1. Physiological traits can influence individual fitness and evolutionary changes in stress-related physiological traits have been hypothesized to mediate the evolution of life-history traits and trade-offs. The hypothesis that such physiological variation could drive ongoing life-history evolution requires non-zero additive genetic variance in individual stress-related physiological traits. However, the magnitude of genetic and environmental components of phenotypic variation in stress-related physiological traits has not been estimated in fully developed vertebrates under natural environmental conditions. 2. We used 490 observations of heterophil to lymphocyte (H:L) ratio, one stress-related physiological trait, collected from 350 fully d...
The heritability (h2) of fitness traits is often low. Although this has been attributed to direction...
The heritability (h2) of fitness traits is often low. Although this has been attributed to direction...
A crucial problem for every organism is how to allocate energy between competing life-history compon...
1. Physiological traits can influence individual fitness and evolutionary changes in stress-related ...
1. Physiological traits can influence individual fitness and evolutionary changes in stress-related ...
1. Physiological traits can influence individual fitness and evolutionary changes in stress-related ...
Quantifying sex-specific additive genetic variance (VA) in fitness, and the cross-sex genetic correl...
1. Lymphocytes and heterophils are the two most abundant leukocyte types, which play a major role in...
1. Lymphocytes and heterophils are the two most abundant leukocyte types, which play a major role in...
Quantifying sex-specific additive genetic variance (VA) in fitness, and the cross-sex genetic correl...
The degree of inbreeding expressed within populations can profoundly shape evolutionary dynamics. Th...
The degree of inbreeding expressed within populations can profoundly shape evolutionary dynamics. Th...
The heritability (h2) of fitness traits is often low. Although this has been attributed to direction...
The heritability (h2) of fitness traits is often low. Although this has been attributed to direction...
The heritability (h2) of fitness traits is often low. Although this has been attributed to direction...
The heritability (h2) of fitness traits is often low. Although this has been attributed to direction...
The heritability (h2) of fitness traits is often low. Although this has been attributed to direction...
A crucial problem for every organism is how to allocate energy between competing life-history compon...
1. Physiological traits can influence individual fitness and evolutionary changes in stress-related ...
1. Physiological traits can influence individual fitness and evolutionary changes in stress-related ...
1. Physiological traits can influence individual fitness and evolutionary changes in stress-related ...
Quantifying sex-specific additive genetic variance (VA) in fitness, and the cross-sex genetic correl...
1. Lymphocytes and heterophils are the two most abundant leukocyte types, which play a major role in...
1. Lymphocytes and heterophils are the two most abundant leukocyte types, which play a major role in...
Quantifying sex-specific additive genetic variance (VA) in fitness, and the cross-sex genetic correl...
The degree of inbreeding expressed within populations can profoundly shape evolutionary dynamics. Th...
The degree of inbreeding expressed within populations can profoundly shape evolutionary dynamics. Th...
The heritability (h2) of fitness traits is often low. Although this has been attributed to direction...
The heritability (h2) of fitness traits is often low. Although this has been attributed to direction...
The heritability (h2) of fitness traits is often low. Although this has been attributed to direction...
The heritability (h2) of fitness traits is often low. Although this has been attributed to direction...
The heritability (h2) of fitness traits is often low. Although this has been attributed to direction...
A crucial problem for every organism is how to allocate energy between competing life-history compon...