Understanding how organisms adapt to environmental variation is a key challenge of biology. Central to this are bet‐hedging strategies that maximize geometric mean fitness across generations, either by being conservative or diversifying phenotypes. Theoretical models have identified environmental variation across generations with multiplicative fitness effects as driving the evolution of bet‐hedging. However, behavioral ecology has revealed adaptive responses to additive fitness effects of environmental variation within lifetimes, either through insurance or risk‐sensitive strategies. Here, we explore whether the effects of adaptive insurance interact with the evolution of bet‐hedging by varying the position and skew of both arithmetic and ...
Ecological species can spread their extinction risk in an uncertain environment by adopting a bet-he...
The distribution of fitness effects (DFE) among new mutations plays a critical role in adaptive evol...
Decision-making under uncertain conditions favors bet-hedging (avoidance of fitness variance), where...
Understanding how organisms adapt to environmental variation is a key challenge of biology. Central ...
Understanding how organisms adapt to environmental variation is a key challenge of biology. Central ...
Understanding how organisms adapt to environmental variation is a key challenge of biology. Central ...
In order to understand how organisms cope with ongoing changes in environmental variability, it is n...
Bet‐hedging evolves in fluctuating environments because long‐term genotype success is determined by ...
Bet-hedging—a strategy that reduces fitness variance at the expense of lower mean fitness among diff...
In ecology, species can mitigate their extinction risks in uncertain environments by diversifying in...
In unpredictably varying environments, strategies that have a reduced variance in fitness can invade...
The distribution of fitness effects (DFE) among new mutations plays a critical role in adaptive evol...
Ecological species can spread their extinction risk in an uncertain environment by adopting a bet-he...
The distribution of fitness effects (DFE) among new mutations plays a critical role in adaptive evol...
Decision-making under uncertain conditions favors bet-hedging (avoidance of fitness variance), where...
Ecological species can spread their extinction risk in an uncertain environment by adopting a bet-he...
The distribution of fitness effects (DFE) among new mutations plays a critical role in adaptive evol...
Decision-making under uncertain conditions favors bet-hedging (avoidance of fitness variance), where...
Understanding how organisms adapt to environmental variation is a key challenge of biology. Central ...
Understanding how organisms adapt to environmental variation is a key challenge of biology. Central ...
Understanding how organisms adapt to environmental variation is a key challenge of biology. Central ...
In order to understand how organisms cope with ongoing changes in environmental variability, it is n...
Bet‐hedging evolves in fluctuating environments because long‐term genotype success is determined by ...
Bet-hedging—a strategy that reduces fitness variance at the expense of lower mean fitness among diff...
In ecology, species can mitigate their extinction risks in uncertain environments by diversifying in...
In unpredictably varying environments, strategies that have a reduced variance in fitness can invade...
The distribution of fitness effects (DFE) among new mutations plays a critical role in adaptive evol...
Ecological species can spread their extinction risk in an uncertain environment by adopting a bet-he...
The distribution of fitness effects (DFE) among new mutations plays a critical role in adaptive evol...
Decision-making under uncertain conditions favors bet-hedging (avoidance of fitness variance), where...
Ecological species can spread their extinction risk in an uncertain environment by adopting a bet-he...
The distribution of fitness effects (DFE) among new mutations plays a critical role in adaptive evol...
Decision-making under uncertain conditions favors bet-hedging (avoidance of fitness variance), where...