Response of plant biodiversity to increased availability of nitrogen (N) has been investigated in temperate and boreal forests, which are typically N-limited, but little is known in tropical forests. We examined the effects of artificial N additions on plant diversity (species richness, density and cover) of the understory layer in an N saturated old-growth tropical forest in southern China to test the following hypothesis: N additions decrease plant diversity in N saturated tropical forests primarily fromN-mediated changes in soil properties. Experimental additions of N were administered at the following levels from July 2003 to July 2008: no addition (Control); 50 kgNha1 yr1 (Low-N); 100 kgNha1 yr1 (Medium-N), and 150 kgNha1 yr1 (High-N)....
Although community structure and species richness are known to respond to nitrogen fertilization dra...
Increased nitrogen (N) deposition endangers the biodiversity and stability of forest ecosystems, and...
ABSTRACT: Elevated anthropogenic nitrogen (N) deposition has become an important driver of soil acid...
Response of plant biodiversity to increased availability of nitrogen (N) has been investigated in te...
Responses of understory plant diversity to nitrogen (N) additions were investigated in reforested fo...
Humid tropical forests are commonly characterized as N-rich but P-deficient. Increased N deposition ...
Increasing atmospheric nitrogen (N) deposition is an important driver of biodiversity change. By con...
Elevated nitrogen (N) deposition to tropical forests may accelerate ecosystem phosphorus (P) limitat...
Research Highlights: This study identifies the nitrogen (N) deposition effect on understory plants b...
Elevated nitrogen (N) deposition to tropical forests may accelerate ecosystem phosphorus (P) limitat...
Scant information is available on how soil phosphorus (P) availability responds to atmospheric nitro...
China has been experiencing a rapid increase in nitrogen (N) deposition due to intensified anthropog...
Rapid increase of global nitrogen (N) deposition has greatly altered carbon cycles and functioning o...
Xu et al. examine the effect of leguminous trees on neighbor diversity across 11 plots in tropical f...
BACKGROUND: Although community structure and species richness are known to respond to nitrogen ferti...
Although community structure and species richness are known to respond to nitrogen fertilization dra...
Increased nitrogen (N) deposition endangers the biodiversity and stability of forest ecosystems, and...
ABSTRACT: Elevated anthropogenic nitrogen (N) deposition has become an important driver of soil acid...
Response of plant biodiversity to increased availability of nitrogen (N) has been investigated in te...
Responses of understory plant diversity to nitrogen (N) additions were investigated in reforested fo...
Humid tropical forests are commonly characterized as N-rich but P-deficient. Increased N deposition ...
Increasing atmospheric nitrogen (N) deposition is an important driver of biodiversity change. By con...
Elevated nitrogen (N) deposition to tropical forests may accelerate ecosystem phosphorus (P) limitat...
Research Highlights: This study identifies the nitrogen (N) deposition effect on understory plants b...
Elevated nitrogen (N) deposition to tropical forests may accelerate ecosystem phosphorus (P) limitat...
Scant information is available on how soil phosphorus (P) availability responds to atmospheric nitro...
China has been experiencing a rapid increase in nitrogen (N) deposition due to intensified anthropog...
Rapid increase of global nitrogen (N) deposition has greatly altered carbon cycles and functioning o...
Xu et al. examine the effect of leguminous trees on neighbor diversity across 11 plots in tropical f...
BACKGROUND: Although community structure and species richness are known to respond to nitrogen ferti...
Although community structure and species richness are known to respond to nitrogen fertilization dra...
Increased nitrogen (N) deposition endangers the biodiversity and stability of forest ecosystems, and...
ABSTRACT: Elevated anthropogenic nitrogen (N) deposition has become an important driver of soil acid...