Publication:
Plant community legacy effects on nutrient cycling, fungal decomposer communities and decomposition in a temperate grassland

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dc.contributor.authorJongen, Renske
dc.contributor.authorHannula, S. Emilia
dc.contributor.authorDe Long, Jonathan R.
dc.contributor.authorHeinen, Robin
dc.contributor.authorHuberty, Martine
dc.contributor.authorSteinauer, Katja
dc.contributor.authorBezemer, T. Martijn
dc.date.accessioned2024-10-06T18:47:35Z
dc.date.available2024-10-06T18:47:35Z
dc.date.issued2021-12
dc.description.abstractSoil legacies mediated by plant species-specific microbial communities are major drivers of plant community dynamics. Most soil legacy studies focus on the role of pathogens and mutualists in driving these processes, while much less is known about plant litter-mediated changes to the soil microbial community. Here, we used an existing plant-soil feedback field experiment in which plant communities with different growth strategies (i.e., fast versus slow) and different proportions of functional groups (i.e., grasses versus forbs) were allowed to condition the soil over contrasting temporal scales (i.e., one versus two years) in a natural grassland. In the feedback phase, we removed the existent plant community, and replaced it with a standardized response plant community. We then tested the legacy effects of these different soil conditioning treatments on decomposition processes, nutrient cycling and soil decomposer community composition. Soil legacy effects on decomposition and the soil decomposer community composition were most evident right after the start of the feedback phase, but disappeared soon after the new community established. The soil conditioning time and years since disturbance affected most of the soil functions consistently, while no strong effects of plant functional group and plant growth strategy were found. We conclude that after disturbance, it is recovery time, not soil legacy effects, that is the most important factor driving soil functions.
dc.description.numberOfPages10
dc.description.sponsorshipInstitut für Pflanzenwissenschaften (IPS)
dc.identifier.doi10.48350/161294
dc.identifier.publisherDOI10.1016/j.soilbio.2021.108450
dc.identifier.urihttps://boris-portal.unibe.ch/handle/20.500.12422/57595
dc.language.isoen
dc.publisherElsevier
dc.relation.ispartofSoil Biology & Biochemistry
dc.relation.issn0038-0717
dc.relation.organizationDCD5A442C222E17DE0405C82790C4DE2
dc.relation.organizationDCD5A442C579E17DE0405C82790C4DE2
dc.subjectgrassland
dc.subjectsoil legacy effects
dc.subjectdecomposition
dc.subjectsoil nutrient cycling
dc.subjectsoil fungi
dc.subject.ddc500 - Science::580 - Plants (Botany)
dc.titlePlant community legacy effects on nutrient cycling, fungal decomposer communities and decomposition in a temperate grassland
dc.typearticle
dspace.entity.typePublication
dspace.file.typetext
oaire.citation.startPage108450
oaire.citation.volume163
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oairecerif.author.affiliationInstitut für Pflanzenwissenschaften (IPS)
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unibe.date.licenseChanged2021-11-30 16:04:32
unibe.description.ispublishedpub
unibe.eprints.legacyId161294
unibe.journal.abbrevTitleSOIL BIOL BIOCHEM
unibe.refereedTRUE
unibe.subtype.articlejournal

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