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Species abundance and asymmetric interaction strength in ecological networks

Oikos · 2007 · Vol. 116(7) · pp. 1120–1127
Diego P. VázquezCarlos J. MeliánNeal M. WilliamsNico BlüthgenBoris R. KrasnovRobert Poulin

Abstract

The strength of interactions among species in a network tends to be highly asymmetric. We evaluate the hypothesis that this asymmetry results from the distribution of abundance among species, so that species interactions occur randomly among individuals. We used a database on mutualistic and antagonistic bipartite quantitative interaction networks. We show that across all types of networks asymmetry was correlated with abundance, so that rare species were asymmetrically affected by their abundant partners, while pairs of interacting abundant species tended to exhibit more symmetric, reciprocally strong effects. A null model shows that abundance provides a sufficient explanation of the asymmetry structure in some networks, but suggests the role of additional factors in others. Although not universal, our hypothesis holds for a substantial fraction of networks analyzed here, and should be considered as a null model in all studies aimed at evaluating the ecological and evolutionary consequences of species interactions.

Plant and animal studiesPlant Parasitism and ResistanceEcology and Vegetation Dynamics StudiesNull modelAbundance (ecology)Ecological networkBiologyEcologyAsymmetryEvolutionary biologyNull (SQL)Relative abundance distributionBipartite graph

Funding

  • National Science Foundation
  • Consejo Nacional de Investigaciones Científicas y Técnicas
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653
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References
Biostatistical Analysis.
Journal of the American Statistical Association · 1975 · 12,780 citations
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