Soil environmental conditions and microbial build-up mediate the effect of plant diversity on soil nitrifying and denitrifying enzyme activities in temperate grasslands.

Random reductions in plant diversity can affect ecosystem functioning, but it is still unclear which components of plant diversity (species number - namely richness, presence of particular plant functional groups, or particular combinations of these) and associated biotic and abiotic drivers explain...

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Main Authors: Xavier Le Roux, Bernhard Schmid, Franck Poly, Romain L Barnard, Pascal A Niklaus, Nadine Guillaumaud, Maike Habekost, Yvonne Oelmann, Laurent Philippot, Joana Falcao Salles, Michael Schloter, Sibylle Steinbeiss, Alexandra Weigelt
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3629084?pdf=render
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spelling doaj-002e20d9a1494befbba0669fc9d2f20e2020-11-25T00:02:21ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0184e6106910.1371/journal.pone.0061069Soil environmental conditions and microbial build-up mediate the effect of plant diversity on soil nitrifying and denitrifying enzyme activities in temperate grasslands.Xavier Le RouxBernhard SchmidFranck PolyRomain L BarnardPascal A NiklausNadine GuillaumaudMaike HabekostYvonne OelmannLaurent PhilippotJoana Falcao SallesMichael SchloterSibylle SteinbeissAlexandra WeigeltRandom reductions in plant diversity can affect ecosystem functioning, but it is still unclear which components of plant diversity (species number - namely richness, presence of particular plant functional groups, or particular combinations of these) and associated biotic and abiotic drivers explain the observed relationships, particularly for soil processes. We assembled grassland communities including 1 to 16 plant species with a factorial separation of the effects of richness and functional group composition to analyze how plant diversity components influence soil nitrifying and denitrifying enzyme activities (NEA and DEA, respectively), the abundance of nitrifiers (bacterial and archaeal amoA gene number) and denitrifiers (nirK, nirS and nosZ gene number), and key soil environmental conditions. Plant diversity effects were largely due to differences in functional group composition between communities of identical richness (number of sown species), though richness also had an effect per se. NEA was positively related to the percentage of legumes in terms of sown species number, the additional effect of richness at any given legume percentage being negative. DEA was higher in plots with legumes, decreased with increasing percentage of grasses, and increased with richness. No correlation was observed between DEA and denitrifier abundance. NEA increased with the abundance of ammonia oxidizing bacteria. The effect of richness on NEA was entirely due to the build-up of nitrifying organisms, while legume effect was partly linked to modified ammonium availability and nitrifier abundance. Richness effect on DEA was entirely due to changes in soil moisture, while the effects of legumes and grasses were partly due to modified nitrate availability, which influenced the specific activity of denitrifiers. These results suggest that plant diversity-induced changes in microbial specific activity are important for facultative activities such as denitrification, whereas changes in microbial abundance play a major role for non-facultative activities such as nitrification.http://europepmc.org/articles/PMC3629084?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Xavier Le Roux
Bernhard Schmid
Franck Poly
Romain L Barnard
Pascal A Niklaus
Nadine Guillaumaud
Maike Habekost
Yvonne Oelmann
Laurent Philippot
Joana Falcao Salles
Michael Schloter
Sibylle Steinbeiss
Alexandra Weigelt
spellingShingle Xavier Le Roux
Bernhard Schmid
Franck Poly
Romain L Barnard
Pascal A Niklaus
Nadine Guillaumaud
Maike Habekost
Yvonne Oelmann
Laurent Philippot
Joana Falcao Salles
Michael Schloter
Sibylle Steinbeiss
Alexandra Weigelt
Soil environmental conditions and microbial build-up mediate the effect of plant diversity on soil nitrifying and denitrifying enzyme activities in temperate grasslands.
PLoS ONE
author_facet Xavier Le Roux
Bernhard Schmid
Franck Poly
Romain L Barnard
Pascal A Niklaus
Nadine Guillaumaud
Maike Habekost
Yvonne Oelmann
Laurent Philippot
Joana Falcao Salles
Michael Schloter
Sibylle Steinbeiss
Alexandra Weigelt
author_sort Xavier Le Roux
title Soil environmental conditions and microbial build-up mediate the effect of plant diversity on soil nitrifying and denitrifying enzyme activities in temperate grasslands.
title_short Soil environmental conditions and microbial build-up mediate the effect of plant diversity on soil nitrifying and denitrifying enzyme activities in temperate grasslands.
title_full Soil environmental conditions and microbial build-up mediate the effect of plant diversity on soil nitrifying and denitrifying enzyme activities in temperate grasslands.
title_fullStr Soil environmental conditions and microbial build-up mediate the effect of plant diversity on soil nitrifying and denitrifying enzyme activities in temperate grasslands.
title_full_unstemmed Soil environmental conditions and microbial build-up mediate the effect of plant diversity on soil nitrifying and denitrifying enzyme activities in temperate grasslands.
title_sort soil environmental conditions and microbial build-up mediate the effect of plant diversity on soil nitrifying and denitrifying enzyme activities in temperate grasslands.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Random reductions in plant diversity can affect ecosystem functioning, but it is still unclear which components of plant diversity (species number - namely richness, presence of particular plant functional groups, or particular combinations of these) and associated biotic and abiotic drivers explain the observed relationships, particularly for soil processes. We assembled grassland communities including 1 to 16 plant species with a factorial separation of the effects of richness and functional group composition to analyze how plant diversity components influence soil nitrifying and denitrifying enzyme activities (NEA and DEA, respectively), the abundance of nitrifiers (bacterial and archaeal amoA gene number) and denitrifiers (nirK, nirS and nosZ gene number), and key soil environmental conditions. Plant diversity effects were largely due to differences in functional group composition between communities of identical richness (number of sown species), though richness also had an effect per se. NEA was positively related to the percentage of legumes in terms of sown species number, the additional effect of richness at any given legume percentage being negative. DEA was higher in plots with legumes, decreased with increasing percentage of grasses, and increased with richness. No correlation was observed between DEA and denitrifier abundance. NEA increased with the abundance of ammonia oxidizing bacteria. The effect of richness on NEA was entirely due to the build-up of nitrifying organisms, while legume effect was partly linked to modified ammonium availability and nitrifier abundance. Richness effect on DEA was entirely due to changes in soil moisture, while the effects of legumes and grasses were partly due to modified nitrate availability, which influenced the specific activity of denitrifiers. These results suggest that plant diversity-induced changes in microbial specific activity are important for facultative activities such as denitrification, whereas changes in microbial abundance play a major role for non-facultative activities such as nitrification.
url http://europepmc.org/articles/PMC3629084?pdf=render
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