Local adaptation provides an opportunity to study the genetic basis of adaptation and investigate the allelic architecture of adaptive genes. We study DELAY OF GERMINATION 1 (DOG1), a gene controlling natural variation in seed dormancy in Arabidopsis thaliana and investigate evolution of dormancy in 41 populations distributed in four regions separated by natural barriers. Using F_ST and Q_ST comparisons, we compare variation at DOG1 with neutral markers and quantitative variation in seed dormancy. Patterns of genetic differentiation among populations suggest that the gene DOG1 contributes to local adaptation. Although Q_ST for seed dormancy is not different from F_ST for neutral markers, a correlation with variation in summer precipitation ...
In the wild, organismal life cycles occur within seasonal cycles, so shifts in the timing of develop...
Seedling emergence timing is crucial in competitive plant communities and so contributes to species ...
The genetic basis of seed dormancy, a key life-history trait important for adaptive evolution in pla...
Local adaptation provides an opportunity to study the genetic basis of adaptation and investigate th...
Timing of germination is presumably under strong natural selection as it determines the environmenta...
Seasonal germination timing of Arabidopsis thaliana strongly influences overall life history express...
Genetic variation for seed dormancy in nature is a typical quantitative trait controlled by multiple...
A Quantitative Trait Locus (QTL) analysis was performed using two novel Recombinant Inbred Line (RIL...
A Quantitative Trait Locus (QTL) analysis was performed using two novel Recombinant Inbred Line (RIL...
Colonizing species may often encounter strong selection during the initial stages of adaptation to n...
Arabidopsis accessions differ largely in their seed dormancy behavior. To understand the genetic bas...
The seasonal timing of seed germination determines a plant's realized environmental niche, and is im...
Local adaptation occurs when natural selection favours different phenotypes in different locations. ...
Seasonal germination timing of Arabidopsis thaliana strongly influences overall life history express...
Organisms are often adapted to their local environment, but the role of early life stages in adaptiv...
In the wild, organismal life cycles occur within seasonal cycles, so shifts in the timing of develop...
Seedling emergence timing is crucial in competitive plant communities and so contributes to species ...
The genetic basis of seed dormancy, a key life-history trait important for adaptive evolution in pla...
Local adaptation provides an opportunity to study the genetic basis of adaptation and investigate th...
Timing of germination is presumably under strong natural selection as it determines the environmenta...
Seasonal germination timing of Arabidopsis thaliana strongly influences overall life history express...
Genetic variation for seed dormancy in nature is a typical quantitative trait controlled by multiple...
A Quantitative Trait Locus (QTL) analysis was performed using two novel Recombinant Inbred Line (RIL...
A Quantitative Trait Locus (QTL) analysis was performed using two novel Recombinant Inbred Line (RIL...
Colonizing species may often encounter strong selection during the initial stages of adaptation to n...
Arabidopsis accessions differ largely in their seed dormancy behavior. To understand the genetic bas...
The seasonal timing of seed germination determines a plant's realized environmental niche, and is im...
Local adaptation occurs when natural selection favours different phenotypes in different locations. ...
Seasonal germination timing of Arabidopsis thaliana strongly influences overall life history express...
Organisms are often adapted to their local environment, but the role of early life stages in adaptiv...
In the wild, organismal life cycles occur within seasonal cycles, so shifts in the timing of develop...
Seedling emergence timing is crucial in competitive plant communities and so contributes to species ...
The genetic basis of seed dormancy, a key life-history trait important for adaptive evolution in pla...