Characterizing patterns of larval dispersal is essential to understanding the ecological and evolutionary dynamics of marine metapopulations. Recent research has measured local dispersal within populations, but the development of marine dispersal kernels from empirical data remains a challenge. We propose a framework to move beyond point estimates of dispersal towards the approximation of a simple dispersal kernel, based on the hypothesis that the structure of the seascape is a primary predictor of realized dispersal patterns. Using the coral reef fish Elacatinus lori as a study organism, we use genetic parentage analysis to estimate self-recruitment at a small spatial scale (<1 km). Next, we determine which simple kernel explains the obser...
Dispersal drives diverse processes from population persistence to community dynamics. However, the a...
Marine biologists have gone through a paradigm shift, from the assumption that marine populations ar...
Oceanographic features influence the transport and delivery of marine larvae, and physical retention...
Characterizing patterns of larval dispersal is essential to understanding the ecological and evoluti...
Characterizing patterns of larval dispersal is essential to understanding the ecological and evoluti...
Many marine organisms can be transported hundreds of kilometers during their pelagic larval stage, y...
Many marine organisms can be transported hundreds of kilometers during their pelagic larval stage, y...
Many marine organisms can be transported hundreds of kilometers during their pelagic larval stage, y...
Population connectivity influences virtually all ecological and evolutionary processes within metapo...
Marine biologists have gone through a paradigm shift, from the assumption that marine populations ar...
Marine biologists have gone through a paradigm shift, from the assumption that marine populations ar...
Many marine organisms can be transported hundreds of kilometres during their pelagic larval stage, y...
Many marine organisms can be transported hundreds of kilometres during their pelagic larval stage, y...
Dispersal kernels are the standard method in biology for describing and predicting the relationship ...
Dispersal drives diverse processes from population persistence to community dynamics. However, the a...
Dispersal drives diverse processes from population persistence to community dynamics. However, the a...
Marine biologists have gone through a paradigm shift, from the assumption that marine populations ar...
Oceanographic features influence the transport and delivery of marine larvae, and physical retention...
Characterizing patterns of larval dispersal is essential to understanding the ecological and evoluti...
Characterizing patterns of larval dispersal is essential to understanding the ecological and evoluti...
Many marine organisms can be transported hundreds of kilometers during their pelagic larval stage, y...
Many marine organisms can be transported hundreds of kilometers during their pelagic larval stage, y...
Many marine organisms can be transported hundreds of kilometers during their pelagic larval stage, y...
Population connectivity influences virtually all ecological and evolutionary processes within metapo...
Marine biologists have gone through a paradigm shift, from the assumption that marine populations ar...
Marine biologists have gone through a paradigm shift, from the assumption that marine populations ar...
Many marine organisms can be transported hundreds of kilometres during their pelagic larval stage, y...
Many marine organisms can be transported hundreds of kilometres during their pelagic larval stage, y...
Dispersal kernels are the standard method in biology for describing and predicting the relationship ...
Dispersal drives diverse processes from population persistence to community dynamics. However, the a...
Dispersal drives diverse processes from population persistence to community dynamics. However, the a...
Marine biologists have gone through a paradigm shift, from the assumption that marine populations ar...
Oceanographic features influence the transport and delivery of marine larvae, and physical retention...