Dispersal is one of the main determining factors of population structure. In the marine habitat, well-connected populations with large numbers of reproducing individuals are common but even so population structure can exist on a small-scale. Variation in dispersal patterns between populations or over time is often associated to geographic distance or changing oceanographic barriers. Consequently, detecting structure and variation in dispersal on a fine-scale within marine populations still remains a challenge. Here we propose and use a novel approach of combining a clustering model, early-life history trait information from fish otoliths, spatial coordinates and genetic markers to detect very fine-scale dispersal patterns. We collected 1573...
The persistence and resilience of marine populations in the face of disturbances is directly affecte...
Many marine organisms can be transported hundreds of kilometres during their pelagic larval stage, y...
Many marine species have vastly different capacities for dispersal during larval, juvenile and adult...
Dispersal is one of the main determining factors of population structure. In the marine habitat, wel...
Quantifying the spatial scale of population connectivity is important for understanding the evolutio...
Quantifying the spatial scale of population connectivity is important for understanding the evolutio...
Quantifying the spatial scale of population connectivity is important for understanding the evolutio...
Numerous marine fish species have a characteristic pelagic larval dispersal stage. Understanding how...
Quantifying the probability of larval exchange among marine populations is key to predicting local p...
Many marine species have vastly different capacities for dispersal during larval, juvenile and adult...
Population persistence depends on recruitment during early life. In marine populations, colonization...
Many marine organisms can be transported hundreds of kilometers during their pelagic larval stage, y...
Gene flow shapes spatial genetic structure as well as the potential for local adaptation of populati...
Pelagic dispersal of most benthic marine organisms is a fundamental driver of population distributio...
participantRobust estimates of dispersal are critical for understanding whether species can migrate ...
The persistence and resilience of marine populations in the face of disturbances is directly affecte...
Many marine organisms can be transported hundreds of kilometres during their pelagic larval stage, y...
Many marine species have vastly different capacities for dispersal during larval, juvenile and adult...
Dispersal is one of the main determining factors of population structure. In the marine habitat, wel...
Quantifying the spatial scale of population connectivity is important for understanding the evolutio...
Quantifying the spatial scale of population connectivity is important for understanding the evolutio...
Quantifying the spatial scale of population connectivity is important for understanding the evolutio...
Numerous marine fish species have a characteristic pelagic larval dispersal stage. Understanding how...
Quantifying the probability of larval exchange among marine populations is key to predicting local p...
Many marine species have vastly different capacities for dispersal during larval, juvenile and adult...
Population persistence depends on recruitment during early life. In marine populations, colonization...
Many marine organisms can be transported hundreds of kilometers during their pelagic larval stage, y...
Gene flow shapes spatial genetic structure as well as the potential for local adaptation of populati...
Pelagic dispersal of most benthic marine organisms is a fundamental driver of population distributio...
participantRobust estimates of dispersal are critical for understanding whether species can migrate ...
The persistence and resilience of marine populations in the face of disturbances is directly affecte...
Many marine organisms can be transported hundreds of kilometres during their pelagic larval stage, y...
Many marine species have vastly different capacities for dispersal during larval, juvenile and adult...