Nitrogen enrichment is pervasive in forest ecosystems, but its influence on understory plant communities and their stoichiometric characteristics is poorly understood. We hypothesize that when forest is enriched with nitrogen (N), the stoichiometric characteristics of plant species explain changes in understory plant diversity. A 13-year field experiment was conducted to explore the effects of N addition on foliar carbon (C): N: phosphorus (P) stoichiometry, understory plant species richness, and intrinsic water use efficiency (iWUE) in a subtropical Chinese fir forest. Four levels of N addition were applied: 0, 6, 12, and 24 g m−2 year−1. Individual plant species were categorized into resistant plants, intermediate resistant plants, and se...
1. The impact of long-term nitrogen (N) deposition is under-studied in phosphorus (P)-limited subtro...
BACKGROUND: Although community structure and species richness are known to respond to nitrogen ferti...
Reactive nitrogen (N) deposition can affect ecosystem processes, particularly in oligotrophic upland...
Nitrogen (N) deposition effects on the stoichiometric balance and photosynthetic and hydraulic coup...
The mass ratio of C:N:P (Carbon: Nitrogen: Phosphorus) in plant tissue can reflect the utilization e...
Response of plant biodiversity to increased availability of nitrogen (N) has been investigated in te...
Background Changes in foliar nitrogen (N) and phosphorus (P) stoichiometry play important roles in p...
Responses of understory plant diversity to nitrogen (N) additions were investigated in reforested fo...
© The Author(s), 2015. This article is distributed under the terms of the Creative Commons Attributi...
Aims Uncovering the importance of soil and plant characteristics in driving the legacy effects of ni...
Research Highlights: This study identifies the nitrogen (N) deposition effect on understory plants b...
Foliar nitrogen (N) or phosphorus (P) status and their stoichiometric homeostasis are integral parts...
N and P have different eutrophication effects on grassland communities, yet the underlying mechanism...
Humid tropical forests are commonly characterized as N-rich but P-deficient. Increased N deposition ...
Ambient nutrient changes influence the coupling of nitrogen (N) and phosphorus (P) in terrestrial ec...
1. The impact of long-term nitrogen (N) deposition is under-studied in phosphorus (P)-limited subtro...
BACKGROUND: Although community structure and species richness are known to respond to nitrogen ferti...
Reactive nitrogen (N) deposition can affect ecosystem processes, particularly in oligotrophic upland...
Nitrogen (N) deposition effects on the stoichiometric balance and photosynthetic and hydraulic coup...
The mass ratio of C:N:P (Carbon: Nitrogen: Phosphorus) in plant tissue can reflect the utilization e...
Response of plant biodiversity to increased availability of nitrogen (N) has been investigated in te...
Background Changes in foliar nitrogen (N) and phosphorus (P) stoichiometry play important roles in p...
Responses of understory plant diversity to nitrogen (N) additions were investigated in reforested fo...
© The Author(s), 2015. This article is distributed under the terms of the Creative Commons Attributi...
Aims Uncovering the importance of soil and plant characteristics in driving the legacy effects of ni...
Research Highlights: This study identifies the nitrogen (N) deposition effect on understory plants b...
Foliar nitrogen (N) or phosphorus (P) status and their stoichiometric homeostasis are integral parts...
N and P have different eutrophication effects on grassland communities, yet the underlying mechanism...
Humid tropical forests are commonly characterized as N-rich but P-deficient. Increased N deposition ...
Ambient nutrient changes influence the coupling of nitrogen (N) and phosphorus (P) in terrestrial ec...
1. The impact of long-term nitrogen (N) deposition is under-studied in phosphorus (P)-limited subtro...
BACKGROUND: Although community structure and species richness are known to respond to nitrogen ferti...
Reactive nitrogen (N) deposition can affect ecosystem processes, particularly in oligotrophic upland...