1. To ascertain the influence of different plant species on nitrogen (N) cycling, we performed a long-term garden experiment with six grasses and five dicots with different potential growth rates, that are adapted to habitats with different nutrient supplies. We measured in situ N mineralization and nitrification of the soil under monocultures of each species during the fourth year of the experiment. 2. We focused on the effects of the different species on (i) annual net N mineralization; (ii) the seasonal pattern of N mineralization; and (iii) the fraction of the total N mineralization that is nitrified. Our hypothesis was that plant species of nutrient-rich habitats would enhance the N mineralization compared with species of nutrient-poor...
The effects of global environmental changes on soil nitrogen (N) pools and fluxes have consequences ...
We tested the hypothesis that N enrichment modifies plant–soil feedback relationships, resulting in ...
Plants modify the nitrogen (N) cycle in soil through plant N uptake, root exudation, and nitrificati...
1. To ascertain the influence of different plant species on nitrogen (N) cycling, we performed a lon...
In many ecosystems, the nutrient supply is an important factor that determines plant species composi...
We tested the hypothesis that plants only stimulate net mineralization of N when intense competition...
This experiment was designed to determine the relationships between plant traits, successional statu...
This experiment was designed to determine the relationships between plant traits, successional statu...
Despite the topic of soil nitrogen (N) mineralization being well-studied, very few studies have addr...
Despite the topic of soil nitrogen (N) mineralization being well-studied, very few studies have addr...
Abstract Net N mineralization rates were measured in heathlands still dominated by ericaceous dwarf ...
Shifts in plant community structure in shrub and grass-dominated ecosystems are occurring over large...
Soil nitrification is a key process in regulating the relative availability of the various inorganic...
This experiment was designed to determine the relationships between plant traits, successional statu...
This experiment was designed to determine the relationships between plant traits, successional statu...
The effects of global environmental changes on soil nitrogen (N) pools and fluxes have consequences ...
We tested the hypothesis that N enrichment modifies plant–soil feedback relationships, resulting in ...
Plants modify the nitrogen (N) cycle in soil through plant N uptake, root exudation, and nitrificati...
1. To ascertain the influence of different plant species on nitrogen (N) cycling, we performed a lon...
In many ecosystems, the nutrient supply is an important factor that determines plant species composi...
We tested the hypothesis that plants only stimulate net mineralization of N when intense competition...
This experiment was designed to determine the relationships between plant traits, successional statu...
This experiment was designed to determine the relationships between plant traits, successional statu...
Despite the topic of soil nitrogen (N) mineralization being well-studied, very few studies have addr...
Despite the topic of soil nitrogen (N) mineralization being well-studied, very few studies have addr...
Abstract Net N mineralization rates were measured in heathlands still dominated by ericaceous dwarf ...
Shifts in plant community structure in shrub and grass-dominated ecosystems are occurring over large...
Soil nitrification is a key process in regulating the relative availability of the various inorganic...
This experiment was designed to determine the relationships between plant traits, successional statu...
This experiment was designed to determine the relationships between plant traits, successional statu...
The effects of global environmental changes on soil nitrogen (N) pools and fluxes have consequences ...
We tested the hypothesis that N enrichment modifies plant–soil feedback relationships, resulting in ...
Plants modify the nitrogen (N) cycle in soil through plant N uptake, root exudation, and nitrificati...