The dynamics of leaf nitrogen (N) and phosphorus (P) have been intensively explored in short-term experiments, but rarely at longer timescales. Here, we investigated leaf N : P stoichiometry over a 27-year interval in an Inner Mongolia grassland by comparing leaf N : P concentration of 2006 with that of 1979. Across 80 species, both leaf N and P increased, but the increase in leaf N lagged behind that of leaf P, leading to a significant decrease in the N : P ratio. These changes in leaf N : P stoichiometry varied among functional groups. For leaf N, grasses increased, woody species tended to increase, whereas forbs showed no change. Unlike leaf N, leaf P of grasses and forbs increased, whereas woody species showed no change. Such changes ma...
Although many studies have demonstrated that N deposition decreases biodiversity and alters ecosyste...
Leaf chemistry is important in predicting the functioning and dynamics of ecosystems. As two key tra...
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...
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: nitrogen: phosphorus (C:N:P) ratios are powerful indicators of diverse ecological proc...
Plant nutrient concentrations and stoichiometry drive fundamental ecosystem processes, with importan...
Questions Leaf nitrogen (N), phosphorus (P) concentrations and N : P ratio have been extensively stu...
Leaf N and P stoichiometry covaries with many aspects of plant biology, yet the drivers of this trai...
Aims Uncovering the importance of soil and plant characteristics in driving the legacy effects of ni...
Abstract: Aims Plant stoichiometry is known to influence ecological processes and element cycles in ...
N and P have different eutrophication effects on grassland communities, yet the underlying mechanism...
Stoichiometry of leaf N and P is a characteristic of plant to adapt to environment, and can provide ...
Ecological stoichiometry suggests that plant Nitrogen (N)-to-Phosphorus (P) ratios respond to change...
Although many studies have demonstrated that N deposition decreases biodiversity and alters ecosyste...
Leaf chemistry is important in predicting the functioning and dynamics of ecosystems. As two key tra...
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...
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: nitrogen: phosphorus (C:N:P) ratios are powerful indicators of diverse ecological proc...
Plant nutrient concentrations and stoichiometry drive fundamental ecosystem processes, with importan...
Questions Leaf nitrogen (N), phosphorus (P) concentrations and N : P ratio have been extensively stu...
Leaf N and P stoichiometry covaries with many aspects of plant biology, yet the drivers of this trai...
Aims Uncovering the importance of soil and plant characteristics in driving the legacy effects of ni...
Abstract: Aims Plant stoichiometry is known to influence ecological processes and element cycles in ...
N and P have different eutrophication effects on grassland communities, yet the underlying mechanism...
Stoichiometry of leaf N and P is a characteristic of plant to adapt to environment, and can provide ...
Ecological stoichiometry suggests that plant Nitrogen (N)-to-Phosphorus (P) ratios respond to change...
Although many studies have demonstrated that N deposition decreases biodiversity and alters ecosyste...
Leaf chemistry is important in predicting the functioning and dynamics of ecosystems. As two key tra...
Background and aims: Variations in plant nitrogen (N) and phosphorus (P) concentrations and ratios h...