Controlled experiments have shown that global changes decouple the biogeochemical cycles of carbon (C), nitrogen (N), and phosphorus (P), resulting in shifting stoichiometry that lies at the core of ecosystem functioning. However, the response of soil stoichiometry to global changes in natural ecosystems with different soil depths, vegetation types, and climate gradients remains poorly understood. Based on 2,736 observations along soil profiles of 0–150 cm depth from 1955 to 2016, we evaluated the temporal changes in soil C‐N‐P stoichiometry across subtropical China, where soils are P‐impoverished, with diverse vegetation, soil, and parent material types and a wide range of climate gradients. We found a significant overall increase in soil ...
Soil elemental stoichiometry, expressed as the ratios of carbon (C), nitrogen (N), and phosphorus (P...
Major Program of the National Natural Science Foundation of China 31290220<p class="FR_field"> Und...
Changes in climatic conditions along geographical gradients greatly affect soil nutrient cycling pro...
Aim The identification of stoichiometric flexibility is crucial for understanding carbon-nitrogen-ph...
Agricultural land use profoundly alters soil carbon (C), nitrogen (N), and phosphorus (P) contents, ...
Knowledge of nitrogen (N) and phosphorus (P) stoichiometry is essential for understanding biogeochem...
Coupled soil carbon (C), nitrogen (N), and phosphorus (P) cycles significantly influence biogeochemi...
Changes in elemental stoichiometry, in most cases, attributed to land use alterations may cause vita...
Changes in soil carbon (C): nitrogen (N): phosphorus (P) stoichiometric ratios have significant infl...
Changes in soil carbon (C): nitrogen (N): phosphorus (P) stoichiometric ratios have significant infl...
Understanding the contents and stoichiometry of carbon (C), nitrogen (N), and phosphorus (P) is vita...
Forest restoration affects nutrient cycling in terrestrial ecosystems. However, the dynamics of carb...
Forest restoration affects nutrient cycling in terrestrial ecosystems. However, the dynamics of carb...
Understanding the geographic patterns and potential drivers of leaf stoichiometry is critical for mo...
Plant carbon (C) and nitrogen (N) stoichiometry play an important role in the maintenance of ecosyst...
Soil elemental stoichiometry, expressed as the ratios of carbon (C), nitrogen (N), and phosphorus (P...
Major Program of the National Natural Science Foundation of China 31290220<p class="FR_field"> Und...
Changes in climatic conditions along geographical gradients greatly affect soil nutrient cycling pro...
Aim The identification of stoichiometric flexibility is crucial for understanding carbon-nitrogen-ph...
Agricultural land use profoundly alters soil carbon (C), nitrogen (N), and phosphorus (P) contents, ...
Knowledge of nitrogen (N) and phosphorus (P) stoichiometry is essential for understanding biogeochem...
Coupled soil carbon (C), nitrogen (N), and phosphorus (P) cycles significantly influence biogeochemi...
Changes in elemental stoichiometry, in most cases, attributed to land use alterations may cause vita...
Changes in soil carbon (C): nitrogen (N): phosphorus (P) stoichiometric ratios have significant infl...
Changes in soil carbon (C): nitrogen (N): phosphorus (P) stoichiometric ratios have significant infl...
Understanding the contents and stoichiometry of carbon (C), nitrogen (N), and phosphorus (P) is vita...
Forest restoration affects nutrient cycling in terrestrial ecosystems. However, the dynamics of carb...
Forest restoration affects nutrient cycling in terrestrial ecosystems. However, the dynamics of carb...
Understanding the geographic patterns and potential drivers of leaf stoichiometry is critical for mo...
Plant carbon (C) and nitrogen (N) stoichiometry play an important role in the maintenance of ecosyst...
Soil elemental stoichiometry, expressed as the ratios of carbon (C), nitrogen (N), and phosphorus (P...
Major Program of the National Natural Science Foundation of China 31290220<p class="FR_field"> Und...
Changes in climatic conditions along geographical gradients greatly affect soil nutrient cycling pro...