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快速扩张的灌丛中的叶面积指数与光衰减

Leaf-area index and light attenuation in rapidly expanding shrub thickets.

作者信息

Brantley Steven T, Young Donald R

机构信息

Department of Biology, Virginia Commonwealth University, Richmond, Virginia 23284, USA.

出版信息

Ecology. 2007 Feb;88(2):524-30. doi: 10.1890/06-0913.

Abstract

There is increasing interest in the changes in ecosystem services that accompany the conversion of grasslands to shrub-dominated communities. Shrub structure and associated effects on the light environment may be especially important in affecting productivity and diversity. Leaf-area index (LAI) and understory light levels of Morella cerifera shrub thickets were assessed on Hog Island, Virginia, USA, at four sites along a soil chronosequence. LAI was estimated from annual leaf litter, with allometric models relating stem diameter to leaf area, with a portable integrating radiometer (LI-COR LAI-2000), and from photosynthetically active radiation (PAR) using the Beer-Lambert law. For the two youngest thickets, LAI estimates from leaf litter (approximately 10.0) approached levels often associated with tropical rain forest. Allometric models estimated LAI values at 9.8 and 12.5 for the same thickets. High LAI in thickets also results in high light attenuation. Light levels within thickets were as low as 0.7% of above-canopy PAR in the youngest thicket. These data suggest that M. cerifera shrub thickets have a very high potential for annual net primary production. Furthermore, extreme modification of the light environment, coupled with heavy shrub litter fall, may exclude potential competitors during thicket establishment and rapidly alter community structure and ecosystem function.

摘要

随着草原向灌丛主导群落的转变,人们对生态系统服务的变化越来越感兴趣。灌丛结构及其对光照环境的相关影响在影响生产力和多样性方面可能尤为重要。在美国弗吉尼亚州的霍格岛,沿着土壤年代序列在四个地点评估了蜡杨梅灌丛的叶面积指数(LAI)和林下光照水平。LAI通过年度落叶估算,利用将茎直径与叶面积相关联的异速生长模型估算,使用便携式积分辐射仪(LI-COR LAI-2000)估算,以及根据比尔-朗伯定律利用光合有效辐射(PAR)估算。对于两个最年轻的灌丛,通过落叶估算的LAI(约为10.0)接近通常与热带雨林相关的水平。异速生长模型估算出相同灌丛的LAI值分别为9.8和12.5。灌丛中较高的LAI也导致了较高的光衰减。在最年轻的灌丛中,灌丛内的光照水平低至冠层上方PAR的0.7%。这些数据表明,蜡杨梅灌丛具有非常高的年净初级生产力潜力。此外,光照环境的极端改变,再加上大量的灌丛凋落物,可能在灌丛形成过程中排除潜在的竞争者,并迅速改变群落结构和生态系统功能。

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