Background and aimsDespite extensive studies documenting that changes in plant community structure in response to enhanced atmospheric nitrogen (N) deposition were driven by positive effects of N enrichment on rhizome clonal plants in grassland communities, few studies have specifically investigated the responses of rhizome clonal plants to N enrichment in terms of above-and below-ground plant traits.MethodsBy monitoring above-ground and below-ground plant traits, we investigated long-term (13-year) effects of N addition (64gm(-2)yr.(-1)) on Leymus chinensis, a rhizome clonal plant, in temperate steppes of northern China.ResultsNitrogen addition enhanced the relative above-ground biomass of L. chinensis from 0.6% (2004) to 75% (2016) in ste...
Abstract Nitrogen (N) resorption from senescing leaves is an important mechanism of N conservation f...
Nutrient resorption from senescing leaves is a key mechanism of nutrient conservation for plants. Th...
Among the various plant traits, phenology is one of the most sensitive to environmental changes. Nit...
Clonal plants with diverse growth forms are dominant in plant community of temperate grasslands and ...
AimsShifts of plant community composition with enhanced atmospheric nitrogen (N) deposition in grass...
BACKGROUND: Although community structure and species richness are known to respond to nitrogen ferti...
Background: Although community structure and species richness are known to respond to nitrogen ferti...
Increasing deposition of atmospheric nitrogen (N) due to accelerated human activities is a threat to...
Enhanced deposition of atmospheric nitrogen (N) has profound impacts on ecosystem processes such as ...
Aims Nitrogen (N) enrichment caused by human activities threatens biodiversity and alters plant comm...
Belowground plant traits play important roles in plant diversity loss driven by atmospheric nitrogen...
Chinese grasslands are extensive natural ecosystems that comprise 40 % of the total land area of the...
Asymmetrical light competition and direct detrimental effect of nitrogen have been proposed as two m...
Nutrient resorption from senescing leaves is a key mechanism of nutrient conservation for plants. Th...
Plant nitrogen (N) use strategies have great implications for primary production and ecosystem nutri...
Abstract Nitrogen (N) resorption from senescing leaves is an important mechanism of N conservation f...
Nutrient resorption from senescing leaves is a key mechanism of nutrient conservation for plants. Th...
Among the various plant traits, phenology is one of the most sensitive to environmental changes. Nit...
Clonal plants with diverse growth forms are dominant in plant community of temperate grasslands and ...
AimsShifts of plant community composition with enhanced atmospheric nitrogen (N) deposition in grass...
BACKGROUND: Although community structure and species richness are known to respond to nitrogen ferti...
Background: Although community structure and species richness are known to respond to nitrogen ferti...
Increasing deposition of atmospheric nitrogen (N) due to accelerated human activities is a threat to...
Enhanced deposition of atmospheric nitrogen (N) has profound impacts on ecosystem processes such as ...
Aims Nitrogen (N) enrichment caused by human activities threatens biodiversity and alters plant comm...
Belowground plant traits play important roles in plant diversity loss driven by atmospheric nitrogen...
Chinese grasslands are extensive natural ecosystems that comprise 40 % of the total land area of the...
Asymmetrical light competition and direct detrimental effect of nitrogen have been proposed as two m...
Nutrient resorption from senescing leaves is a key mechanism of nutrient conservation for plants. Th...
Plant nitrogen (N) use strategies have great implications for primary production and ecosystem nutri...
Abstract Nitrogen (N) resorption from senescing leaves is an important mechanism of N conservation f...
Nutrient resorption from senescing leaves is a key mechanism of nutrient conservation for plants. Th...
Among the various plant traits, phenology is one of the most sensitive to environmental changes. Nit...