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Persistent effects of a discrete warming event on a polar desert ecosystem

机译:离散变暖事件对极地沙漠生态系统的持续影响

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摘要

A discrete warming event (December 21, 2001-January 12, 2002) in the McMurdo Dry Valleys, Antarctica, enhanced glacier melt, stream flow, and melting of permafrost. Effects of this warming included a rapid rise in lake levels and widespread increases in soil water availability resulting from melting of subsurface ice. These increases in liquid water offset hydrologic responses to a cooling trend experienced over the previous decade and altered ecosystem properties in both aquatic and terrestrial ecosystems. Here, we present hydrological and meteorological data from the McMurdo Dry Valleys Long Term Ecological Research project to examine the influence of a discrete climate event (warming of >2 pC) on terrestrial environments and soil biotic communities. Increases in soil moisture following this event stimulated populations of a subordinate soil invertebrate species (Eudorylaimus antarcticus, Nematoda). The pulse of melt-water had significant influences on Taylor Valley ecosystems that persisted for several years, and illustrates that the importance of discrete climate events, long recognized in hot deserts, are also significant drivers of soil and aquatic ecosystems in polar deserts. Thus, predictions of Antarctic ecosystem responses to climate change which focus on linear temperature trends may miss the potentially significant influence of infrequent climate events on hydrology and linked ecological processes.
机译:南极麦克默多干旱谷的一次不连续变暖事件(2001年12月21日至2002年1月12日)加剧了冰川融化,溪流流动和永久冻土融化。这种变暖的影响包括湖泊水位的迅速上升和地下冰层融化导致土壤水可利用性的广泛增加。液态水的增加抵消了水文对过去十年冷却趋势的响应,并改变了水生和陆地生态系统的生态系统特性。在这里,我们提供了麦克默多干旱谷长期生态研究项目的水文和气象数据,以研究离散气候事件(升温> 2 pC)对陆地环境和土壤生物群落的影响。在此事件之后,土壤水分的增加刺激了下属土壤无脊椎动物物种(Eudorylaimus antarcticus,Nematoda)的种群。融水的脉动对持续了数年的泰勒河谷生态系统产生了重大影响,并表明长期在热沙漠中得到认可的离散气候事件的重要性也是极地沙漠中土壤和水生生态系统的重要驱动力。因此,以线性温度趋势为重点的南极生态系统对气候变化反应的预测可能会忽略罕见的气候事件对水文学和相关生态过程的潜在重大影响。

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