Institute of Geography, University of Tübingen, Tübingen, Germany.
PLoS One. 2013;8(2):e49618. doi: 10.1371/journal.pone.0049618. Epub 2013 Feb 15.
Throughfall kinetic energy (TKE) plays an important role in soil erosion in forests. We studied TKE as a function of biodiversity, functional diversity as well as structural stand variables in a secondary subtropical broad-leaved forest in the Gutianshan National Nature Reserve (GNNR) in south-east China, a biodiversity hotspot in the northern hemisphere with more than 250 woody species present. Using a mixed model approach we could identify significant effects of all these variables on TKE: TKE increased with rarefied tree species richness and decreased with increasing proportion of needle-leaved species and increasing leaf area index (LAI). Furthermore, for average rainfall amounts TKE was decreasing with tree canopy height whereas for high rainfall amounts this was not the case. The spatial pattern of throughfall was stable across several rain events. The temporal variation of TKE decreased with rainfall intensity and increased with tree diversity. Our results show that more diverse forest stands over the season have to cope with higher cumulative raindrop energy than less diverse stands. However, the kinetic energy (KE) of one single raindrop is less predictable in diverse stands since the variability in KE is higher. This paper is the first to contribute to the understanding of the ecosystem function of soil erosion prevention in diverse subtropical forests.
穿透雨动能 (TKE) 在森林土壤侵蚀中起着重要作用。我们研究了在位于北半球生物多样性热点地区的中国东南古田山国家级自然保护区(GNNR)次生亚热带阔叶林中,TKE 作为生物多样性、功能多样性以及结构林分变量的函数。利用混合模型方法,我们可以确定所有这些变量对 TKE 的显著影响:TKE 随稀有种的树木丰富度增加而增加,随针叶树种比例和叶面积指数 (LAI) 的增加而减少。此外,对于平均降雨量,TKE 随树冠高度的增加而减少,而对于高降雨量则不是这样。穿透雨的空间格局在几次降雨事件中是稳定的。TKE 的时间变化随降雨强度的增加而减少,随树木多样性的增加而增加。我们的结果表明,在整个季节,更多样化的林分必须应对比较少样化的林分更高的累积雨滴能量。然而,由于动能 (KE) 的变异性更高,单个雨滴的 KE 更难预测。本文首次有助于理解多样化亚热带森林防止土壤侵蚀的生态系统功能。