1. Global change factors may shift community functional composition by driving species turnover (species occurrence and species relative abundance) and intraspecific trait variability. However, their relative contribution in determining the functional response of community to global change, especially nitrogen enrichment and warming, remains unclear. 2. We conducted a fully factorial field experiment in a Tibetan alpine meadow to examine responses of plant community functional composition to nitrogen enrichment and warming by quantifying seven plant functional traits in each plot. Using the sum of squares decomposition, we further disentangled the relative contribution of intraspecific trait variability and species turnover to changes in c...
Anthropogenic activities introduce nitrogen (N) into terrestrial ecosystems, inducing changes in qua...
One primary goal at the intersection of community ecology and global change biology is to identify f...
<div><p>Plant functional traits underlie vegetation responses to environmental changes such as globa...
Global environmental changes are reducing the diversity and affecting the functioning of natural eco...
Aims: The responses of functional structures in plant communities to global change drivers is predic...
1. Recent studies have shown that intraspecific trait variability is an important source of total tr...
1. Plant functional traits can provide a mechanistic understanding of community responses to glob...
1. Exploring the mechanisms underlying the change in ecosystem productivity under anthropogenic nitr...
1.Biotic nitrogen (N) retention is an important ecosystem function in the context of ongoing land us...
Climate change is known to affect many facets of the Earth's ecosystems. However, little is known ab...
Abstract 1. Plant functional traits can provide a mechanistic understanding of community responses t...
1. Plant-soil biota interactions play a crucial role in the assembly of plant communities and the ma...
1. Although much research has explored changes in ecosystem functions associated with global environ...
International audienceThe mechanisms underlying nutrient-induced diversity–stability relationships h...
1. Exploring the mechanisms underlying the change in ecosystem productivity under anthropogenic nitr...
Anthropogenic activities introduce nitrogen (N) into terrestrial ecosystems, inducing changes in qua...
One primary goal at the intersection of community ecology and global change biology is to identify f...
<div><p>Plant functional traits underlie vegetation responses to environmental changes such as globa...
Global environmental changes are reducing the diversity and affecting the functioning of natural eco...
Aims: The responses of functional structures in plant communities to global change drivers is predic...
1. Recent studies have shown that intraspecific trait variability is an important source of total tr...
1. Plant functional traits can provide a mechanistic understanding of community responses to glob...
1. Exploring the mechanisms underlying the change in ecosystem productivity under anthropogenic nitr...
1.Biotic nitrogen (N) retention is an important ecosystem function in the context of ongoing land us...
Climate change is known to affect many facets of the Earth's ecosystems. However, little is known ab...
Abstract 1. Plant functional traits can provide a mechanistic understanding of community responses t...
1. Plant-soil biota interactions play a crucial role in the assembly of plant communities and the ma...
1. Although much research has explored changes in ecosystem functions associated with global environ...
International audienceThe mechanisms underlying nutrient-induced diversity–stability relationships h...
1. Exploring the mechanisms underlying the change in ecosystem productivity under anthropogenic nitr...
Anthropogenic activities introduce nitrogen (N) into terrestrial ecosystems, inducing changes in qua...
One primary goal at the intersection of community ecology and global change biology is to identify f...
<div><p>Plant functional traits underlie vegetation responses to environmental changes such as globa...