Temperature is a major factor affecting population abundance and individual performance. Net reproductive rate (R0) and intrinsic rate of increase (r) differ in their response to different temperature regimes, and much of the difference is mediated by generation time (Tg). Here, we evaluate the effects of thermal mean and variability on R0, r and Tg, at four population densities in Drosophila melanogaster. The results show that R 0, r and Tg present differential responses to thermal variation. Although temperature effects on R0 and Tg are non-linear, r response was negligible. R0 and Tg comprise a generational time scale, while r is at a chronological time scale. Thus, we argue that individuals growing under different thermal environments p...
Understanding the potential for organisms to tolerate thermal stress through physiological or evolut...
Understanding the potential for organisms to tolerate thermal stress through physiological or evolut...
Understanding the potential for organisms to tolerate thermal stress through physiological or evolut...
Temperature has profound effects on biochemical processes as suggested by the extensive variation in...
Temperature has profound effects on biochemical processes as suggested by the extensive variation in...
Thermal performance curves (TPCs) are intended to approximate the relationship between temperature a...
Thermal performance curves (TPCs) are intended to approximate the relationship between temperature a...
The major goal of evolutionary thermal biology is to understand how variation in temperature shapes ...
The major goal of evolutionary thermal biology is to understand how variation in temperature shapes ...
Thermal performance curves (TPCs) are intended to approximate the relationship between temperature a...
Thermal performance curves have provided a common framework to study the impact of temperature in bi...
In variable environments, selection should favor generalists that maintain fitness across a range of...
In variable environments, selection should favor generalists that maintain fitness across a range of...
Many biotic and abiotic variables influence the dispersal and distribution of organisms. Temperature...
The thermal biology of ectotherms is often used to infer species’ responses to changes in temperatur...
Understanding the potential for organisms to tolerate thermal stress through physiological or evolut...
Understanding the potential for organisms to tolerate thermal stress through physiological or evolut...
Understanding the potential for organisms to tolerate thermal stress through physiological or evolut...
Temperature has profound effects on biochemical processes as suggested by the extensive variation in...
Temperature has profound effects on biochemical processes as suggested by the extensive variation in...
Thermal performance curves (TPCs) are intended to approximate the relationship between temperature a...
Thermal performance curves (TPCs) are intended to approximate the relationship between temperature a...
The major goal of evolutionary thermal biology is to understand how variation in temperature shapes ...
The major goal of evolutionary thermal biology is to understand how variation in temperature shapes ...
Thermal performance curves (TPCs) are intended to approximate the relationship between temperature a...
Thermal performance curves have provided a common framework to study the impact of temperature in bi...
In variable environments, selection should favor generalists that maintain fitness across a range of...
In variable environments, selection should favor generalists that maintain fitness across a range of...
Many biotic and abiotic variables influence the dispersal and distribution of organisms. Temperature...
The thermal biology of ectotherms is often used to infer species’ responses to changes in temperatur...
Understanding the potential for organisms to tolerate thermal stress through physiological or evolut...
Understanding the potential for organisms to tolerate thermal stress through physiological or evolut...
Understanding the potential for organisms to tolerate thermal stress through physiological or evolut...