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Predicted responses of arctic and alpine ecosystems to altered seasonality under climate change

机译:气候变化下北极和高山生态系统对季节性变化的预测响应

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Global climate change is already having significant impacts on arctic and alpine ecosystems, and ongoing increases in temperature and altered precipitation patterns will affect the strong seasonal patterns that characterize these temperature-limited systems. The length of the potential growing season in these tundra environments is increasing due to warmer temperatures and earlier spring snow melt. Here, we compare current and projected climate and ecological data from 20 Northern Hemisphere sites to identify how seasonal changes in the physical environment due to climate change will alter the seasonality of arctic and alpine ecosystems. We find that although arctic and alpine ecosystems appear similar under historical climate conditions, climate change will lead to divergent responses, particularly in the spring and fall shoulder seasons. As seasonality changes in the Arctic, plants will advance the timing of spring phenological events, which could increase plant nutrient uptake, production, and ecosystem carbon (C) gain. In alpine regions, photoperiod will constrain spring plant phenology, limiting the extent to which the growing season can lengthen, especially if decreased water availability from earlier snow melt and warmer summer temperatures lead to earlier senescence. The result could be a shorter growing season with decreased production and increased nutrient loss. These contrasting alpine and arctic ecosystem responses will have cascading effects on ecosystems, affecting community structure, biotic interactions, and biogeochemistry.
机译:全球气候变化已经对北极和高山生态系统产生了重大影响,不断升高的温度和变化的降水模式将影响这些受温度限制的系统的强烈季节性模式。由于温度升高和春季积雪融化,这些苔原环境中潜在生长季节的长度正在增加。在这里,我们比较了北半球20个站点的当前和预计的气候和生态数据,以确定气候变化导致的自然环境季节性变化将如何改变北极和高山生态系统的季节性。我们发现,尽管在历史气候条件下北极和高山生态系统看起来相似,但气候变化将导致不同的响应,尤其是在春季和秋季的肩部季节。随着北极季节的变化,植物将提前春季物候事件的发生时间,这可能会增加植物养分的吸收,产量和生态系统碳(C)的获取。在高寒地区,光周期将限制春季植物的物候,限制生长季节的延长程度,尤其是如果较早融雪和夏季气温升高导致水供应减少导致较早衰老的话。结果可能是生长季节缩短,产量下降,营养损失增加。这些不同的高山和北极生态系统反应将对生态系统产生连锁反应,影响群落结构,生物相互作用和生物地球化学。

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