Variations in soil microbial metabolism currently represent one of the greatest areas of uncertainty with regard to soil nutrient cycles and the control of terrestrial carbon (C) and nitrogen (N) loss and are poorly understood in agricultural ecosystems with intensive farming practices. In this study, extracellular enzymatic stoichiometry models and quantitative PCR techniques were used to examine microbial metabolic limitation and its relationship with N-cycling gene expression in semi-arid agricultural ecosystems considering four N fertilization levels (N 0, N 100, N 250, and N 400 kg N ha(-1)) and two agronomic strategies (film mulching and no mulching). Film mulching increased microbial C limitation (reflecting microbial C metabolism si...
Multiple co-occurring environmental changes are affecting soil nitrogen cycling processes, which are...
Similar to plant growth, soil carbon (C) cycling is constrained by the availability of nitrogen (N) ...
The nitrogen (N) cycle is an important part of earth's biogeochemical cycles and N is a critical ele...
Aim Ecoenzymatic stoichiometry provides a promising avenue for deciphering resource constraints on s...
The transformations of organic nitrogen to ammonium and nitrate are central processes in the interna...
Soil extracellular enzyme stoichiometry (EES), the ratio of extracellular enzyme activities (EEAs) r...
Variation in microbial metabolism poses one of the greatest current uncertainties in models of globa...
Extracellular enzymes are the major mediators of plant residue and organic matter decomposition in s...
<div><p>Background</p><p>Variation in microbial metabolism poses one of the greatest current uncerta...
Multiple co-occurring environmental changes are affecting soil nitrogen cycling processes, which are...
Microbial biomass turnover and the associated recycling of carbon (Cmic), nitrogen (Nmic) and phosph...
International audienceTo evaluate carbon (C), nitrogen (N), and phosphorus (P) dynamics during the d...
Labile carbon (C) inputs affect the soil carbon:nitrogen (C:N) ratio and microbial stoichiometric ho...
The measurement of potential enzymatic activities has been proposed as an efficient method to infer ...
Maintaining the stability of ecosystem functions to global change calls for a better understanding t...
Multiple co-occurring environmental changes are affecting soil nitrogen cycling processes, which are...
Similar to plant growth, soil carbon (C) cycling is constrained by the availability of nitrogen (N) ...
The nitrogen (N) cycle is an important part of earth's biogeochemical cycles and N is a critical ele...
Aim Ecoenzymatic stoichiometry provides a promising avenue for deciphering resource constraints on s...
The transformations of organic nitrogen to ammonium and nitrate are central processes in the interna...
Soil extracellular enzyme stoichiometry (EES), the ratio of extracellular enzyme activities (EEAs) r...
Variation in microbial metabolism poses one of the greatest current uncertainties in models of globa...
Extracellular enzymes are the major mediators of plant residue and organic matter decomposition in s...
<div><p>Background</p><p>Variation in microbial metabolism poses one of the greatest current uncerta...
Multiple co-occurring environmental changes are affecting soil nitrogen cycling processes, which are...
Microbial biomass turnover and the associated recycling of carbon (Cmic), nitrogen (Nmic) and phosph...
International audienceTo evaluate carbon (C), nitrogen (N), and phosphorus (P) dynamics during the d...
Labile carbon (C) inputs affect the soil carbon:nitrogen (C:N) ratio and microbial stoichiometric ho...
The measurement of potential enzymatic activities has been proposed as an efficient method to infer ...
Maintaining the stability of ecosystem functions to global change calls for a better understanding t...
Multiple co-occurring environmental changes are affecting soil nitrogen cycling processes, which are...
Similar to plant growth, soil carbon (C) cycling is constrained by the availability of nitrogen (N) ...
The nitrogen (N) cycle is an important part of earth's biogeochemical cycles and N is a critical ele...