Soil nitrogen (N) availability is critical for grassland functioning. However, human activities have increased the supply of biologically limiting nutrients, and changed the density and identity of mammalian herbivores. These anthropogenic changes may alter net soil N mineralization (soil net Nmin), that is, the net balance between N mineralization and immobilization, which could severely impact grassland structure and functioning. Yet, to date, little is known about how fertilization and herbivore removal individually, or jointly, affect soil net Nmin across a wide range of grasslands that vary in soil and climatic properties. Here we collected data from 22 grasslands on five continents, all part of a globally replicated experiment, to ass...
The intensification of land use constitutes one of the main drivers of global change and alters nutr...
Anthropogenic nutrient enrichment is driving global biodiversity decline and modifying ecosystem fun...
Human activities are transforming grassland biomass via changing climate, elemental nutrients, and h...
Soil nitrogen (N) availability is critical for grassland functioning. However, human activities have...
Grasslands are subject to considerable alteration due to human activities globally, including wides...
Grasslands have been subject to considerable alteration due to human activities globally, including ...
Grasslands are subject to considerable alteration due to human activities globally, including widesp...
Fertilisation experiments have demonstrated that nutrient availability is a key determinant of bioma...
Soil nitrogen mineralisation (Nmin), the conversion of organic into inorganic N, is important for p...
The consequences of land use intensification and climate warming on productivity, fates of fertilize...
The intensification of land use constitutes one of the main drivers of global change and alters nutr...
Anthropogenic nutrient enrichment is driving global biodiversity decline and modifying ecosystem fun...
Human activities are transforming grassland biomass via changing climate, elemental nutrients, and h...
Soil nitrogen (N) availability is critical for grassland functioning. However, human activities have...
Grasslands are subject to considerable alteration due to human activities globally, including wides...
Grasslands have been subject to considerable alteration due to human activities globally, including ...
Grasslands are subject to considerable alteration due to human activities globally, including widesp...
Fertilisation experiments have demonstrated that nutrient availability is a key determinant of bioma...
Soil nitrogen mineralisation (Nmin), the conversion of organic into inorganic N, is important for p...
The consequences of land use intensification and climate warming on productivity, fates of fertilize...
The intensification of land use constitutes one of the main drivers of global change and alters nutr...
Anthropogenic nutrient enrichment is driving global biodiversity decline and modifying ecosystem fun...
Human activities are transforming grassland biomass via changing climate, elemental nutrients, and h...