In many species, alternative developmental pathways lead to the production of two distinct phenotypes, promoting the evolution of morphological novelty and diversification. Offspring type in marine invertebrates influences transport time by ocean currents, which dictate dispersal potential and gene flow, and thus has sweeping evolutionary effects on the potential for local adaptation and on rates of speciation, extinction, and molecular evolution. Here we use the polychaete Streblospio benedicti to investigate the effects of dimorphic offspring type on gene flow and genetic structure in coastal populations. We use 84 single nucleotide polymorphism (SNP) markers for this species to assay populations on the East and West Coasts of the United ...
Identifying patterns, and ascertaining causes, of the current distribution of genetic variation is o...
Poecilogonous species show variation in developmental mode, with larvae that differ both morphologic...
Identifying patterns, and ascertaining causes, of the current distribution of genetic variation is o...
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...
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...
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...
Population genetic structure of sedentary marine species is expected to be shaped mainly by the disp...
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 ...
Marine populations are typically characterized by weak genetic differentiation due to the potential ...
Identifying patterns, and ascertaining causes, of the current distribution of genetic variation is o...
Poecilogonous species show variation in developmental mode, with larvae that differ both morphologic...
Identifying patterns, and ascertaining causes, of the current distribution of genetic variation is o...
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...
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...
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...
Population genetic structure of sedentary marine species is expected to be shaped mainly by the disp...
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 ...
Marine populations are typically characterized by weak genetic differentiation due to the potential ...
Identifying patterns, and ascertaining causes, of the current distribution of genetic variation is o...
Poecilogonous species show variation in developmental mode, with larvae that differ both morphologic...
Identifying patterns, and ascertaining causes, of the current distribution of genetic variation is o...