Ocean currents are expected to be the predominant environmental factor influencing the dispersal of planktonic larvae or spores; yet, their characterization as predictors of marine connectivity has been hindered by a lack of understanding of how best to use oceanographic data. We used a high-resolution oceanographic model output and Lagrangian particle simulations to derive oceanographic distances (hereafter called transport times) between sites studied for Macrocystis pyrifera genetic differentiation. We build upon the classical isolation-by-distance regression model by asking how much additional variability in genetic differentiation is explained when adding transport time as predictor. We explored the extent to which gene flow is depende...
Macroalgae underpin most temperate inshore ecosystems, but increasing macroalgalloss, fragmentation ...
Marine populations are typically characterized by weak genetic differentiation due to the potential ...
Macroalgae underpin most temperate inshore ecosystems, but increasing macroalgalloss, fragmentation ...
Ocean currents are expected to be the predominant environmental factor influencing the dispersal of ...
At small spatial and temporal scales, genetic differentiation is largely controlled by constraints o...
Marine populations are typically characterized by weak genetic differentiation due to the potential ...
At small spatial and temporal scales, genetic differentiation is largely controlled by constraints o...
At small spatial and temporal scales, genetic differentiation is largely controlled by constraints o...
At small spatial and temporal scales, genetic differentiation is largely controlled by constraints o...
Marine populations are typically characterized by weak genetic differentiation due to the potential ...
Marine populations are typically characterized by weak genetic differentiation due to the potential ...
Macroalgae underpin most temperate inshore ecosystems, but increasing macroalgal loss, fragmentation...
Macroalgae underpin most temperate inshore ecosystems, but increasing macroalgal loss, fragmentation...
Macroalgae underpin most temperate inshore ecosystems, but increasing macroalgal loss, fragmentation...
Macroalgae underpin most temperate inshore ecosystems, but increasing macroalgalloss, fragmentation ...
Macroalgae underpin most temperate inshore ecosystems, but increasing macroalgalloss, fragmentation ...
Marine populations are typically characterized by weak genetic differentiation due to the potential ...
Macroalgae underpin most temperate inshore ecosystems, but increasing macroalgalloss, fragmentation ...
Ocean currents are expected to be the predominant environmental factor influencing the dispersal of ...
At small spatial and temporal scales, genetic differentiation is largely controlled by constraints o...
Marine populations are typically characterized by weak genetic differentiation due to the potential ...
At small spatial and temporal scales, genetic differentiation is largely controlled by constraints o...
At small spatial and temporal scales, genetic differentiation is largely controlled by constraints o...
At small spatial and temporal scales, genetic differentiation is largely controlled by constraints o...
Marine populations are typically characterized by weak genetic differentiation due to the potential ...
Marine populations are typically characterized by weak genetic differentiation due to the potential ...
Macroalgae underpin most temperate inshore ecosystems, but increasing macroalgal loss, fragmentation...
Macroalgae underpin most temperate inshore ecosystems, but increasing macroalgal loss, fragmentation...
Macroalgae underpin most temperate inshore ecosystems, but increasing macroalgal loss, fragmentation...
Macroalgae underpin most temperate inshore ecosystems, but increasing macroalgalloss, fragmentation ...
Macroalgae underpin most temperate inshore ecosystems, but increasing macroalgalloss, fragmentation ...
Marine populations are typically characterized by weak genetic differentiation due to the potential ...
Macroalgae underpin most temperate inshore ecosystems, but increasing macroalgalloss, fragmentation ...