Plant nutrient concentrations and stoichiometry drive fundamental ecosystem processes, with important implications for primary production, diversity, and ecosystem sustainability. While a range of evidence exists regarding how plant nutrients vary across spatial scales, our understanding of their temporal variation remains less well understood. Nevertheless, we know nutrients regulate plant function across time, and that important temporal controls could strongly interact with environmental change. Here, we report results from a 3-year assessment of inter-annual changes of foliar nitrogen (N) and phosphorus (P) concentrations and stoichiometry in three dominant grasses in response to N deposition and prescribed fire in a temperate steppe of...
Exploring the controls over leaf nitrogen (N) and phosphorus (P) stoichiometry is critical to unders...
Plant carbon (C) and nitrogen (N) stoichiometry play an important role in the maintenance of ecosyst...
Background and aims: Variations in plant nitrogen (N) and phosphorus (P) concentrations and ratios h...
The dynamics of leaf nitrogen (N) and phosphorus (P) have been intensively explored in short-term ex...
The dynamics of leaf nitrogen (N) and phosphorus (P) have been intensively explored in short-term ex...
Plant nitrogen (N) use strategies have great implications for primary production and ecosystem nutri...
Aims: The stoichiomernic characteristics of plant communities are important controller for several f...
Abstract Nitrogen (N) fertilization, as a grassland management strategy, has been widely used to imp...
Aims Uncovering the importance of soil and plant characteristics in driving the legacy effects of ni...
Atmospheric nitrogen (N) deposition has rapidly increased during the last few decades; however, the ...
Concentrations of leaf nitrogen (N) and phosphorus (P) are two key traits of plants for ecosystem fu...
Aims: The responses of functional structures in plant communities to global change drivers is predic...
Leaf chemistry is important in predicting the functioning and dynamics of ecosystems. As two key tra...
Aims Global change may cause unparalleled supplies of soil nutrients and further lead to stoichiomet...
Background and aims: Nitrogen (N) deposition greatly influences ecosystem processes through the alte...
Exploring the controls over leaf nitrogen (N) and phosphorus (P) stoichiometry is critical to unders...
Plant carbon (C) and nitrogen (N) stoichiometry play an important role in the maintenance of ecosyst...
Background and aims: Variations in plant nitrogen (N) and phosphorus (P) concentrations and ratios h...
The dynamics of leaf nitrogen (N) and phosphorus (P) have been intensively explored in short-term ex...
The dynamics of leaf nitrogen (N) and phosphorus (P) have been intensively explored in short-term ex...
Plant nitrogen (N) use strategies have great implications for primary production and ecosystem nutri...
Aims: The stoichiomernic characteristics of plant communities are important controller for several f...
Abstract Nitrogen (N) fertilization, as a grassland management strategy, has been widely used to imp...
Aims Uncovering the importance of soil and plant characteristics in driving the legacy effects of ni...
Atmospheric nitrogen (N) deposition has rapidly increased during the last few decades; however, the ...
Concentrations of leaf nitrogen (N) and phosphorus (P) are two key traits of plants for ecosystem fu...
Aims: The responses of functional structures in plant communities to global change drivers is predic...
Leaf chemistry is important in predicting the functioning and dynamics of ecosystems. As two key tra...
Aims Global change may cause unparalleled supplies of soil nutrients and further lead to stoichiomet...
Background and aims: Nitrogen (N) deposition greatly influences ecosystem processes through the alte...
Exploring the controls over leaf nitrogen (N) and phosphorus (P) stoichiometry is critical to unders...
Plant carbon (C) and nitrogen (N) stoichiometry play an important role in the maintenance of ecosyst...
Background and aims: Variations in plant nitrogen (N) and phosphorus (P) concentrations and ratios h...