Responses of soil biota to elevated atmospheric carbon dioxide
Explore this paper's citation graph
Summary
Predictably, the responses of soil biota to CO2 enrichment and the degree of experimental emphasis on them increase with proximity to, and intimacy with, roots, and evidence continues to mount that C fixation increases with CO2 enriched and that the bulk of this C enters the belowground component of ecosystems.
- Type
- article
- Published
- 1994-03-01
- Cited by
- 100
- References
- 76
- OpenAlex
- https://openalex.org/W4229927321
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:19587665
Keywords
Decomposer, Biota, Soil biology, Ecosystem, Rhizosphere
References
- Ecological interactions in soil : plants, microbes and animals
- Carbon forms and functions in forest soils.
- Liriodendron tulipifera L.
- Symbiotic nitrogen fixation in plants
- The rhizosphere: carbon sources and microbial populations.
- Nitrogen dynamics and growth of seedlings of an N-fixing tree (Gliricidia sepium (Jacq.) Walp.) exposed to elevated atmospheric carbon dioxide
- State-of-the-Art of Models of Production-Decomposition Linkages in Conifer and Grassland Ecosystems.
- Contribution of mycorrhizae and soil fungi to nutrient cycling in a Douglas-fir ecosystem
- Carbon flow in the rhizosphere of ponderosa pine seedlings
- Responses to elevated carbon dioxide in artificial tropical ecosystems.
- Effects of free-air CO2 enrichment on microbial populations in the rhizosphere and phyllosphere of cotton
- Effects of Atmospheric CO(2) Enrichment on the Growth and Mineral Nutrition of Quercus alba Seedlings in Nutrient-Poor Soil.
- Quantitative and qualitative comparison of root exudates of mycorrhizal and nonmycorrhizal plant species
- Soil microbial biomass dynamics and net nitrogen mineralization in northern hardwood ecosystems
- Evidence of a feedback mechanism limiting plant response to elevated carbon dioxide
- Fungal and arboreal biomass in a western Oregon Douglas-fir ecosystem: distribution patterns and turnover
- Some effects of increased atmospheric carbon dioxide on white clover (Trifolium repens) and pea (Pisum sativum)
- Mass Loss and Nutrient Changes in Decomposing Upland Oak and Mesic Mixed‐Hardwood Leaf Litter
- Cotton root and rhizosphere responses to free‐air CO2 enrichment
- Mycorrhizal response to elevated CO[sub 2] in serpentine grassland communities
Cited by
- Indices of plant N availability in an alpine grassland under elevated atmospheric CO2
- Non-litter effects of elevated CO2 on forest floor microarthropod abundances
- The influence of plant species, fertilization and elevated CO2 on soil aggregate stability
- Effects of elevated [CO2] at the community level mediated by root symbionts
- Elevated CO2, rhizosphere processes, and soil organic matter decomposition
- Review of Literature on Climate Change and Forest Diseases of Western North America
- Morphology and tissue quality of seedling root systems of Pinus taeda and Pinus ponderosa as affected by varying CO2, temperature, and nitrogen
- Phosphorus supply and arbuscular mycorrhizas increase growth and net gas exchange responses of two Citrus spp. grown at elevated [CO2]
- Elevated CO2: Plant associated microorganisms and carbon sequestration
- Impact of elevated CO2 on the metabolic diversity of microbial communities in N-limited grass swards
- Interactions between atmospheric CO2 enrichment and soil fauna
- The response of soil microorganisms and roots to elevated CO2 and temperature in a terrestrial model ecosystem
- Mycorrhizal responses under elevated CO2 : combining fungal and plant perspectives
- Litter quality and decomposition in a CO2-enriched Mediterranean forest ecosystem
- Abundance and activity of nitrate reducers in an arable soil are more affected by temporal variation and soil depth than by elevated atmospheric [CO2].
- Impact of elevated CO2 on mycorrhizal associations and implications for plant growth
- A review of the possible impacts of climate change on forests in the humid tropics
- Competition for nitrogen between Pinus sylvestris and ectomycorrhizal fungi generates potential for negative feedback under elevated CO2
- Belowground interactive effects of elevated CO2, plant diversity and earthworms in grassland microcosms
- The interactive effects of elevated carbon dioxide and water table draw-down on carbon cycling in a Welsh ombrotrophic bog
Related papers
- Seasonal effects on the stoichiometry of microbes, primary production, and nutrient cycling
- Plant–herbivore–decomposer stoichiometric mismatches and nutrient cycling in ecosystems
- The importance of litter traits and decomposers for litter decomposition: A comparison of aquatic and terrestrial ecosystems within and across biomes
- Defining nutritional constraints on carbon cycling in boreal forests – towards a less `phytocentric' perspective
- Polystyrene size-dependent impacts on microbial decomposers and nutrient cycling in streams.
- Functional diversity of microbial decomposers facilitates plant coexistence in a plant–microbe–soil feedback model
- ECOLOGICAL STOICHIOMETRY, PRIMARY PRODUCER-DECOMPOSER INTERACTIONS, AND ECOSYSTEM PERSISTENCE
- Nutrient cycling efficiency explains the long-term effect of ecosystem engineers on primary production