Aim: The rate of nitrate (NO3 −) uptake and changes in rhizosphere properties were studied growing seedlings of two maize inbred lines differing in nitrogen use efficiency (NUE) in rhizoboxes. Results: Changes in NO3 − uptake rates occurred in response to anion addition (induction) in seedlings grown both in hydroponic culture and in soil in rhizoboxes. The characterization of root exudate composition showed a line-specific metabolite profile, which was also affected by NO3 − availability. The induction affected respiration, nitrification, ammonification and enzyme activities of the rhizosphere. Furthermore, the composition of rhizosphere bacterial communities of the two maize lines differed suggesting the selective capacity of plants. Conc...
Study of the microbial expression profile in the rhizosphere of two contrasting maize lines, differi...
AimsStudy of the changes in soil microbial biomass, enzyme activity and the microbial community stru...
Improving nitrogen (N) acquisition by crops from soil is essential to reduce fertilization rates whi...
Aim: The rate of nitrate (NO3 −) uptake and changes in rhizosphere properties were studied growing s...
Aim The rate of nitrate (NO3−) uptake and changes in rhizosphere properties were studied growing see...
The rate of nitrate (NO3 (-)) uptake and changes in rhizosphere properties were studied growing seed...
We studied how the Lo5 and T250 maize lines, characterized by high and low nitrogen use efficiency (...
We studied how the Lo5 and T250 maize lines, characterized by high and low nitrogen use efficiency (...
Aims: Study of the changes in soil microbial biomass, enzyme activity and the microbial community st...
Aims Study of the changes in soil microbial biomass,enzyme activity and the microbial community stru...
Improving nitrogen (N) acquisition by crops from soil is essential to reduce fertilization rates whi...
Improving nitrogen (N) acquisition by crops from soil is essential to reduce fertilization rates whi...
Results: High NUE Lo5 maize induced faster inorganic N depletion in the rhizosphere and larger chang...
Results: High NUE Lo5 maize induced faster inorganic N depletion in the rhizosphere and larger chang...
Improving nitrogen (N) acquisition by crops from soil is essential to reduce fertilization rates whi...
Study of the microbial expression profile in the rhizosphere of two contrasting maize lines, differi...
AimsStudy of the changes in soil microbial biomass, enzyme activity and the microbial community stru...
Improving nitrogen (N) acquisition by crops from soil is essential to reduce fertilization rates whi...
Aim: The rate of nitrate (NO3 −) uptake and changes in rhizosphere properties were studied growing s...
Aim The rate of nitrate (NO3−) uptake and changes in rhizosphere properties were studied growing see...
The rate of nitrate (NO3 (-)) uptake and changes in rhizosphere properties were studied growing seed...
We studied how the Lo5 and T250 maize lines, characterized by high and low nitrogen use efficiency (...
We studied how the Lo5 and T250 maize lines, characterized by high and low nitrogen use efficiency (...
Aims: Study of the changes in soil microbial biomass, enzyme activity and the microbial community st...
Aims Study of the changes in soil microbial biomass,enzyme activity and the microbial community stru...
Improving nitrogen (N) acquisition by crops from soil is essential to reduce fertilization rates whi...
Improving nitrogen (N) acquisition by crops from soil is essential to reduce fertilization rates whi...
Results: High NUE Lo5 maize induced faster inorganic N depletion in the rhizosphere and larger chang...
Results: High NUE Lo5 maize induced faster inorganic N depletion in the rhizosphere and larger chang...
Improving nitrogen (N) acquisition by crops from soil is essential to reduce fertilization rates whi...
Study of the microbial expression profile in the rhizosphere of two contrasting maize lines, differi...
AimsStudy of the changes in soil microbial biomass, enzyme activity and the microbial community stru...
Improving nitrogen (N) acquisition by crops from soil is essential to reduce fertilization rates whi...