Vermaat Jan E, Dunne Jennifer A, Gilbert Alison J
Institute for Environmental Studies, Vrije Universiteit Amsterdam, De Boelelaan 1087, 1081 HV Amsterdam, The Netherlands.
Ecology. 2009 Jan;90(1):278-82. doi: 10.1890/07-0978.1.
The covariance among a range of 20 network structural properties of food webs plus net primary productivity was assessed for 14 published food webs using principal components analysis. Three primary components explained 84% of the variability in the data sets, suggesting substantial covariance among the properties employed in the literature. The first dimension explained 48% of the variance and could be ascribed to connectance, covarying significantly with the proportion of intermediate species and characteristic path length. The second dimension explained 19% and was related to trophic species richness. The third axis explained 17% and was related to ecosystem net primary productivity. A distinct opposite clustering of connectance, the proportion of intermediate species, and mean trophic level vs. the proportion of top and basal species and path length suggests a dichotomy in food-web structure. Food webs appear either clustered and highly interconnected or elongated with fewer links.
利用主成分分析评估了14个已发表食物网的20种网络结构属性以及净初级生产力之间的协方差。三个主要成分解释了数据集中84%的变异性,这表明文献中所采用的属性之间存在显著的协方差。第一维解释了48%的方差,可归因于连通性,与中间物种比例和特征路径长度显著协变。第二维解释了19%,与营养物种丰富度有关。第三轴解释了17%,与生态系统净初级生产力有关。连通性、中间物种比例和平均营养级与顶级和基础物种比例及路径长度之间明显的相反聚类表明食物网结构存在二分法。食物网要么呈聚类且高度相互连接,要么链路较少且呈拉长状。