Biodiversity patterns are governed by landscape structure and dispersal strategies of residing organisms. Landscape, however, changes, and dispersal strategies evolve with it. It is unclear how these biological and geomorphological changes interplay to affect biodiversity patterns. Here we develop metacommunity models that allow for dispersal evolution and implement them in river networks with different structures, mimicking the geomorphological dynamics of fluvial landscape. For a given dispersal kernel, a more compact network structure, where local communities are closer to one another, results in biodiversity patterns characteristic of a more well-mixed environment. When dispersal evolution is present, however, organisms adopt more local...
This paper investigates the importance of dispersal directionality and river network structure to bi...
This paper investigates the importance of dispersal directionality and river network structure to bi...
1. Rivers are spatially organised into hierarchic dendritic networks. This unique physical structure...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing organ...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing organ...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing organ...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing organ...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing orga...
1. River networks are hierarchical dendritic habitats embedded within the terrestrial landscape, wit...
River networks are hierarchical dendritic habitats embedded within the terrestrial landscape, with v...
In this paper, we develop a stochastic, discrete, structured meta population model to explore the dy...
This paper investigates the importance of dispersal directionality and river network structure to bi...
This paper investigates the importance of dispersal directionality and river network structure to bi...
In this paper, we develop a stochastic, discrete, structured meta population model to explore the dy...
This paper investigates the importance of dispersal directionality and river network structure to bi...
This paper investigates the importance of dispersal directionality and river network structure to bi...
This paper investigates the importance of dispersal directionality and river network structure to bi...
1. Rivers are spatially organised into hierarchic dendritic networks. This unique physical structure...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing organ...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing organ...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing organ...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing organ...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing orga...
1. River networks are hierarchical dendritic habitats embedded within the terrestrial landscape, wit...
River networks are hierarchical dendritic habitats embedded within the terrestrial landscape, with v...
In this paper, we develop a stochastic, discrete, structured meta population model to explore the dy...
This paper investigates the importance of dispersal directionality and river network structure to bi...
This paper investigates the importance of dispersal directionality and river network structure to bi...
In this paper, we develop a stochastic, discrete, structured meta population model to explore the dy...
This paper investigates the importance of dispersal directionality and river network structure to bi...
This paper investigates the importance of dispersal directionality and river network structure to bi...
This paper investigates the importance of dispersal directionality and river network structure to bi...
1. Rivers are spatially organised into hierarchic dendritic networks. This unique physical structure...