Under the ongoing climate change, understanding the mechanisms structuring the spatial distribution of aquatic species in glacial stream networks is of critical importance to predict the response of aquatic biodiversity in the face of glacier melting. In this study, we propose to use metacommunity theory as a conceptual framework to better understand how river network structure influences the spatial organization of aquatic communities in glacierized catchments. At 51 stream sites in an Andean glacierized catchment (Ecuador), we sampled benthic macroinvertebrates, measured physico-chemical and food resource conditions, and calculated geographical, altitudinal and glaciality distances among all sites. Using par-tial redundancy analysis, we p...
International audienceIntroduction: Glacierised catchments are remote and hostile environment...
International audienceEquatorial glacier-fed streams present unique hydraulic patterns when compared...
1. Rivers are spatially organised into hierarchic dendritic networks. This unique physical structure...
Under the ongoing climate change, understanding the mechanisms structuring the spatial distribution ...
Under the ongoing climate change, understanding the mechanisms structuring the spatial distribution ...
Macroinvertebrate communities of glacial streams are affected by melting mountain glaciers, which in...
The downstream pattern in benthic macroinvertebrate assemblages along glacier-fed streams is a resul...
1. As glacier shrinkage is accelerating due to climate change, it is important to understand the eff...
1. The ecology of glacier-fed streams at temperate latitudes has been intensely studied in recent ye...
1. Water abstraction from glacial rivers is an important characteristic of hydroelectric power schem...
Climate change is driving the thinning and retreat of many glaciers globally. Reductions of ice-melt...
[Departement_IRSTEA]Eaux [TR1_IRSTEA]QUASARE [ADD1_IRSTEA]Systèmes aquatiques soumis à des pressions...
Climate change and progressive glacier loss are leading to rapid ecological shifts in alpine aquatic...
1. Generalized additive models (GAMs) were used to predict macroinvertebrate taxonomic richness and ...
International audienceUnderstanding and predicting how biological communities respond to climate cha...
International audienceIntroduction: Glacierised catchments are remote and hostile environment...
International audienceEquatorial glacier-fed streams present unique hydraulic patterns when compared...
1. Rivers are spatially organised into hierarchic dendritic networks. This unique physical structure...
Under the ongoing climate change, understanding the mechanisms structuring the spatial distribution ...
Under the ongoing climate change, understanding the mechanisms structuring the spatial distribution ...
Macroinvertebrate communities of glacial streams are affected by melting mountain glaciers, which in...
The downstream pattern in benthic macroinvertebrate assemblages along glacier-fed streams is a resul...
1. As glacier shrinkage is accelerating due to climate change, it is important to understand the eff...
1. The ecology of glacier-fed streams at temperate latitudes has been intensely studied in recent ye...
1. Water abstraction from glacial rivers is an important characteristic of hydroelectric power schem...
Climate change is driving the thinning and retreat of many glaciers globally. Reductions of ice-melt...
[Departement_IRSTEA]Eaux [TR1_IRSTEA]QUASARE [ADD1_IRSTEA]Systèmes aquatiques soumis à des pressions...
Climate change and progressive glacier loss are leading to rapid ecological shifts in alpine aquatic...
1. Generalized additive models (GAMs) were used to predict macroinvertebrate taxonomic richness and ...
International audienceUnderstanding and predicting how biological communities respond to climate cha...
International audienceIntroduction: Glacierised catchments are remote and hostile environment...
International audienceEquatorial glacier-fed streams present unique hydraulic patterns when compared...
1. Rivers are spatially organised into hierarchic dendritic networks. This unique physical structure...