Plant diversity effects on soil food webs are stronger than those of elevated CO2 and N deposition in a long-term grassland experiment

scientific article (publication date: 23 April 2013)

Plant diversity effects on soil food webs are stronger than those of elevated CO2 and N deposition in a long-term grassland experiment is …
instance of (P31):
scholarly articleQ13442814

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P819ADS bibcode2013PNAS..110.6889E
P356DOI10.1073/PNAS.1217382110
P3181OpenCitations bibliographic resource ID2430863
P932PMC publication ID3637779
P698PubMed publication ID23576722
P5875ResearchGate publication ID236193278

P50authorSimone CesarzQ57180356
Sarah E. HobbieQ29834046
Nico EisenhauerQ46245773
Peter B. ReichQ51690278
P2093author name stringKally Worm
Ross J Meyer
Tomasz Dobies
P2860cites workClimate change effects on soil microarthropod abundance and community structureQ56814614
Elevated CO2 stimulates grassland soil respiration by increasing carbon inputs rather than by enhancing soil moistureQ56965579
Interactive Effects of Time, CO2, N, and Diversity on Total Belowground Carbon Allocation and Ecosystem Carbon Storage in a Grassland CommunityQ56965706
Microbial assimilation of new photosynthate is altered by plant species richness and nitrogen depositionQ56965721
Plant species richness, elevated CO2, and atmospheric nitrogen deposition alter soil microbial community composition and functionQ56965854
The fate of carbon in grasslands under carbon dioxide enrichmentQ58247944
Belowground interactive effects of elevated CO2, plant diversity and earthworms in grassland microcosmsQ58648822
Effects of plant species richness and evenness on soil microbial community diversity and functionQ58654202
Biodiversity loss and its impact on humanityQ22122163
Global Biodiversity: Indicators of Recent DeclinesQ24289128
Responses of grassland production to single and multiple global environmental changesQ24816863
Plant diversity surpasses plant functional groups and plant productivity as driver of soil biota in the long termQ27437875
Human Domination of Earth's EcosystemsQ29540951
Transformation of the nitrogen cycle: recent trends, questions, and potential solutionsQ29617423
Elevated CO2 reduces losses of plant diversity caused by nitrogen depositionQ30959270
Biodiversity impacts ecosystem productivity as much as resources, disturbance, or herbivoryQ31064125
Plant species loss decreases arthropod diversity and shifts trophic structureQ33496254
Shifting carbon flow from roots into associated microbial communities in response to elevated atmospheric CO2Q33599519
Bottom-up effects of plant diversity on multitrophic interactions in a biodiversity experimentQ33730152
A meta-analysis of responses of soil biota to global changeQ33805968
Seven years of carbon dioxide enrichment, nitrogen fertilization and plant diversity influence arbuscular mycorrhizal fungi in a grassland ecosystemQ33925988
Impacts of biodiversity loss escalate through time as redundancy fadesQ34255780
A global synthesis reveals biodiversity loss as a major driver of ecosystem changeQ34296793
The functions of biological diversity in an age of extinctionQ34304781
Nitrogen limitation constrains sustainability of ecosystem response to CO2.Q40334408
Automated measurement of the respiratory response of soil microcompartments: Active microbial biomass in earthworm faecesQ47460563
Increasing plant diversity effects on productivity with time due to delayed soil biota effects on plantsQ47460569
Plant diversity enhances ecosystem responses to elevated CO2 and nitrogen depositionQ47460581
Global change belowground: impacts of elevated CO2, nitrogen, and summer drought on soil food webs and biodiversityQ47460589
Asymmetry in community regulation: effects of predators and productivity.Q51716635
P433issue17
P407language of work or nameEnglishQ1860
P921main subjectbiodiversityQ47041
grasslandQ1006733
food webQ1775153
plant diversityQ99658977
P304page(s)6889-94
P577publication date2013-04-23
P1433published inProceedings of the National Academy of Sciences of the United States of AmericaQ1146531
P1476titlePlant diversity effects on soil food webs are stronger than those of elevated CO2 and N deposition in a long-term grassland experiment
P478volume110

Reverse relations

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