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Linear and non-linear responses of vegetation and soils to glacial-interglacial climate change in a Mediterranean refuge

机译:地中海避难所内植被和土壤对冰川间气候变化的线性和非线性响应

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摘要

The impact of past global climate change on local terrestrial ecosystems and their vegetation and soil organic matter (OM) pools is often non-linear and poorly constrained. To address this, we investigated the response of a temperate habitat influenced by global climate change in a key glacial refuge, Lake Ohrid (Albania, Macedonia). We applied independent geochemical and palynological proxies to a sedimentary archive from the lake over the penultimate glacial-interglacial transition (MIS 6–5) and the following interglacial (MIS 5e-c), targeting lake surface temperature as an indicator of regional climatic development and the supply of pollen and biomarkers from the vegetation and soil OM pools to determine local habitat response. Climate fluctuations strongly influenced the ecosystem, however, lake level controls the extent of terrace surfaces between the shoreline and mountain slopes and hence local vegetation, soil development and OM export to the lake sediments. There were two phases of transgressional soil erosion from terrace surfaces during lake-level rise in the MIS 6–5 transition that led to habitat loss for the locally dominant pine vegetation as the terraces drowned. Our observations confirm that catchment morphology plays a key role in providing refuges with low groundwater depth and stable soils during variable climate.
机译:过去的全球气候变化对当地陆地生态系统及其植被和土壤有机质(OM)池的影响通常是非线性的且受约束较弱。为了解决这个问题,我们调查了主要冰川避难所奥赫里德湖(阿尔巴尼亚,马其顿)受全球气候变化影响的温带栖息地的响应。我们将倒数第二次冰川-冰间过渡期(MIS 6-5)和随后的冰间期(MIS 5e-c)的湖泊沉积档案应用了独立的地球化学和孢粉学指标,以湖面温度为区域气候发展和气候变化的指标。从植被和土壤OM池中供应花粉和生物标志物,以确定当地的生境响应。气候波动强烈影响了生态系统,但是,湖泊水位控制着海岸线和山坡之间的梯田表面范围,从而控制了当地植被,土壤发育和有机质向湖泊沉积物的出口。在MIS 6-5过渡期间,湖平面上升期间,梯田表面发生了海侵性土壤侵蚀的两个阶段,这导致梯田淹没,导致当地优势松树植被的生境丧失。我们的观察结果证实,在气候变化期间,集水区形态在为地下水深度低且土壤稳定的避难所中起着关键作用。

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