International audienceAbstract Intra‐annual (i.e. seasonal) temporal niche partitioning is essential to the maintenance of biodiversity in many plant communities. However, understanding of how climate and global change drivers such as eutrophication influence seasonal niche partitioning in plant assemblages remains limited. We used early‐season and late‐season compositional data collected from 10 grassland sites around the world to explore relationships between climate variability and intra‐annual species segregation (i.e. seasonal β ‐diversity) and to assess how nutrient enrichment alters seasonal β ‐diversity in plant communities. We then assessed whether changes in seasonal β ‐diversity in response to nutrient enrichment are underpinned ...
Temperate grassland ecosystems face a future of precipitation change, which can alter community comp...
Experiments manipulating a single global change factor (GCF) have provided increasing evidence that ...
Temperate grassland ecosystems face a future of precipitation change, which can alter community comp...
Intra-annual (i.e. seasonal) temporal niche partitioning is essential to the maintenance of biodiver...
Ecosystem eutrophication often increases domination by non-natives and causes displacement of native...
Ecosystem eutrophication often increases domination by non-natives and causes displacement of native...
Ecosystem eutrophication often increases domination by non-natives and causes displacement of native...
Climate gradients shape spatial variation in the richness and composition of plant communities. Give...
The stability of grassland communities informs us about the ability of grasslands to provide reliabl...
<div><p>The distribution of flowering across the growing season is governed by each species’ evoluti...
Global warming intensifies the hydrological cycle and may result in changes in the frequency and int...
Temporal stability of primary productivity is the key to stable provisioning of ecosystem services t...
The distribution of flowering across the growing season is governed by each species' evolutionary hi...
<div><p>Temperate grassland ecosystems face a future of precipitation change, which can alter commun...
1. Global change factors may shift community functional composition by driving species turnover (spe...
Temperate grassland ecosystems face a future of precipitation change, which can alter community comp...
Experiments manipulating a single global change factor (GCF) have provided increasing evidence that ...
Temperate grassland ecosystems face a future of precipitation change, which can alter community comp...
Intra-annual (i.e. seasonal) temporal niche partitioning is essential to the maintenance of biodiver...
Ecosystem eutrophication often increases domination by non-natives and causes displacement of native...
Ecosystem eutrophication often increases domination by non-natives and causes displacement of native...
Ecosystem eutrophication often increases domination by non-natives and causes displacement of native...
Climate gradients shape spatial variation in the richness and composition of plant communities. Give...
The stability of grassland communities informs us about the ability of grasslands to provide reliabl...
<div><p>The distribution of flowering across the growing season is governed by each species’ evoluti...
Global warming intensifies the hydrological cycle and may result in changes in the frequency and int...
Temporal stability of primary productivity is the key to stable provisioning of ecosystem services t...
The distribution of flowering across the growing season is governed by each species' evolutionary hi...
<div><p>Temperate grassland ecosystems face a future of precipitation change, which can alter commun...
1. Global change factors may shift community functional composition by driving species turnover (spe...
Temperate grassland ecosystems face a future of precipitation change, which can alter community comp...
Experiments manipulating a single global change factor (GCF) have provided increasing evidence that ...
Temperate grassland ecosystems face a future of precipitation change, which can alter community comp...