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Enhanced habitat loss of the Himalayan endemic flora driven by warming-forced upslope tree expansion

机译:增强喜马拉雅特有的栖息地的丧失植物由warming-forced上坡树扩张

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摘要

High-elevation trees cannot always reach the thermal treeline, the potential upper range limit set by growing-season temperature. But delineation of the realized upper range limit of trees and quantification of the drivers, which lead to trees being absent from the treeline, is lacking. Here, we used 30 m resolution satellite tree-cover data, validated by more than 0.7 million visual interpretations from Google Earth images, to map the realized range limit of trees along the Himalaya which harbours one of the world's richest alpine endemic flora. The realized range limit of trees is similar to 800 m higher in the eastern Himalaya than in the western and central Himalaya. Trees had reached their thermal treeline positions in more than 80% of the cases over eastern Himalaya but are absent from the treeline position in western and central Himalaya, due to anthropogenic disturbance and/or premonsoon drought. By combining projections of the deviation of trees from the treeline position due to regional environmental stresses with warming-induced treeline shift, we predict that trees will migrate upslope by similar to 140 m by the end of the twenty-first century in the eastern Himalaya. This shift will cause the endemic flora to lose at least similar to 20% of its current habitats, highlighting the necessity to reassess the effectiveness of current conservation networks and policies over the Himalaya.
机译:海拔较高的树木总是不能达到热的树木间洒落,潜在的范围上限生长期的设定的温度。意识到范围上限的描述的司机,树木和量化导致树木被缺席山林,缺乏。树木覆盖数据,验证了超过0.7百万的视觉诠释从谷歌地球图像映射树的实现范围限制沿着喜马拉雅山脉的港口之一世界上最富有的高山特有植物。实现范围限制树木的类似于800在东喜马拉雅比更高喜马拉雅西部和中部。线热仓位在80%以上的情况下在喜马拉雅山脉东部,但缺席在西部和中部从山林的地位喜马拉雅山脉,由于人为干扰和/或premonsoon干旱。树木从山林位置的偏差由于区域环境压力变暖线转变,我们预测,树木将通过类似于140年迁移上坡二十一世纪的结束东喜马拉雅山脉。特有植物失去了至少20%的相似当前的栖息地,突出的必要性重新评估当前的有效性保护网络和政策喜马拉雅山脉。

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