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首页> 外文期刊>Global change biology >Circumpolar dynamics of a marine top-predator track ocean warming rates
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Circumpolar dynamics of a marine top-predator track ocean warming rates

机译:海上捕食者轨道海洋温暖率的Circumpolar动态

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Global warming is a nonlinear process, and temperature may increase in a stepwise manner. Periods of abrupt warming can trigger persistent changes in the state of ecosystems, also called regime shifts. The responses of organisms to abrupt warming and associated regime shifts can be unlike responses to periods of slow or moderate change. Understanding of nonlinearity in the biological responses to climate warming is needed to assess the consequences of ongoing climate change. Here, we demonstrate that the population dynamics of a long-lived, wide-ranging marine predator are associated with changes in the rate of ocean warming. Data from 556 colonies of black-legged kittiwakes Rissa tridactyla distributed throughout its breeding range revealed that an abrupt warming of sea-surface temperature in the 1990s coincided with steep kittiwake population decline. Periods of moderate warming in sea temperatures did not seem to affect kittiwake dynamics. The rapid warming observed in the 1990s may have driven large-scale, circumpolar marine ecosystem shifts that strongly affected kittiwakes through bottom-up effects. Our study sheds light on the nonlinear response of a circumpolar seabird to large-scale changes in oceanographic conditions and indicates that marine top predators may be more sensitive to the rate of ocean warming rather than to warming itself.
机译:全球变暖是非线性过程,温度可能以逐步的方式增加。突然变暖的时期可以引发生态系统状态的持续变化,也称为政权班次。生物体对突然变暖和相关政权变化的反应可能与对缓慢或中等变化的时期的反应不同。需要了解对气候变暖的生物反应中的非线性,以评估正在进行的气候变化的后果。在这里,我们证明了长期存在的宽阔范围的海洋捕食者的人口动态与海洋变暖速度的变化有关。在其繁殖范围内分布的黑腿Kittiwakes Rissa Tridactyla的556个殖民地的数据显示,20世纪90年代海面温度的突然变暖恰逢陡峭的Kittiwake人口下降。海水温度温暖的时期似乎似乎没有影响基蒂娃娃动态。在20世纪90年代观察到的快速变暖可能已经驱动大规模,循环海洋生态系统转变,通过自下而上效应强烈影响基奇。我们的研究揭示了Circumpolar Seabird的非线性响应,在海洋学条件下进行了大规模变化,并表明海上捕食者对海洋变暖的速度更敏感而不是加热自身。

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