The complex molecular network that underlies physiological stress response is comprised of nodes (proteins, metabolites, mRNAs, etc.) whose connections span cells, tissues and organs. Variable nodes are points in the network upon which natural selection may act. Thus, identifying variable nodes will reveal how this molecular stress network may evolve among populations in different habitats and how it might impact life-history evolution. Here, we use physiological and genetic assays to test whether laboratory-born juveniles from natural populations of garter snakes (Thamnophis elegans), which have diverged in their life-history phenotypes, vary concomitantly at candidate nodes of the stress response network, (i) under unstressed conditions a...
Stress responses play an important role in shaping species distributions and robustness to climate c...
Genes interact in networks to orchestrate cellular processes. Here, we used coexpression networks ba...
Organisms can cope with stressful environments via a combination of phenotypic plasticity at the ind...
The complex molecular network that underlies physiological stress response is comprised of nodes (pr...
Physiology is the mechanistic link between how an individual organism experiences its external envir...
Extreme temperatures constrain organismal physiology and impose both acute and chronic effects. Addi...
Selection in novel environments can lead to a coordinated evolutionary response across a suite of ch...
Physiology mediates how organisms interact with and are constrained by their environment. Understand...
Glucocorticoids are important mediators of energy utilization for key physiological processes, inclu...
Adaptive evolutionary responses are determined by the strength of selection and the amount of geneti...
Evolutionary theories of aging are linked to life-history theory in that age-specific schedules of r...
A central problem in evolutionary quantitative genetics has been to attempt to dissect the genetic b...
Genes interact in networks to orchestrate cellular processes. Here, we used coexpression networks ba...
Natural and human-induced stressors elicit changes in energy metabolism and stress physiology in pop...
Environmental change can expose populations to unfamiliar stressors, and maladaptive responses to th...
Stress responses play an important role in shaping species distributions and robustness to climate c...
Genes interact in networks to orchestrate cellular processes. Here, we used coexpression networks ba...
Organisms can cope with stressful environments via a combination of phenotypic plasticity at the ind...
The complex molecular network that underlies physiological stress response is comprised of nodes (pr...
Physiology is the mechanistic link between how an individual organism experiences its external envir...
Extreme temperatures constrain organismal physiology and impose both acute and chronic effects. Addi...
Selection in novel environments can lead to a coordinated evolutionary response across a suite of ch...
Physiology mediates how organisms interact with and are constrained by their environment. Understand...
Glucocorticoids are important mediators of energy utilization for key physiological processes, inclu...
Adaptive evolutionary responses are determined by the strength of selection and the amount of geneti...
Evolutionary theories of aging are linked to life-history theory in that age-specific schedules of r...
A central problem in evolutionary quantitative genetics has been to attempt to dissect the genetic b...
Genes interact in networks to orchestrate cellular processes. Here, we used coexpression networks ba...
Natural and human-induced stressors elicit changes in energy metabolism and stress physiology in pop...
Environmental change can expose populations to unfamiliar stressors, and maladaptive responses to th...
Stress responses play an important role in shaping species distributions and robustness to climate c...
Genes interact in networks to orchestrate cellular processes. Here, we used coexpression networks ba...
Organisms can cope with stressful environments via a combination of phenotypic plasticity at the ind...