Microbial growth in soil is mostly limited by lack of carbon (C). However, adding fresh, C-rich litter can induce nitrogen (N) limitation. We studied the effect of alleviating C and N limitation in high-pH (> 8) soils, soils expected to favor bacterial over fungal growth. Nitrogen limitation was induced by incubating soils amended with C-rich substrate (starch or straw) for 4 weeks. Limiting nutrients and the effects of alleviating limitation were then studied by adding C (as glucose) or N (as NH4NO3) and measuring microbial growth and respiration after 4 d. In non-amended, C-limited soils, adding C but not N increased both microbial respiration and bacterial growth. In N-limited, substrate-amended soils, adding C increased respiration, whe...
We assessed whether the microbial biomass of an old-growth mixed-conifer forest soil was N limited b...
Mineral nitrogen (N) availability to heterotrophic micro-organisms is known to impact organic matter...
Elevated atmospheric CO2 has the potential to increase the production and alter the chemistry of org...
The extent and type of nutrient limitation will affect soil microorganism activity and may change th...
Application of C-rich plant residues can change the soil system from C-limitation for microbial grow...
Lack of carbon has been assumed to be the most common limiting factor for bacterial growth in soil, ...
Microbial carbon use efficiency (CUE), or the partitioning of assimilated C into growth or respirati...
Increasing nitrogen(N) deposition due to anthropogenic activities has become a significant global ch...
The effect of adding easily available and more complex carbon sources, with and without nitrogen, on...
Higher ecosystem nitrogen (N) inputs resulting from human activities often suppress soil microbial b...
Plant litter represents an important source of nutrients and energy for soil microorganisms, but wil...
Soil microbes are frequently limited by carbon (C), but also have a high phosphorus (P) requirement....
Soil pH is one of the most influential variables in soil, and is a powerful factor in influencing th...
Microbial carbon use efficiency (CUE) strongly influences the rate of soil organic carbon (SOC) form...
<p>Bacteria and fungi are important micro-organisms in the soil, but may differ in their impact on n...
We assessed whether the microbial biomass of an old-growth mixed-conifer forest soil was N limited b...
Mineral nitrogen (N) availability to heterotrophic micro-organisms is known to impact organic matter...
Elevated atmospheric CO2 has the potential to increase the production and alter the chemistry of org...
The extent and type of nutrient limitation will affect soil microorganism activity and may change th...
Application of C-rich plant residues can change the soil system from C-limitation for microbial grow...
Lack of carbon has been assumed to be the most common limiting factor for bacterial growth in soil, ...
Microbial carbon use efficiency (CUE), or the partitioning of assimilated C into growth or respirati...
Increasing nitrogen(N) deposition due to anthropogenic activities has become a significant global ch...
The effect of adding easily available and more complex carbon sources, with and without nitrogen, on...
Higher ecosystem nitrogen (N) inputs resulting from human activities often suppress soil microbial b...
Plant litter represents an important source of nutrients and energy for soil microorganisms, but wil...
Soil microbes are frequently limited by carbon (C), but also have a high phosphorus (P) requirement....
Soil pH is one of the most influential variables in soil, and is a powerful factor in influencing th...
Microbial carbon use efficiency (CUE) strongly influences the rate of soil organic carbon (SOC) form...
<p>Bacteria and fungi are important micro-organisms in the soil, but may differ in their impact on n...
We assessed whether the microbial biomass of an old-growth mixed-conifer forest soil was N limited b...
Mineral nitrogen (N) availability to heterotrophic micro-organisms is known to impact organic matter...
Elevated atmospheric CO2 has the potential to increase the production and alter the chemistry of org...