Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evolution in early life history traits involves a complex interplay between the developing plant and its current and future environments. We examined the plant’s earliest life history traits, dissecting an integrated suite of pre-germination processes: primary dormancy, thermal induction of secondary dormancy, and seasonal germination response. We examined genetic variation in the three processes, genetic correlations among the processes, and the scaling of germination phenology with the source populations’ climates. A spring annual life-history was associated with genetic propensities toward both strong primary dormancy and heat-induced seconda...
The genetic basis of seed dormancy, a key life-history trait important for adaptive evolution in pla...
Incomplete information regarding both selection regimes and the genetic basis of fitness limits our ...
Seed dormancy is a complex adaptive trait that controls the timing of seed germination, one of the m...
Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evo...
<p>The temporal control or timing of the life cycle of annual plants is presumed to provide adaptive...
• Major alleles for seed dormancy and flowering time are well-studied, and can interact to influence...
Organisms are often adapted to their local environment, but the role of early life stages in adaptiv...
Life-history traits controlling the duration and timing of developmental phases in the life cycle jo...
Life-history traits controlling the duration and timing of developmental phases in the life cycle jo...
Life-history traits controlling the duration and timing of developmental phases in the life cycle jo...
Life-history traits controlling the duration and timing of developmental phases in the life cycle jo...
<div><p>Life-history traits controlling the duration and timing of developmental phases in the life ...
Colonizing species may often encounter strong selection during the initial stages of adaptation to n...
The timing of seed germination determines the environment experienced by a plant’s most vulnerable l...
The genetic basis of seed dormancy, a key life-history trait important for adaptive evolution in pla...
Incomplete information regarding both selection regimes and the genetic basis of fitness limits our ...
Seed dormancy is a complex adaptive trait that controls the timing of seed germination, one of the m...
Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evo...
<p>The temporal control or timing of the life cycle of annual plants is presumed to provide adaptive...
• Major alleles for seed dormancy and flowering time are well-studied, and can interact to influence...
Organisms are often adapted to their local environment, but the role of early life stages in adaptiv...
Life-history traits controlling the duration and timing of developmental phases in the life cycle jo...
Life-history traits controlling the duration and timing of developmental phases in the life cycle jo...
Life-history traits controlling the duration and timing of developmental phases in the life cycle jo...
Life-history traits controlling the duration and timing of developmental phases in the life cycle jo...
<div><p>Life-history traits controlling the duration and timing of developmental phases in the life ...
Colonizing species may often encounter strong selection during the initial stages of adaptation to n...
The timing of seed germination determines the environment experienced by a plant’s most vulnerable l...
The genetic basis of seed dormancy, a key life-history trait important for adaptive evolution in pla...
Incomplete information regarding both selection regimes and the genetic basis of fitness limits our ...
Seed dormancy is a complex adaptive trait that controls the timing of seed germination, one of the m...