AimsStudy of the changes in soil microbial biomass, enzyme activity and the microbial community structure in the rhizosphere of two contrasting maize lines differing in the nitrogen use efficiency (NUE).MethodsThe Lo5 and T250 inbred maize characterized by high and low NUE, respectively, were grown in rhizoboxes allowing precise sampling of rhizosphere and bulk soil and solution. We also determined microbial biomass, enzyme activities involved in the C, N, P and S cycles, and the microbial community structure using a phylogenetic group specific PCR-DGGE approach in the rhizosphere and bulk soil of both Lo5 and T250 maize lines.ResultsHigh NUE Lo5 maize induced faster inorganic N depletion in the rhizosphere and larger changes in microbial b...
This study was carried out to understand the interplay of plant Nitrogen Utilizing Efficiency (NUE) ...
This study was carried out to understand the interplay of plant Nitrogen Utilizing Efficiency (NEU) ...
Improving nitrogen (N) acquisition by crops from soil is essential to reduce fertilization rates whi...
Aims Study of the changes in soil microbial biomass,enzyme activity and the microbial community stru...
Aims: Study of the changes in soil microbial biomass, enzyme activity and the microbial community st...
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...
Study of the microbial expression profile in the rhizosphere of two contrasting maize lines, differi...
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 (...
Rhizospheric microbial composition plays an important role in plant growth and nutrient metabolism. ...
We studied the molecular diversity of β-glucosidase-encoding genes, microbial biomass, cellulase, N-...
We studied the molecular diversity of ß-glucosidaseencoding genes, microbial biomass, cellulase, N-a...
This study was carried out to understand the interplay of plant Nitrogen Utilizing Efficiency (NUE) ...
This study was carried out to understand the interplay of plant Nitrogen Utilizing Efficiency (NUE) ...
This study was carried out to understand the interplay of plant Nitrogen Utilizing Efficiency (NUE) ...
This study was carried out to understand the interplay of plant Nitrogen Utilizing Efficiency (NEU) ...
Improving nitrogen (N) acquisition by crops from soil is essential to reduce fertilization rates whi...
Aims Study of the changes in soil microbial biomass,enzyme activity and the microbial community stru...
Aims: Study of the changes in soil microbial biomass, enzyme activity and the microbial community st...
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...
Study of the microbial expression profile in the rhizosphere of two contrasting maize lines, differi...
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 (...
Rhizospheric microbial composition plays an important role in plant growth and nutrient metabolism. ...
We studied the molecular diversity of β-glucosidase-encoding genes, microbial biomass, cellulase, N-...
We studied the molecular diversity of ß-glucosidaseencoding genes, microbial biomass, cellulase, N-a...
This study was carried out to understand the interplay of plant Nitrogen Utilizing Efficiency (NUE) ...
This study was carried out to understand the interplay of plant Nitrogen Utilizing Efficiency (NUE) ...
This study was carried out to understand the interplay of plant Nitrogen Utilizing Efficiency (NUE) ...
This study was carried out to understand the interplay of plant Nitrogen Utilizing Efficiency (NEU) ...
Improving nitrogen (N) acquisition by crops from soil is essential to reduce fertilization rates whi...