Background and aims: Nitrogen (N) deposition greatly influences ecosystem processes through the alteration of plant nutrition; however, there is limited understanding about the effects of phosphorus (P) inputs, especially within the backdrop of N deposition. Methods: Here we investigated the plant stoichiometric responses to P addition under both ambient conditions and with N addition in a temperate grassland in Inner Mongolia over a two-year period. Results: The effects of P addition on foliar nutrition and stoichiometric ratios were highly dependent on the presence of N supply, in that P addition showed no significant impacts on foliar N or P concentrations (or pools in community biomass) or N:P under ambient N conditions, but enhanced fo...
Phosphorus is an essential macronutrient for all living plants and plant production. Simultaneously,...
Aims: The stoichiomernic characteristics of plant communities are important controller for several f...
Increased N deposition may change species composition in grassland communities by shifting them to P...
Although many studies have demonstrated that N deposition decreases biodiversity and alters ecosyste...
Nitrogen (N) enrichment has great consequences on several fundamental ecological processes through i...
The dynamics of leaf nitrogen (N) and phosphorus (P) have been intensively explored in short-term ex...
Background and aims: The increasing deposition of atmospheric nitrogen (N) due to anthropogenic acti...
The dynamics of leaf nitrogen (N) and phosphorus (P) have been intensively explored in short-term ex...
N and P have different eutrophication effects on grassland communities, yet the underlying mechanism...
Abstract Background Changes in foliar nitrogen (N) and phosphorus (P) stoichiometry play important r...
Increased N deposition may change species composition in grassland communities by shifting them to P...
Eutrophication of Nitrogen (N) and Phosphorus (P) is threatening the functioning and biodiversity of...
Increased N deposition may change species composition in grassland communities by shifting them to P...
BACKGROUND: Although community structure and species richness are known to respond to nitrogen ferti...
Aims Uncovering the importance of soil and plant characteristics in driving the legacy effects of ni...
Phosphorus is an essential macronutrient for all living plants and plant production. Simultaneously,...
Aims: The stoichiomernic characteristics of plant communities are important controller for several f...
Increased N deposition may change species composition in grassland communities by shifting them to P...
Although many studies have demonstrated that N deposition decreases biodiversity and alters ecosyste...
Nitrogen (N) enrichment has great consequences on several fundamental ecological processes through i...
The dynamics of leaf nitrogen (N) and phosphorus (P) have been intensively explored in short-term ex...
Background and aims: The increasing deposition of atmospheric nitrogen (N) due to anthropogenic acti...
The dynamics of leaf nitrogen (N) and phosphorus (P) have been intensively explored in short-term ex...
N and P have different eutrophication effects on grassland communities, yet the underlying mechanism...
Abstract Background Changes in foliar nitrogen (N) and phosphorus (P) stoichiometry play important r...
Increased N deposition may change species composition in grassland communities by shifting them to P...
Eutrophication of Nitrogen (N) and Phosphorus (P) is threatening the functioning and biodiversity of...
Increased N deposition may change species composition in grassland communities by shifting them to P...
BACKGROUND: Although community structure and species richness are known to respond to nitrogen ferti...
Aims Uncovering the importance of soil and plant characteristics in driving the legacy effects of ni...
Phosphorus is an essential macronutrient for all living plants and plant production. Simultaneously,...
Aims: The stoichiomernic characteristics of plant communities are important controller for several f...
Increased N deposition may change species composition in grassland communities by shifting them to P...