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首页> 外文期刊>Journal of evolutionary biology >Recent invasion of the mountain birch Betula pubescens ssp tortuosa above the treeline due to climate change: genetic and ecological study in northern Sweden
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Recent invasion of the mountain birch Betula pubescens ssp tortuosa above the treeline due to climate change: genetic and ecological study in northern Sweden

机译:由于气候变化,桦树最近在树线上方入侵桦树(Betula pubescens ssp tortuosa):瑞典北部的遗传和生态研究

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摘要

Mountain birch, Betula pubescens ssp. tortuosa, forms the treeline in northern Sweden. A recent shift in the range of the species associated with an elevation of the treeline is commonly attributed to climate warming. Using microsatellite markers, we explored the genetic structure of populations along an altitudinal gradient close to the treeline. Low genetic differentiation was found between populations, whereas high genetic diversity was maintained within populations. High level of gene flow compensated for possible losses of genetic diversity at higher elevations and dissipated the founding effect of newly established populations above the treeline. Spatial autocorrelation analysis showed low spatial genetic structure within populations because of extensive gene flow. At the treeline, significant genetic structure within the juvenile age class at small distances did not persist in the adult age class, indicating recent expansion of young recruits due to the warming of the climate. Finally, seedling performance above the treeline was positively correlated with parameters related to temperature. These data confirm the high migration potential of the species in response to fluctuating environmental conditions and indicate that it is now invading higher altitudes due to the recent warming of the climate.
机译:桦木,桦木。 tortuosa,形成了瑞典北部的树线。与林线升高相关的物种范围的最近变化通常归因于气候变暖。使用微卫星标记,我们沿着靠近林线的海拔梯度探索了种群的遗传结构。在种群之间发现了较低的遗传分化,而种群内则保持了较高的遗传多样性。高水平的基因流动补偿了高海拔地区可能丧失的遗传多样性,并消除了树线以上新建立种群的建立效应。空间自相关分析显示,由于广泛的基因流,种群内的空间遗传结构较低。在树线处,在成年年龄组中,青少年年龄组中距离较近的重要遗传结构没有持续存在,这表明由于气候变暖,新兵人数最近有所增长。最终,树线以上的苗木性能与温度相关。这些数据证实了该物种在应对不断变化的环境条件下具有很高的迁徙潜力,并表明由于最近的气候变暖,该物种目前正在入侵更高的海拔。

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