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Modeling the date of leaf appearance in low-arctic tundra

机译:在低北极苔原上模拟叶片出现的日期

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One of the reported changes of arctic ecosystems in response to warming climate is the advance of the leaf appearance in spring. Such phenological changes play a role in the structural changes within tundra ecosystem communities. Recently, we developed a model that estimates the leaf appearance date for deciduous trees in taiga. We apply this model to the whole low-arctic tundra, and we compare the simulated green-up dates with the green-up dates obtained from satellite observations and to in situ measurements of deciduous shrub leaf appearance. The model, although calibrated for taiga, performs remarkably well in tundra, with root mean square error ranging between 4 and 8 days for most of the tundra region, the same order as in taiga regions. The results seem to indicate that air temperature is the main factor controlling spring leaf phenology in tundra, just as in taiga, although these results do not permit us to reject soil temperature as the main trigger for leaf appearance in tundra. Because our model performs in tundra as well as in taiga, it can be used across the ecotone, and during a northward migration of the species from the taiga to the low-arctic region. The leaf appearance model and the satellite observations reveal that leaf appearance has tended to occur earlier by approximately 10 days both in Alaska since 1975, and in west Siberian tundra since 1965.
机译:据报道,北极生态系统随着气候变暖而发生的变化之一是春季叶片的出现。这种物候变化在冻原生态系统群落内部的结构变化中起作用。最近,我们开发了一个模型,用于估算针叶林中落叶乔木的叶片出现日期。我们将此模型应用于整个低北极苔原,并且将模拟的绿化日期与从卫星观测结果获得的绿化日期进行比较,并就地测量落叶灌木叶的外观。该模型尽管已针对针叶林进行了校准,但在苔原中的表现非常出色,大多数苔原地区的均方根误差在4至8天之间,与针叶林中的顺序相同。结果似乎表明,空气温度是控制苔原中春季叶片物候的主要因素,就像在针叶林中一样,尽管这些结果不允许我们拒绝土壤温度作为苔原中叶片外观的主要触发因素。由于我们的模型在苔原和针叶林中均能发挥作用,因此可在整个过渡带使用,也可在物种从针叶林向北北极地区的北迁期间使用。叶片外观模型和卫星观测结果表明,叶片外观往往早于1975年以来在阿拉斯加以及自1965年以来在西伯利亚冻原上出现的时间都早了约10天。

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