Plant rhizospheric N processes: what we don't know and why we should care.
about
Advances in 15N-tracing experiments: new labelling and data analysis approaches.Fungal communities influence root exudation rates in pine seedlings.A mechanistic study of plant and microbial controls over R* for nitrogen in an annual grasslandTightly-Coupled Plant-Soil Nitrogen Cycling: Comparison of Organic Farms across an Agricultural Landscape.Nitrogen Fertilization Effects on Productivity and Nitrogen Loss in Three Grass-Based Perennial Bioenergy Cropping Systems.Plant root distributions and nitrogen uptake predicted by a hypothesis of optimal root foraging.A paradigm shift towards low-nitrifying production systems: the role of biological nitrification inhibition (BNI).Synthesis and modeling perspectives of rhizosphere priming.Litterfall 15N abundance indicates declining soil nitrogen availability in a free-air CO2 enrichment experiment.Do evergreen and deciduous trees have different effects on net N mineralization in soil?Plant-microbial competition for nitrogen increases microbial activities and carbon loss in invaded soils.Plant traits related to nitrogen uptake influence plant-microbe competition.Rhizosphere stoichiometry: are C : N : P ratios of plants, soils, and enzymes conserved at the plant species-level?Quantifying the contribution of mass flow to nitrogen acquisition by an individual plant root.Differential responses of native and exotic coastal sage scrub plant species to N additions and the soil microbial communityComparing the use of leaf and soil analysis as N and P availability indices in a wildfire chronosequenceSpatial pattern and variability in soil N and P availability under the influence of two dominant species in a pine forestRoot carbon inputs to the rhizosphere stimulate extracellular enzyme activity and increase nitrogen availability in temperate forest soilsCarbon and nitrogen dynamics during forest stand development: a global synthesisTerrestrial denitrification: challenges and opportunitiesC and N allocation in soil under ryegrass and alfalfa estimated by 13C and 15N labelling
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Plant rhizospheric N processes: what we don't know and why we should care.
description
article científic
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article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
@tr
scientific article published on June 2009
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Plant rhizospheric N processes: what we don't know and why we should care.
@en
Plant rhizospheric N processes: what we don't know and why we should care.
@nl
type
label
Plant rhizospheric N processes: what we don't know and why we should care.
@en
Plant rhizospheric N processes: what we don't know and why we should care.
@nl
prefLabel
Plant rhizospheric N processes: what we don't know and why we should care.
@en
Plant rhizospheric N processes: what we don't know and why we should care.
@nl
P2860
P356
P1433
P1476
Plant rhizospheric N processes: what we don't know and why we should care.
@en
P2093
Douglas A Frank
Peter M Groffman
P2860
P304
P356
10.1890/08-0789.1
P407
P577
2009-06-01T00:00:00Z