Leaf nutrient content and its stoichiometric relationships (N/P ratio) are essential for photosynthesis and plant growth and development. Previous studies on leaf nutrient-related functional traits have mainly focused on the species level and regional scale, but fewer studies have investigated the distribution patterns of the leaf N and P contents (LN, LP) and N/P ratios (N/P) in communities and their controlling factors at a large scale; therefore, we used LN, LP, and N/P data at 69 sites from 818 forests in China. The results showed significant differences (p p p < 0.001). The explanatory degree of climatic factors in shaping the spatial variation patterns of LN and N/P was higher than that of the soil nutrient factors, and the spatial va...
Spatial patterns of leaf carbon (C), nitrogen (N), and phosphorus (P) stoichiometry play a pivotal r...
Major Program of the National Natural Science Foundation of China 31290220<p class="FR_field"> Und...
Leaf litter nutrients play a key role in nutrient cycling in forest ecosystems, yet our current know...
Plant leaf functional traits can reflect the adaptive strategies of plants to environmental changes....
<p>Nitrogen (N) has great ecological importance, but the biogeographic pattern across forest biomes ...
Nitrogen (N) has great ecological importance, but the biogeographic pattern across forest biomes in ...
Leaf chemistry is important in predicting the functioning and dynamics of ecosystems. As two key tra...
Leaf nitrogen and phosphorus stoichiometry of Chinese terrestrial plants was studied based on a nati...
Abstracts: A long-standing goal of ecology and forest management is to understand the environmental ...
Concentrations of leaf nitrogen (N) and phosphorus (P) are two key traits of plants for ecosystem fu...
The spatial patterns of leaf nutrient traits of plants in seven sites, Yangling, Yongshou, Tongchuan...
Plant stoichiometry is critical for the structure and functions of ecosystems. Previous studies on l...
The nutrient ecological stoichiometry of plants and soil is important for the growth and dynamics of...
Understanding the geographic patterns and potential drivers of leaf stoichiometry is critical for mo...
Our understanding of how climate and leaf habit (evergreen vs. deciduous) drive leaf litter carbon (...
Spatial patterns of leaf carbon (C), nitrogen (N), and phosphorus (P) stoichiometry play a pivotal r...
Major Program of the National Natural Science Foundation of China 31290220<p class="FR_field"> Und...
Leaf litter nutrients play a key role in nutrient cycling in forest ecosystems, yet our current know...
Plant leaf functional traits can reflect the adaptive strategies of plants to environmental changes....
<p>Nitrogen (N) has great ecological importance, but the biogeographic pattern across forest biomes ...
Nitrogen (N) has great ecological importance, but the biogeographic pattern across forest biomes in ...
Leaf chemistry is important in predicting the functioning and dynamics of ecosystems. As two key tra...
Leaf nitrogen and phosphorus stoichiometry of Chinese terrestrial plants was studied based on a nati...
Abstracts: A long-standing goal of ecology and forest management is to understand the environmental ...
Concentrations of leaf nitrogen (N) and phosphorus (P) are two key traits of plants for ecosystem fu...
The spatial patterns of leaf nutrient traits of plants in seven sites, Yangling, Yongshou, Tongchuan...
Plant stoichiometry is critical for the structure and functions of ecosystems. Previous studies on l...
The nutrient ecological stoichiometry of plants and soil is important for the growth and dynamics of...
Understanding the geographic patterns and potential drivers of leaf stoichiometry is critical for mo...
Our understanding of how climate and leaf habit (evergreen vs. deciduous) drive leaf litter carbon (...
Spatial patterns of leaf carbon (C), nitrogen (N), and phosphorus (P) stoichiometry play a pivotal r...
Major Program of the National Natural Science Foundation of China 31290220<p class="FR_field"> Und...
Leaf litter nutrients play a key role in nutrient cycling in forest ecosystems, yet our current know...