Understanding the spatial patterns and the driving factors of plant leaf and soil stoichiometry are critical for improving the parameterization of future ecological models and to predict the responses of ecosystems to environmental changes. This study aimed to determine how the latitudinal patterns of leaf and soil C:N:P stoichiometry are affected by climate and vegetation types in the dryland ecosystems. The concentrations of leaf C, N, and P in herb community as well as soil nutrient concentrations along a 500–km–long latitudinal gradient in Northern Shaanxi of the Loess Plateau, were measured. The results showed that the soil C, N, P and C:N:P ratios at all three depths (0–10, 10–20, and 20–40 cm) showed significant latitudinal trends (e...
Ecological stoichiometry reflects the element content and energy flow, which are important for bioge...
Plant carbon (C) and nitrogen (N) stoichiometry play an important role in the maintenance of ecosyst...
Spatial patterns of leaf carbon (C), nitrogen (N), and phosphorus (P) stoichiometry play a pivotal r...
Understanding the geographic patterns and potential drivers of leaf stoichiometry is critical for mo...
Major Program of the National Natural Science Foundation of China 31290220<p class="FR_field"> Und...
Understanding the geographic patterns and potential drivers of leaf stoichiometry is critical for mo...
<div><p>Understanding the geographic patterns and potential drivers of leaf stoichiometry is critica...
In ecological stoichiometry, the stoichiometry and spatial distribution of leaf carbon, nitrogen, an...
Determining large-scale patterns of plant elemental concentrations and stoichiometry along environme...
In ecological stoichiometry, the stoichiometry and spatial distribution of leaf carbon, nitrogen, an...
The Grain-for-Green project is an important ecological restoration measure to address the degradatio...
Understanding leaf stoichiometric patterns is crucial for improving predictions of plant responses t...
Ecological stoichiometry is a powerful indicator for understanding the adaptation of plants to envir...
The spatial patterns of leaf nutrient traits of plants in seven sites, Yangling, Yongshou, Tongchuan...
Questions Leaf nitrogen (N), phosphorus (P) concentrations and N : P ratio have been extensively stu...
Ecological stoichiometry reflects the element content and energy flow, which are important for bioge...
Plant carbon (C) and nitrogen (N) stoichiometry play an important role in the maintenance of ecosyst...
Spatial patterns of leaf carbon (C), nitrogen (N), and phosphorus (P) stoichiometry play a pivotal r...
Understanding the geographic patterns and potential drivers of leaf stoichiometry is critical for mo...
Major Program of the National Natural Science Foundation of China 31290220<p class="FR_field"> Und...
Understanding the geographic patterns and potential drivers of leaf stoichiometry is critical for mo...
<div><p>Understanding the geographic patterns and potential drivers of leaf stoichiometry is critica...
In ecological stoichiometry, the stoichiometry and spatial distribution of leaf carbon, nitrogen, an...
Determining large-scale patterns of plant elemental concentrations and stoichiometry along environme...
In ecological stoichiometry, the stoichiometry and spatial distribution of leaf carbon, nitrogen, an...
The Grain-for-Green project is an important ecological restoration measure to address the degradatio...
Understanding leaf stoichiometric patterns is crucial for improving predictions of plant responses t...
Ecological stoichiometry is a powerful indicator for understanding the adaptation of plants to envir...
The spatial patterns of leaf nutrient traits of plants in seven sites, Yangling, Yongshou, Tongchuan...
Questions Leaf nitrogen (N), phosphorus (P) concentrations and N : P ratio have been extensively stu...
Ecological stoichiometry reflects the element content and energy flow, which are important for bioge...
Plant carbon (C) and nitrogen (N) stoichiometry play an important role in the maintenance of ecosyst...
Spatial patterns of leaf carbon (C), nitrogen (N), and phosphorus (P) stoichiometry play a pivotal r...