6533b836fe1ef96bd12a1413

RESEARCH PRODUCT

Seasonal genetic variation associated with population dynamics of a poecilogonous polychaete worm

Benni Winding HansenGary Thomas BantaK. Emily KnottAnne ThonigAnne Thonig

subject

0106 biological sciences0301 basic medicinechaotic genetic patchinessPopulationZoologyBiology010603 evolutionary biology01 natural sciencesPygospio eleganspoecilogonydevelopmental mode03 medical and health sciencesGenetic variationbet-hedgingeducationEcology Evolution Behavior and SystematicsOriginal ResearchNature and Landscape ConservationLarvageographyeducation.field_of_studyPolychaetegeography.geographical_feature_categoryPygospio elegansEcologyReproductive successEcologyEstuarybiology.organism_classificationgeneettinen muuntelu030104 developmental biologyGenetic structureta1181bet‐hedging

description

Poecilogonous species show variation in developmental mode, with larvae that differ both morphologically and ecologically. The spionid polychaete Pygospio elegans shows variation in developmental mode not only between populations, but also seasonally within populations. We investigated the consequences of this developmental polymorphism on the spatial and seasonal genetic structure of P. elegans at four sites in the Danish Isefjord‐Roskilde‐Fjord estuary at six time points, from March 2014 until February 2015. We found genetic differentiation between our sampling sites as well as seasonal differentiation at two of the sites. The seasonal genetic shift correlated with the appearance of new size cohorts in the populations. Additionally, we found that the genetic composition of reproductive individuals did not always reflect the genetic composition of the entire sample, indicating that variance in reproductive success among individuals is a likely explanation for the patterns of chaotic genetic patchiness observed during this and previous studies. The heterogeneous, unpredictable character of the estuary might maintain poecilogony in P. elegans as a bet‐hedging strategy in the Isefjord‐Roskilde‐Fjord complex in comparison with other sites where P. elegans are expected to be fixed to a certain mode of development. peerReviewed

https://doi.org/10.1002/ece3.3518