A global analysis of root distributions for terrestrial biomes.
about
Large-scale sequestration of atmospheric carbon via plant roots in natural and agricultural ecosystems: why and howWalter's two-layer hypothesis revisited: back to the roots!Why Be a Shrub? A Basic Model and Hypotheses for the Adaptive Values of a Common Growth Form.Traceable calibration, performance metrics, and uncertainty estimates of minirhizotron digital imagery for fine-root measurementsPlant-derived compounds stimulate the decomposition of organic matter in arctic permafrost soilsConstraining the role of early land plants in Palaeozoic weathering and global coolingComparing the effect of naturally restored forest and grassland on carbon sequestration and its vertical distribution in the Chinese Loess PlateauBreeding crop plants with deep roots: their role in sustainable carbon, nutrient and water sequestrationEvaluating ecohydrological theories of woody root distribution in the Kalahari.Climate warming and precipitation redistribution modify tree-grass interactions and tree species establishment in a warm-temperate savanna.Not all droughts are created equal: translating meteorological drought into woody plant mortality.Patterns of plant biomass allocation in temperate grasslands across a 2500-km transect in northern ChinaDisentangling root responses to climate change in a semiarid grassland.Confronting terrestrial biosphere models with forest inventory data.Contrasting above- and belowground sensitivity of three Great Plains grasslands to altered rainfall regimes.Differentiating Wheat Genotypes by Bayesian Hierarchical Nonlinear Mixed Modeling of Wheat Root DensityThe unseen iceberg: plant roots in arctic tundra.Temperature drives global patterns in forest biomass distribution in leaves, stems, and roots.Root structural and functional dynamics in terrestrial biosphere models--evaluation and recommendations.Soil organic carbon across scales.Projected Future Vegetation Changes for the Northwest United States and Southwest Canada at a Fine Spatial Resolution Using a Dynamic Global Vegetation Model.High-resolution isotope measurements resolve rapid ecohydrological dynamics at the soil-plant interface.Conventional intensive logging promotes loss of organic carbon from the mineral soil.Pragmatic hydraulic theory predicts stomatal responses to climatic water deficits.More than carbon sequestration: Biophysical climate benefits of restored savanna woodlandsDisentangling the Effects of Precipitation Amount and Frequency on the Performance of 14 Grassland Species.Long-term warming effects on root morphology, root mass distribution, and microbial activity in two dry tundra plant communities in northern Sweden.Climate change-induced vegetation shifts lead to more ecological droughts despite projected rainfall increases in many global temperate drylands.Ecosystem carbon density and allocation across a chronosequence of longleaf pine forests.Modeling patterns of nonlinearity in ecosystem responses to temperature, CO2, and precipitation changes.Climate change reduces extent of temperate drylands and intensifies drought in deep soilsA method for extracting plant roots from soil which facilitates rapid sample processing without compromising measurement accuracy.Root growth models: towards a new generation of continuous approaches.Aboveground overyielding in grassland mixtures is associated with reduced biomass partitioning to belowground organs.Co-assessment of biomass and soil organic carbon stocks in a future reservoir area located in Southeast Asia.Shifts in plant respiration and carbon use efficiency at a large-scale drought experiment in the eastern Amazon.Climate warming and biomass accumulation of terrestrial plants: a meta-analysis.The carbon balance of Africa: synthesis of recent research studies.Linking Populus euphratica hydraulic redistribution to diversity assembly in the arid desert zone of Xinjiang, ChinaLeaf nitrogen and phosphorus of temperate desert plants in response to climate and soil nutrient availability
P2860
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P2860
A global analysis of root distributions for terrestrial biomes.
description
1996 nî lūn-bûn
@nan
1996年の論文
@ja
1996年論文
@yue
1996年論文
@zh-hant
1996年論文
@zh-hk
1996年論文
@zh-mo
1996年論文
@zh-tw
1996年论文
@wuu
1996年论文
@zh
1996年论文
@zh-cn
name
A global analysis of root distributions for terrestrial biomes.
@en
A global analysis of root distributions for terrestrial biomes.
@nl
type
label
A global analysis of root distributions for terrestrial biomes.
@en
A global analysis of root distributions for terrestrial biomes.
@nl
prefLabel
A global analysis of root distributions for terrestrial biomes.
@en
A global analysis of root distributions for terrestrial biomes.
@nl
P2093
P356
P1433
P1476
A global analysis of root distributions for terrestrial biomes.
@en
P2093
E D Schulze
J Canadell
J R Ehleringer
R B Jackson
P2888
P304
P356
10.1007/BF00333714
P407
P577
1996-11-01T00:00:00Z
P698
P819
1996Oecol.108..389J