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Dynamic response of desert wetlands to abrupt climate change

机译:沙漠湿地对突变气候的动态响应

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摘要

Desert wetlands are keystone ecosystems in arid environments and are preserved in the geologic record as groundwater discharge (GWD) deposits. GWD deposits are inherently discontinuous and stratigraphically complex, which has limited our understanding of how desert wetlands responded to past episodes of rapid climate change. Previous studies have shown that wetlands responded to climate change on glacial to interglacial timescales, but their sensitivity to short-lived climate perturbations is largely unknown. Here, we show that GWD deposits in the Las Vegas Valley (southern Nevada, United States) provide a detailed and nearly complete record of dynamic hydrologic changes during the past 35 ka (thousands of calibrated 14C years before present), including cycles of wetland expansion and contraction that correlate tightly with climatic oscillations recorded in the Greenland ice cores. Cessation of discharge associated with rapid warming events resulted in the collapse of entire wetland systems in the Las Vegas Valley at multiple times during the late Quaternary. On average, drought-like conditions, as recorded by widespread erosion and the formation of desert soils, lasted for a few centuries. This record illustrates the vulnerability of desert wetland flora and fauna to abrupt climate change. It also shows that GWD deposits can be used to reconstruct paleohydrologic conditions at millennial to submillennial timescales and informs conservation efforts aimed at protecting these fragile ecosystems in the face of anthropogenic warming.
机译:沙漠湿地是干旱环境中的关键生态系统,在地质记录中被保留为地下水排放(GWD)沉积物。 GWD沉积物本质上是不连续且地层复杂的,这限制了我们对沙漠湿地如何应对过去快速的气候变化事件的理解。先前的研究表明,湿地对冰川变化对冰川间时间尺度的反应是响应的,但是对于短期气候扰动的敏感性很大程度上未知。在这里,我们显示了拉斯维加斯山谷(美国内华达州南部)的GWD沉积物提供了过去35 ka(成千上万的经过校准的 14 C年)动态水文变化的详细且几乎完整的记录。目前),包括湿地扩张和收缩的周期,这些周期与格陵兰岛冰芯中记录的气候波动紧密相关。在第四纪晚期,由于与快速变暖事件有关的排放停止,导致了拉斯维加斯谷地整个湿地系统的崩溃。平均来说,像干旱一样的状况,持续了数个世纪,这被普遍的侵蚀和沙漠土壤的形成所记录。该记录说明了沙漠湿地动植物对突然的气候变化的脆弱性。它还表明,GWD沉积物可用于重建千年至亚千年纪时期的古水文条件,并为旨在保护这些脆弱的生态系统以应对人为变暖的保护工作提供信息。

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