Environmental stress is the main cause of the decline of species diversity in low-productive fen meadows in the Netherlands. Attempts to restore species diverse fen meadows e.g. by sod cutting frequently fail. We supposed that unsuccessful efforts are due to ignoring the impact of environmental stress on the performance of soil biota, which play a key role in N-immobilization and keeping available-N for primary production low. We investigated both pristine and degraded natural sites and successfully and unsuccessfully restored sites of poor and rich fen meadows. We determined plant species composition, soil chemical properties, N-pools in soil biota, N-mineralization rates, and N-fluxes. In pristine rich and poor fen meadows, mineral-N was ...
1.The storage of carbon (C) and nitrogen (N) in soil is important ecosystem functions. Grassland bio...
Recent increases in the atmospheric deposition of biologically active nitrogen (N), resulting from h...
Increasing plant species richness decreases soil NO3- concentrations in experimental plant mixtures,...
Environmental stress is the main cause of the decline of species diversity in low-productive fen mea...
Leaching losses of nitrogen (N) from soil and atmospheric N deposition have led to widespread change...
Aim: High levels of nitrogen deposition have been responsible for important losses of plant species ...
Alarmed by the worldwide loss of biodiversity, several international initiatives are undertaken to g...
The grasslands on slopes in Southern Limburg belong to the most species-rich grasslands in the Nethe...
Higher plant diversity reduces nitrate leaching by complementary resource use, while its relation to...
Aim: High levels of nitrogen deposition have been responsible for important losses of plant species ...
Nitrogen (N) availability in grasslands varies with agricultural land use. Traditional management re...
1. In Europe, grassland agriculture is one of the dominant land uses. A major aim of European agri-e...
As a consequence of changes in the traditional agricultural system, lowproductive, species rich gras...
Reducing decomposition and mineralization of organic matter by increasing groundwater levels is a co...
Biodiversity is thought to be essential for ecosystem stability, function and long-term sustainabili...
1.The storage of carbon (C) and nitrogen (N) in soil is important ecosystem functions. Grassland bio...
Recent increases in the atmospheric deposition of biologically active nitrogen (N), resulting from h...
Increasing plant species richness decreases soil NO3- concentrations in experimental plant mixtures,...
Environmental stress is the main cause of the decline of species diversity in low-productive fen mea...
Leaching losses of nitrogen (N) from soil and atmospheric N deposition have led to widespread change...
Aim: High levels of nitrogen deposition have been responsible for important losses of plant species ...
Alarmed by the worldwide loss of biodiversity, several international initiatives are undertaken to g...
The grasslands on slopes in Southern Limburg belong to the most species-rich grasslands in the Nethe...
Higher plant diversity reduces nitrate leaching by complementary resource use, while its relation to...
Aim: High levels of nitrogen deposition have been responsible for important losses of plant species ...
Nitrogen (N) availability in grasslands varies with agricultural land use. Traditional management re...
1. In Europe, grassland agriculture is one of the dominant land uses. A major aim of European agri-e...
As a consequence of changes in the traditional agricultural system, lowproductive, species rich gras...
Reducing decomposition and mineralization of organic matter by increasing groundwater levels is a co...
Biodiversity is thought to be essential for ecosystem stability, function and long-term sustainabili...
1.The storage of carbon (C) and nitrogen (N) in soil is important ecosystem functions. Grassland bio...
Recent increases in the atmospheric deposition of biologically active nitrogen (N), resulting from h...
Increasing plant species richness decreases soil NO3- concentrations in experimental plant mixtures,...