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Rapid range expansion and community reorganization in response to warming

机译:应对变暖迅速扩大范围并进行社区重组

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Species ranges are expected to expand along their cooler boundaries in response to rising temperatures associated with current global climate change. However, this 'fingerprint' of climate change is yet to be assessed for an entire flora. Here, we examine patterns of altitudinal range change in the complete native vascular flora of sub-Antarctic Marion Island. We demonstrate a rapid mean upslope expansion in the flora since 1966, in response to 1.2 pC warming on the island. The 3.4pl0.8 m yrp# (meanplSE) upslope expansion rate documented is amongst the highest estimates from partial floras. However, less than half of the species in the flora were responsible for the expansion trend, demonstrating that the global fingerprint of warming may be driven by a highly responsive subset of the species pool. Individual range expansion rates varied greatly, with species-specific niche requirements explaining some of this variation. As a result of the idiosyncratic expansion rates, altitudinal patterns of species richness and community composition changed considerably, with the formation of no-analog communities at high and intermediate altitudes. Therefore, both species- and community-level changes have occurred in the flora of Marion Island over a relatively short period of rapid warming, demonstrating the sensitivity of high latitude communities to climate change. Patterns of change within this flora illustrate the range of variation in species responses to climate change and the consequences thereof for species distributions and community reorganization.
机译:随着当前全球气候变化带来的温度升高,物种范围有望沿着其较冷的边界扩大。但是,尚未就整个植物群落评估这种气候变化的“指纹”。在这里,我们研究了南极洲马里恩岛完整原生维管植物区系中海拔范围变化的模式。自1966年以来,我们对岛上1.2 pC的变暖做出了反应,表明植物区系平均快速上升坡度。记录的3.4pl0.8 m yrp#(平均值)上坡膨胀率是部分植物区系的最高估计值之一。但是,菌群中只有不到一半的物种是造成扩张趋势的原因,这表明全球变暖的指纹可能是由物种库的高响应性子集驱动的。个体范围扩展率变化很大,特定物种的生态位要求解释了这种变化。由于特异的扩展速度,物种丰富度和群落组成的海拔格局发生了很大变化,在高海拔和中等海拔地区形成了无模拟群落。因此,马里恩岛的植物区系在相对较短的快速变暖中就发生了物种和群落水平的变化,这表明高纬度社区对气候变化的敏感性。该植物群内的变化模式说明了物种对气候变化的反应范围以及其对物种分布和群落重组的后果。

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