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Uptake of organic nitrogen by plants

New Phytologist · 2009 · Vol. 182(1) · pp. 31–48
Torgny NäsholmKnut KiellandUlrika Ganeteg

Abstract

Languishing for many years in the shadow of plant inorganic nitrogen (N) nutrition research, studies of organic N uptake have attracted increased attention during the last decade. The capacity of plants to acquire organic N, demonstrated in laboratory and field settings, has thereby been well established. Even so, the ecological significance of organic N uptake for plant N nutrition is still a matter of discussion. Several lines of evidence suggest that plants growing in various ecosystems may access organic N species. Many soils display amino acid concentrations similar to, or higher than, those of inorganic N, mainly as a result of rapid hydrolysis of soil proteins. Transporters mediating amino acid uptake have been identified both in mycorrhizal fungi and in plant roots. Studies of endogenous metabolism of absorbed amino acids suggest that L- but not D-enantiomers are efficiently utilized. Dual labelled amino acids supplied to soil have provided strong evidence for plant uptake of organic N in the field but have failed to provide information on the quantitative importance of this process. Thus, direct evidence that organic N contributes significantly to plant N nutrition is still lacking. Recent progress in our understanding of the mechanisms underlying plant organic N uptake may open new avenues for the exploration of this subject.

Plant nutrient uptake and metabolismLegume Nitrogen Fixing SymbiosisSoil Carbon and Nitrogen DynamicsAmino acidPlant nutritionNitrogenOrganic matterOrganic acidSoil organic matterEnvironmental chemistryMetabolismBiologyChemistry

MeSH terms

Amino AcidsNitrogenOrganic ChemicalsPlantsSoilMembrane Transport Proteins
Citations
1,165
FWCI
72.07
field-weighted impact
References
192
Percentile
100%
vs. same field & year
Citations per year
References
Root Nitrogen Acquisition and Assimilation
Plant and Soil · 2005 · 690 citations
Mycorrhizas in ecosystems
Cellular and Molecular Life Sciences · 1991 · 1,745 citations
HUMAN ALTERATION OF THE GLOBAL NITROGEN CYCLE: SOURCES AND CONSEQUENCES
Ecological Applications · 1997 · 5,416 citations
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