It is generally accepted that N transformations in natural terrestrial ecosystems are regulated by: (1) climatological and geomorphological conditions; (2) soil physics and chemistry; and (3) quality and quantity of soil organic matter. Consequently, spatial variability of N transformations within experimental plots have been related to fine-scale heterogeneity of these regulating factors, e.g. spatial differences in micro-climate. However, it has also been argued that spatial differences in the composition of the microbial community, which can be the result of stochastic events, may be an important source of spatial heterogeneity of decomposition processes. The aim of our study was to detect to what extent net N mineralization and nitrific...
Investigating the response of soil microbial communities to nitrogen (N) deposition is critical to u...
A laboratory experiment was designed to challenge the idea that the ON ratio of forest soils may con...
Soil microorganisms play fundamental roles in cycling of soil carbon, nitrogen, and other nutrients,...
The long-term reference watershed (WS4), at Fernow Experimental Forest, West Virginia, displays symp...
<p>Bacteria and fungi are important micro-organisms in the soil, but may differ in their impact on n...
The long-term reference watershed (WS4), at Fernow Experimental Forest, West Virginia, displays symp...
Nitrification occurs slowly in many acid Scots pine forest soils. We examined if bacterial community...
To explore whether litter quality could alter differences in N-dynamics between soil types, we compa...
A field experiment was designed with the objective to reveal the interactions between soil moisture,...
To explore whether litter quality could alter differences in N-dynamics between soil types, we compa...
High spatial heterogeneity in nitrification potentials has been observed in the top soils of a pine ...
Forest soils show a great degree of temporal and spatial variation of nitrogen mineralization. The a...
The microbial groups of nitrogen fixers, ammonia oxidizers, and denitrifiers largely drive the inorg...
The microbial groups of nitrogen fixers, ammonia oxidizers, and denitrifiers largely drive the inorg...
Seasonal dynamics of N-mineralization and the size of the viable community of nitrifying bacteria we...
Investigating the response of soil microbial communities to nitrogen (N) deposition is critical to u...
A laboratory experiment was designed to challenge the idea that the ON ratio of forest soils may con...
Soil microorganisms play fundamental roles in cycling of soil carbon, nitrogen, and other nutrients,...
The long-term reference watershed (WS4), at Fernow Experimental Forest, West Virginia, displays symp...
<p>Bacteria and fungi are important micro-organisms in the soil, but may differ in their impact on n...
The long-term reference watershed (WS4), at Fernow Experimental Forest, West Virginia, displays symp...
Nitrification occurs slowly in many acid Scots pine forest soils. We examined if bacterial community...
To explore whether litter quality could alter differences in N-dynamics between soil types, we compa...
A field experiment was designed with the objective to reveal the interactions between soil moisture,...
To explore whether litter quality could alter differences in N-dynamics between soil types, we compa...
High spatial heterogeneity in nitrification potentials has been observed in the top soils of a pine ...
Forest soils show a great degree of temporal and spatial variation of nitrogen mineralization. The a...
The microbial groups of nitrogen fixers, ammonia oxidizers, and denitrifiers largely drive the inorg...
The microbial groups of nitrogen fixers, ammonia oxidizers, and denitrifiers largely drive the inorg...
Seasonal dynamics of N-mineralization and the size of the viable community of nitrifying bacteria we...
Investigating the response of soil microbial communities to nitrogen (N) deposition is critical to u...
A laboratory experiment was designed to challenge the idea that the ON ratio of forest soils may con...
Soil microorganisms play fundamental roles in cycling of soil carbon, nitrogen, and other nutrients,...