We investigated the quantitative genetics of plasticity in resource allocation between survival, growth and reproductive effort in Crassostrea gigas when food abundance varies spatially. Resource allocation shifted from survival to growth and reproductive effort as food abundance increased. An optimality model suggests that this plastic shift may be adaptive. Reproductive effort plasticity and mean survival were highly heritable, whereas for growth, both mean and plasticity had low heritability. The genetic correlations between reproductive effort and both survival and growth were negative in poor treatments, suggesting trade-offs, but positive in rich ones. These sign reversals may reflect genetic variability in resource acquisition, wh...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
We investigated genetic variability and genetic correlations in early life-history traits of Crassos...
Functional trait variation within and across populations can strongly influence population, communit...
Functional trait variation within and across populations can strongly influence population, communit...
Balancing selection is one of the mechanisms which has been proposed to explain the maintenance of g...
Eastern oysters in the northern Gulf of Mexico are facing rapid environmental changes and can respon...
Understanding the interaction between selection and phenotypic plasticity is important for predictin...
Salinity conditions in oyster breeding grounds in the Gulf of Mexico are expected to drastically cha...
2011-10-12Most marine fish and shellfish are very fecund, with females often producing many millions...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Salinity conditions in oyster breeding grounds in the Gulf of Mexico are expected to drastically cha...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
We investigated genetic variability and genetic correlations in early life-history traits of Crassos...
Functional trait variation within and across populations can strongly influence population, communit...
Functional trait variation within and across populations can strongly influence population, communit...
Balancing selection is one of the mechanisms which has been proposed to explain the maintenance of g...
Eastern oysters in the northern Gulf of Mexico are facing rapid environmental changes and can respon...
Understanding the interaction between selection and phenotypic plasticity is important for predictin...
Salinity conditions in oyster breeding grounds in the Gulf of Mexico are expected to drastically cha...
2011-10-12Most marine fish and shellfish are very fecund, with females often producing many millions...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Salinity conditions in oyster breeding grounds in the Gulf of Mexico are expected to drastically cha...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...