Atmospheric nitrogen (N) deposition has substantial effects on forest ecosystems. The effects of N deposition on understory plants have been simulated by spraying N on the forest floor. Such understory addition of N (UAN) might simulate atmospheric N deposition in a biased manner, because it bypasses the canopy. We compared the effects of UAN and canopy addition of N (CAN) at 0, 25, and 50 kg N ha–1 year–1 on specific leaf area (SLA), leaf construction costs (CC), concentrations of leaf carbon ([C]), nitrogen ([N]), phosphorus ([P]), minerals ([Mineral]), nitrate ([NO3-]), lignin ([Lignin]), lipids ([Lipid]), organic acids ([OA]), soluble phenolics ([SP]), total non-structural carbohydrates ([TNC]), and total structural carbohydrates ([TSC...
Atmospheric nitrogen (N) deposition has been found to significantly affect plant growth and physiolo...
Nitrogen (N) deposition effects on the stoichiometric balance and photosynthetic and hydraulic coup...
Rapid increase of global nitrogen (N) deposition has greatly altered carbon cycles and functioning o...
Research Highlights: This study identifies the nitrogen (N) deposition effect on understory plants b...
As atmospheric nitrogen (N) deposition continues to increase, information on how N deposition affect...
Obtaining a holistic understanding of the impacts of atmospheric nitrogen deposition on multiple eco...
Increased nitrogen (N) deposition may have profound effects on forest ecosystems. However, informati...
The effects of nitrogen (N) deposition have been studied in many ecosystems, and one general pattern...
Responses of understory plant diversity to nitrogen (N) additions were investigated in reforested fo...
Nitrogen (N) deposition affects plant growth and interspecific interaction. This study aimed to expl...
Atmospheric nitrogen (N) deposition can increase forest growth. Because N deposition commonly increa...
Response of plant biodiversity to increased availability of nitrogen (N) has been investigated in te...
<p>Atmospheric nitrogen (N) deposition has been found to significantly affect plant growth and physi...
Nitrogen (N) deposition tends to accompany precipitation in temperate forests, and vegetation produc...
Canopy leaves are sinks of dry and wet nitrogen (N) deposition, most studies have not considered the...
Atmospheric nitrogen (N) deposition has been found to significantly affect plant growth and physiolo...
Nitrogen (N) deposition effects on the stoichiometric balance and photosynthetic and hydraulic coup...
Rapid increase of global nitrogen (N) deposition has greatly altered carbon cycles and functioning o...
Research Highlights: This study identifies the nitrogen (N) deposition effect on understory plants b...
As atmospheric nitrogen (N) deposition continues to increase, information on how N deposition affect...
Obtaining a holistic understanding of the impacts of atmospheric nitrogen deposition on multiple eco...
Increased nitrogen (N) deposition may have profound effects on forest ecosystems. However, informati...
The effects of nitrogen (N) deposition have been studied in many ecosystems, and one general pattern...
Responses of understory plant diversity to nitrogen (N) additions were investigated in reforested fo...
Nitrogen (N) deposition affects plant growth and interspecific interaction. This study aimed to expl...
Atmospheric nitrogen (N) deposition can increase forest growth. Because N deposition commonly increa...
Response of plant biodiversity to increased availability of nitrogen (N) has been investigated in te...
<p>Atmospheric nitrogen (N) deposition has been found to significantly affect plant growth and physi...
Nitrogen (N) deposition tends to accompany precipitation in temperate forests, and vegetation produc...
Canopy leaves are sinks of dry and wet nitrogen (N) deposition, most studies have not considered the...
Atmospheric nitrogen (N) deposition has been found to significantly affect plant growth and physiolo...
Nitrogen (N) deposition effects on the stoichiometric balance and photosynthetic and hydraulic coup...
Rapid increase of global nitrogen (N) deposition has greatly altered carbon cycles and functioning o...