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强烈的地形遮蔽效应导致亚热带山区树线呈空间复杂式推进,并增加森林密度。

Strong topographic sheltering effects lead to spatially complex treeline advance and increased forest density in a subtropical mountain region.

机构信息

Tropical Ecology and Conservation Group, Biological and Environmental Sciences, School of Natural Sciences, University of Stirling, Stirling, FK9 4LA, UK.

出版信息

Glob Chang Biol. 2014 Dec;20(12):3756-66. doi: 10.1111/gcb.12710. Epub 2014 Sep 19.

Abstract

Altitudinal treelines are typically temperature limited such that increasing temperatures linked to global climate change are causing upslope shifts of treelines worldwide. While such elevational increases are readily predicted based on shifting isotherms, at the regional level the realized response is often much more complex, with topography and local environmental conditions playing an important modifying role. Here, we used repeated aerial photographs in combination with forest inventory data to investigate changes in treeline position in the Central Mountain Range of Taiwan over the last 60 years. A highly spatially variable upslope advance of treeline was identified in which topography is a major driver of both treeline form and advance. The changes in treeline position that we observed occurred alongside substantial increases in forest density, and lead to a large increase in overall forest area. These changes will have a significant impact on carbon stocking in the high altitude zone, while the concomitant decrease in alpine grassland area is likely to have negative implications for alpine species. The complex and spatially variable changes that we report highlight the necessity for considering local factors such as topography when attempting to predict species distributional responses to warming climate.

摘要

高山树线通常受到温度限制,因此与全球气候变化相关的温度升高正在导致世界各地的树线向上坡移动。虽然基于等温线的移动很容易预测这种海拔的升高,但在区域水平上,实际的响应通常要复杂得多,地形和当地环境条件起着重要的调节作用。在这里,我们使用重复的航空照片结合森林清查数据,调查了过去 60 年来台湾中央山脉树线位置的变化。确定了树线的高度空间变化,其中地形是树线形态和推进的主要驱动因素。我们观察到的树线位置的变化伴随着森林密度的大幅增加,导致了整体森林面积的大幅增加。这些变化将对高海拔地区的碳储量产生重大影响,而高山草原面积的相应减少可能对高山物种产生负面影响。我们报告的复杂和空间变化突出表明,在试图预测物种对变暖气候的分布响应时,需要考虑地形等当地因素。

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