TY - JOUR
T1 - Comparative effect of inorganic N on plant growth and N-2 fixation of ten legume crops: towards a better understanding of the differential response among species
AU - Guinet, Maé
AU - Nicolardot, Bernard
AU - Revellin, Cécile
AU - Durey, Vincent
AU - Voisin, Anne-Sophie
PY - 2018
Y1 - 2018
N2 - AimsA better understanding of how plant growth, N nutrition and symbiotic nitrogen fixation (SNF) are influenced by soil inorganic N availability, for a wide range of legume species, is crucial to optimise legume productivity, N-2 fixation, while limiting environmental risks such as N leaching.MethodsA comparative analysis was performed for ten legume crops, grown in a field experiment and supplied with four N fertiliser rates. Dry matter, N concentration and SNF were measured. In parallel, root elongation rates were studied in a greenhouse experiment.ResultsFor most species, N fertilisation had little effect on plant growth and N accumulation. SNF was reduced by soil inorganic N available at sowing but with large differences in the magnitude of the response among species. The response varied according to plant N requirements for growth and plant ability to retrieve inorganic N. Accordingly, root lateral expansion rate measured in RhizoTubes was highly correlated with plant ability to retrieve inorganic N measured in the field experiment.ConclusionCombining SNF response to soil inorganic N, shoot N and plant ability to retrieve inorganic N, allowed a robust evaluation of differential response to soil inorganic N among a wide range of legume species.
AB - AimsA better understanding of how plant growth, N nutrition and symbiotic nitrogen fixation (SNF) are influenced by soil inorganic N availability, for a wide range of legume species, is crucial to optimise legume productivity, N-2 fixation, while limiting environmental risks such as N leaching.MethodsA comparative analysis was performed for ten legume crops, grown in a field experiment and supplied with four N fertiliser rates. Dry matter, N concentration and SNF were measured. In parallel, root elongation rates were studied in a greenhouse experiment.ResultsFor most species, N fertilisation had little effect on plant growth and N accumulation. SNF was reduced by soil inorganic N available at sowing but with large differences in the magnitude of the response among species. The response varied according to plant N requirements for growth and plant ability to retrieve inorganic N. Accordingly, root lateral expansion rate measured in RhizoTubes was highly correlated with plant ability to retrieve inorganic N measured in the field experiment.ConclusionCombining SNF response to soil inorganic N, shoot N and plant ability to retrieve inorganic N, allowed a robust evaluation of differential response to soil inorganic N among a wide range of legume species.
KW - Grain legumes
KW - Plant growth
KW - Nitrogen nutrition
KW - Symbiotic N-2 fixation
KW - Nitrogen use efficiency
KW - Root soil exploration
KW - Grain legumes
KW - Plant growth
KW - Nitrogen nutrition
KW - Symbiotic N-2 fixation
KW - Nitrogen use efficiency
KW - Root soil exploration
UR - https://res.slu.se/id/publ/96989
U2 - 10.1007/s11104-018-3788-1
DO - 10.1007/s11104-018-3788-1
M3 - Journal article
SN - 0032-079X
VL - 432
SP - 207
EP - 227
JO - Plant and Soil
JF - Plant and Soil
IS - 1-2
ER -