Many organisms express discrete alternative phenotypes (polyphenisms) in relation to predictable environmental variation. However, the evolution of alternative life history phenotypes remains poorly understood. Here, we analyze the evolution of alternative life histories in seasonal environments by using temperate insects as a model system. Temperate insects express alternative developmental pathways of diapause and direct development, the induction of a certain pathway affecting fitness through its life history correlates. We develop a methodologically novel and holistic simulation model and optimize development time, growth rate, body size, reproductive effort and adult lifespan simultaneously in both developmental pathways. The model pre...
Life histories show genetic population-level variation due to spatial variation in selection pressur...
To understand the selective pressures that shape the phenology of a species, it is essential to know...
To understand the selective pressures that shape the phenology of a species, it is essential to know...
Many organisms express discrete alternative phenotypes (polyphenisms) in relation to predictable env...
Many organisms express discrete alternative phenotypes (polyphenisms) in relation to predictable env...
Abstract Deterministic seasonality can explain the evolution of alternative life history phenotypes ...
1. Seasonal phenotypic plasticity entails differential trait expression depending on the time of sea...
1. Seasonal phenotypic plasticity entails differential trait expression depending on the time of sea...
1. Seasonal phenotypic plasticity entails differential trait expression depending on the time of sea...
1. Seasonal phenotypic plasticity entails differential trait expression depending on the time of sea...
The relative roles of genetic differentiation and developmental plasticity in generating latitudinal...
The relative roles of genetic differentiation and developmental plasticity in generating latitudinal...
The relative roles of genetic differentiation and developmental plasticity in generating latitudinal...
Life histories show genetic population-level variation due to spatial variation in selection pressur...
Life histories show genetic population-level variation due to spatial variation in selection pressur...
Life histories show genetic population-level variation due to spatial variation in selection pressur...
To understand the selective pressures that shape the phenology of a species, it is essential to know...
To understand the selective pressures that shape the phenology of a species, it is essential to know...
Many organisms express discrete alternative phenotypes (polyphenisms) in relation to predictable env...
Many organisms express discrete alternative phenotypes (polyphenisms) in relation to predictable env...
Abstract Deterministic seasonality can explain the evolution of alternative life history phenotypes ...
1. Seasonal phenotypic plasticity entails differential trait expression depending on the time of sea...
1. Seasonal phenotypic plasticity entails differential trait expression depending on the time of sea...
1. Seasonal phenotypic plasticity entails differential trait expression depending on the time of sea...
1. Seasonal phenotypic plasticity entails differential trait expression depending on the time of sea...
The relative roles of genetic differentiation and developmental plasticity in generating latitudinal...
The relative roles of genetic differentiation and developmental plasticity in generating latitudinal...
The relative roles of genetic differentiation and developmental plasticity in generating latitudinal...
Life histories show genetic population-level variation due to spatial variation in selection pressur...
Life histories show genetic population-level variation due to spatial variation in selection pressur...
Life histories show genetic population-level variation due to spatial variation in selection pressur...
To understand the selective pressures that shape the phenology of a species, it is essential to know...
To understand the selective pressures that shape the phenology of a species, it is essential to know...