Background: Temporal variation in the genetic structure of populations can be caused by multiple factors, including natural selection, stochastic environmental variation, migration, or genetic drift. In benthic marine species, the developmental mode of larvae may indicate a possibility for temporal genetic variation: species with dispersive planktonic larvae are expected to be more likely to show temporal genetic variation than species with benthic or brooded non-dispersive larvae, due to differences in larval mortality and dispersal ability. We examined temporal genetic structure in populations of Pygospio elegans, a poecilogonous polychaete with within-species variation in developmental mode. P. elegans produces either planktonic, benthic...
Development in marine invertebrate species can take place through a variety of modes and larval form...
Population structure of many marine organisms is spatially patchy and varies within and between year...
Fine-scale spatial and temporal variation in the genetic composition of benthic recruits, known as c...
Background: Temporal variation in the genetic structure of populations can be caused by multiple fac...
Background: Temporal variation in the genetic structure of populations can be caused by multiple fac...
Background: Temporal variation in the genetic structure of populations can be caused by multiple fac...
Background: Temporal variation in the genetic structure of populations can be caused by multiple fac...
Poecilogonous species show variation in developmental mode, with larvae that differ both morphologic...
Population genetic structure of sedentary marine species is expected to be shaped mainly by the disp...
Population genetic structure of sedentary marine species is expected to be shaped mainly by the disp...
Poecilogonous species show variation in developmental mode, with larvae that differ both morphologic...
Population genetic structure of sedentary marine species is expected to be shaped mainly by the disp...
In many species, alternative developmental pathways lead to the production of two distinct phenotype...
In many species, alternative developmental pathways lead to the production of two distinct phenotype...
In many species, alternative developmental pathways lead to the production of two distinct phenotype...
Development in marine invertebrate species can take place through a variety of modes and larval form...
Population structure of many marine organisms is spatially patchy and varies within and between year...
Fine-scale spatial and temporal variation in the genetic composition of benthic recruits, known as c...
Background: Temporal variation in the genetic structure of populations can be caused by multiple fac...
Background: Temporal variation in the genetic structure of populations can be caused by multiple fac...
Background: Temporal variation in the genetic structure of populations can be caused by multiple fac...
Background: Temporal variation in the genetic structure of populations can be caused by multiple fac...
Poecilogonous species show variation in developmental mode, with larvae that differ both morphologic...
Population genetic structure of sedentary marine species is expected to be shaped mainly by the disp...
Population genetic structure of sedentary marine species is expected to be shaped mainly by the disp...
Poecilogonous species show variation in developmental mode, with larvae that differ both morphologic...
Population genetic structure of sedentary marine species is expected to be shaped mainly by the disp...
In many species, alternative developmental pathways lead to the production of two distinct phenotype...
In many species, alternative developmental pathways lead to the production of two distinct phenotype...
In many species, alternative developmental pathways lead to the production of two distinct phenotype...
Development in marine invertebrate species can take place through a variety of modes and larval form...
Population structure of many marine organisms is spatially patchy and varies within and between year...
Fine-scale spatial and temporal variation in the genetic composition of benthic recruits, known as c...