1. The timing of life history events, such as germination and reproduction, influences ecological and selective environments throughout the life cycle. Many organisms evolve responses to seasonal environmental cues to synchronize these key events with favorable conditions. Often the fitness consequences of each life history transition depend on previous and subsequent events in the life cycle. If so, shifts in environmental cues can create cascading effects throughout the life cycle, which can influence fitness, selection on life history traits, and population viability. 2. We examined variation in cue responses for contingent life history expression and fitness in a California native wildflower, Streptanthus tortuosus, by manipulating sea...
Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evo...
Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evo...
The optimal timing of the seasonal switch from somatic growth to reproduction can depend on an indiv...
1. The timing of life history events, such as germination and reproduction, influences ecological an...
The timing of life history events, such as germination and reproduction, influences ecological and s...
The timing of life history events, such as germination and reproduction, influences ecological and s...
PREMISE:The timing of germination has profound impacts on fitness, population dynamics, and species ...
Reproductive timing is a key life history trait that impacts the pool of available mates, the enviro...
Reproductive timing is a key life history trait that impacts the pool of available mates, the enviro...
Reproductive timing is a key life history trait that impacts the pool of available mates, the enviro...
Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evo...
The timing of germination is a key life-history trait that may strongly influence plant fitness and ...
The timing of germination is a key life-history trait that may strongly influence plant fitness and ...
The timing of germination is a key life-history trait that may strongly influence plant fitness and ...
Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evo...
Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evo...
Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evo...
The optimal timing of the seasonal switch from somatic growth to reproduction can depend on an indiv...
1. The timing of life history events, such as germination and reproduction, influences ecological an...
The timing of life history events, such as germination and reproduction, influences ecological and s...
The timing of life history events, such as germination and reproduction, influences ecological and s...
PREMISE:The timing of germination has profound impacts on fitness, population dynamics, and species ...
Reproductive timing is a key life history trait that impacts the pool of available mates, the enviro...
Reproductive timing is a key life history trait that impacts the pool of available mates, the enviro...
Reproductive timing is a key life history trait that impacts the pool of available mates, the enviro...
Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evo...
The timing of germination is a key life-history trait that may strongly influence plant fitness and ...
The timing of germination is a key life-history trait that may strongly influence plant fitness and ...
The timing of germination is a key life-history trait that may strongly influence plant fitness and ...
Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evo...
Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evo...
Early life history transitions are crucial determining lifetime survival and fecundity. Adaptive evo...
The optimal timing of the seasonal switch from somatic growth to reproduction can depend on an indiv...