Soil community composition and the regulation of grazed temperate grassland |
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Authors: | Douglas?A.?Frank mailto:dafrank@syr.edu" title=" dafrank@syr.edu" itemprop=" email" data-track=" click" data-track-action=" Email author" data-track-label=" " >Email author,Catherine?A.?Gehring,Leonard?Machut,Mark?Phillips |
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Affiliation: | (1) Biological Research Labs, Syracuse University, Syracuse, NY 13244–1220, USA;(2) Department of Biological Sciences, Northern Arizona University, Flagstaff, AZ 86011–5640, USA |
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Abstract: | The effect of the community composition of soil microbes on ecosystem processes has received relatively little attention. Here we examined the variation in soil microbial composition in a Yellowstone National Park grassland and the effect of that variation on the growth, in a greenhouse, of the dominant grass in the community. Plants and their rhizospheric soil were collected from paired, Poa pratensis-dominated grassland plots located inside and outside a 40-year-old exclosure. P. pratensis aboveground, belowground, and whole plant growth were greater in pots with soil communities from grazed grassland compared to fenced grassland, indicating (1) soil microbial communities differed, and (2) this difference influenced the growth of the plant that dominated both grasslands. Treating pots with fungicide (benomyl) suppressed the soil community influence, indicating that different fungal communities caused the soil microbe effect. In addition, two lines of evidence are consistent with the hypothesis that arbuscular mycorrhizal fungal (AMF) species composition affected P. pratensis: (1) a divergence in AMF spore communities in the two field soils, and (2) little evidence of pathogenic fungi. These findings emphasize the need to examine the role that the composition of the soil microbial community plays in controlling terrestrial ecosystems.Due to an error in the citation line, this revised PDF (published in December 2003) deviates from the printed version, and is the correct and authoritative version of the paper. |
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Keywords: | Grassland Herbivory Mycorrhizae Soil microbial community Yellowstone National Park. |
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