PLoS ONE · 2010 · 85 citations · 36 references
EngineeringBotanyExotic Plant InvasionPlant-soil InteractionPlant-soil RelationshipMicrobial EcologyMutualism (Biology)Germination ExperimentRhizospherePlant-microbe InteractionMutualistic InteractionEnhanced Mutualism HypothesisSolidago Canadensis PlantsNatural SciencesEvolutionary BiologyCrop ProtectionSymbiosisPlant PhysiologySolidago Canadensis
The important roles of plant-soil microbe interactions have been documented in exotic plant invasion, but we know very little about how soil mutualists enhance this process (i.e. enhanced mutualism hypothesis). To test this hypothesis we conducted two greenhouse experiments with Solidago canadensis (hereafter Solidago), an invasive forb from North America, and Stipa bungeana (hereafter Stipa), a native Chinese grass. In a germination experiment, we found soil microbes from the rhizospheres of Solidago and Stipa exhibited much stronger facilitative effects on emergence of Solidago than that of Stipa. In a growth and competition experiment, we found that soil microbes strongly facilitated Solidago to outgrow Stipa, and greatly increased the competitive effects of Solidago on Stipa but decreased the competitive effects of Stipa on Solidago. These findings from two experiments suggest that in situ soil microbes enhance the recruitment potential of Solidago and its ability to outcompete native plants, thereby providing strong evidence for the enhanced mutualism hypothesis. On the other hand, to some extent this outperformance of Solidago in the presence of soil microbes seems to be unbeneficial to control its rapid expansion, particularly in some ranges where this enhanced mutualism dominates over other mechanisms.
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Mycorrhizal Symbiosis, 2nd edn.
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Soil biota and exotic plant invasion
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