要的是,生态压力源之间的相互作用会产生非加性效应,而基于单压力源研究很难预测这些非加性效应。在这里,我们证实了原位介观实验的结果以及整个生态系统操作的证据,这首次证明了气候和酸化之间的相互作用决定了它们对冷水湖泊食物网结构的累积影响。变暖,干旱和酸化之间的相互作用,而不是其各自影响的总和,最能解释23年期间浮游性消费者和生产者生物量的重大变化。此外,这些压力源以交互方式分别对消费者和生产者产生了显着的协同作用和拮抗作用。观察到的长期和短期生态突变的流行,涉及多个人为压力源的累积影响,突显了当前对全球变化后果的预测存在高度不确定性。

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