Feedback with soil biota contributes to plant rarity and invasiveness in communities
Top Cited Papers
- 1 May 2002
- journal article
- Published by Springer Nature in Nature
- Vol. 417 (6884) , 67-70
- https://doi.org/10.1038/417067a
Abstract
Understanding the relative abundance of species in plant communities is an unsolved problem. Mechanisms such as competition, resource partitioning, dispersal ability and predation tolerance do not adequately explain relative abundance under field conditions. Recent work suggests that interactions between plants and soil microbes is important. Here I show that such interaction explains a significant proportion of the variance in the relative abundance of species in plant communities. Rare plants exhibited a relative decrease in growth on 'home' soil in which pathogens had had a chance to accumulate, whereas invasive plants benefited from interactions with mycorrhizal fungi. Some plant species accumulate pathogens quickly and maintain low densities as a result of the accumulation of species-specific pathogens, whereas others accumulate species-specific pathogens more slowly and do not experience negative feedback until plant densities reach high levels. These results indicate that plants have different abilities to influence their abundance by changing the structure of their soil communities, and that this is an important regulator of plant community structure.Keywords
This publication has 20 references indexed in Scilit:
- Soil pathogens and spatial patterns of seedling mortality in a temperate treeNature, 2000
- Mycorrhizal fungal diversity determines plant biodiversity, ecosystem variability and productivityNature, 1998
- Relationship between species relative abundance and plant traits for an infertile habitatPlant Ecology, 1998
- Incorporating the Soil Community into Plant Population Dynamics: The Utility of the Feedback ApproachJournal of Ecology, 1997
- Feeback between Plants and Their Soil Communities in an Old Field CommunityEcology, 1994
- Plant-specific soil-borne diseases contribute to succession in foredune vegetationNature, 1993
- Effects of grazing, competition, disturbance and fire on species composition and diversity in grassland communitiesJournal of Vegetation Science, 1992
- The Persistence of Rare Prairie Grasses in Missouri: Environmental Variation Buffered by Reproductive Output of Sparse SpeciesThe American Naturalist, 1989
- Floristic diversity in a model system using experimental microcosmsNature, 1987
- The Effect of Manuring, Grazing and Cutting on the Yield, Botanical and Chemical Composition of Natural Hill Pastures: I. Yield and Botanical SectionJournal of Ecology, 1940