Aim To assess the potential impacts of future climate change on spatio-temporal patterns of freshwater fish beta diversity. Location AdourGaronne River Basin (France). Methods We first applied an ensemble modelling approach to project annually the future distribution of 18 fish species for the 2010-2100 period on 50 sites. We then explored the spatial and temporal patterns of beta diversity by distinguishing between its two additive components, namely species turnover and nestedness. Results Taxonomic homogenization of fish assemblages was projected to increase linearly over the 21st century, especially in the downstream parts of the river gradient. This homogenization process was almost entirely caused by a decrease in spatial species turn...
AimAssessing the consequences of a future increase in non-native species introductions and native sp...
<div><p>The dendritic structure of river networks is commonly argued against use of species atlas da...
The dendritic structure of river networks is commonly argued against use of species atlas data for m...
Climate change is expected to bring about profound rearrangement of ecological communities by affect...
International audienceStream fish are expected to be significantly influenced by climate change, as ...
Here, we employ an additive partitioning framework to disentangle the contribution of spatial turnov...
International audienceThe assessment of climate change impacts on biodiversity has so far been biase...
To understand the resilience of aquatic ecosystems to environmental change, it is important to deter...
The aim of the present study was to predict future changes in biodiversity attributes (richness, rar...
[Departement_IRSTEA]Eaux [TR1_IRSTEA]QUASAREInternational audience1. Climate change could be one of ...
Species Temporal Turnover (STT) is one of the most familiar metrics to assess changes in assemblage ...
1. Climate change could be one of the main threats faced by aquatic ecosystems and freshwater biodiv...
AimAssessing the consequences of a future increase in non-native species introductions and native sp...
<div><p>The dendritic structure of river networks is commonly argued against use of species atlas da...
The dendritic structure of river networks is commonly argued against use of species atlas data for m...
Climate change is expected to bring about profound rearrangement of ecological communities by affect...
International audienceStream fish are expected to be significantly influenced by climate change, as ...
Here, we employ an additive partitioning framework to disentangle the contribution of spatial turnov...
International audienceThe assessment of climate change impacts on biodiversity has so far been biase...
To understand the resilience of aquatic ecosystems to environmental change, it is important to deter...
The aim of the present study was to predict future changes in biodiversity attributes (richness, rar...
[Departement_IRSTEA]Eaux [TR1_IRSTEA]QUASAREInternational audience1. Climate change could be one of ...
Species Temporal Turnover (STT) is one of the most familiar metrics to assess changes in assemblage ...
1. Climate change could be one of the main threats faced by aquatic ecosystems and freshwater biodiv...
AimAssessing the consequences of a future increase in non-native species introductions and native sp...
<div><p>The dendritic structure of river networks is commonly argued against use of species atlas da...
The dendritic structure of river networks is commonly argued against use of species atlas data for m...