Sampling and Complementarity Effects of Plant Diversity on Resource Use Increases the Invasion Resistance of Communities
نویسندگان
چکیده
BACKGROUND Although plant diversity is postulated to resist invasion, studies have not provided consistent results, most of which were ascribed to the influences of other covariate environmental factors. METHODOLOGY/PRINCIPAL FINDINGS To explore the mechanisms by which plant diversity influences community invasibility, an experiment was conducted involving grassland sites varying in their species richness (one, two, four, eight, and sixteen species). Light interception efficiency and soil resources (total N, total P, and water content) were measured. The number of species, biomass, and the number of seedlings of the invading species decreased significantly with species richness. The presence of Patrinia scabiosaefolia Fisch. ex Trev. and Mosla dianthera (Buch.-Ham. ex Roxburgh) Maxim. significantly increased the resistance of the communities to invasion. A structural equation model showed that the richness of planted species had no direct and significant effect on invasion. Light interception efficiency had a negative effect on the invasion whereas soil water content had a positive effect. In monocultures, Antenoron filiforme (Thunb.) Rob. et Vaut. showed the highest light interception efficiency and P. scabiosaefolia recorded the lowest soil water content. With increased planted-species richness, a greater percentage of pots showed light use efficiency higher than that of A. filiforme and a lower soil water content than that in P. scabiosaefolia. CONCLUSIONS/SIGNIFICANCE The results of this study suggest that plant diversity confers resistance to invasion, which is mainly ascribed to the sampling effect of particular species and the complementarity effect among species on resources use.
منابع مشابه
Diversity decreases invasion via both sampling and complementarity effects
Joseph E. Fargione* and David Tilman Department of Ecology, Evolution and Behavior, University of Minnesota, St Paul, MN 55108, USA *Correspondence and present address: Department of Biology, University of New Mexico, Albuquerque, NM 87131, USA E-mail: [email protected] Abstract Complementarity and sampling effects may both contribute to increased invasion resistance at higher diversity. We meas...
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