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从时间变异性中对资源量进行实验性分离:幼苗对水脉冲的响应

Experimental separation of resource quantity from temporal variability: seedling responses to water pulses.

作者信息

Lundholm Jeremy T, Larson Douglas W

机构信息

Department of Botany, University of Guelph, N1G 2W1, Ontario, Canada.

出版信息

Oecologia. 2004 Oct;141(2):346-52. doi: 10.1007/s00442-003-1454-6. Epub 2003 Dec 18.

Abstract

We tested the hypothesis that higher temporal variability in water supply will promote higher species richness of germinating and surviving seedlings using assemblages of 70 species of herbaceous plants from limestone pavement habitats. In a two-factor greenhouse experiment, doubling the total volume of water added led to greater germination (measured as number of germinated seeds and species) and establishment (survival and biomass) but the effects of temporal variability depended on the response variable considered. Low pulse frequencies of water addition with total volume added held constant resulted in greater temporal variability in soil moisture concentration that in turn promoted higher density and richness of germinated seedlings. Low pulse frequencies caused an eight-fold greater mortality in the low total volume treatment and biomass production to decline by one-third in the high total volume treatment. The effects of increasing temporal variability in water supply during recruitment stages can thus be opposite on different components of plant fitness and may also depend on total resource quantity. While greater species richness in more temporally variable soil moisture conditions was attributable to sampling effects rather than species-specific responses to the water treatments, species relative abundances did vary significantly with temporal variability. Changes in the amplitude or frequency of resource fluctuations may alter recruitment patterns, and could have severe and relatively rapid effects on community structure in unproductive ecosystems.

摘要

我们使用来自石灰岩路面栖息地的70种草本植物组合,检验了以下假设:供水时间变异性的增加将促进发芽和存活幼苗的更高物种丰富度。在一项双因素温室实验中,将添加的水的总体积加倍导致了更高的发芽率(以发芽种子和物种数量衡量)和定植率(存活率和生物量),但时间变异性的影响取决于所考虑的响应变量。在添加的总体积保持不变的情况下,低频率的加水脉冲导致土壤水分浓度的时间变异性更大,进而促进了发芽幼苗的更高密度和丰富度。低脉冲频率在低总体积处理中导致死亡率高出八倍,在高总体积处理中生物量产量下降三分之一。因此,在幼苗招募阶段增加供水时间变异性的影响在植物适合度的不同组成部分上可能是相反的,并且也可能取决于总资源量。虽然在时间变异性更大的土壤湿度条件下更高的物种丰富度归因于抽样效应而非物种对水处理的特定反应,但物种相对丰度确实随时间变异性而显著变化。资源波动幅度或频率的变化可能会改变招募模式,并可能对非生产性生态系统中的群落结构产生严重且相对迅速的影响。

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