Stochastic phenotype switching – or bet hedging – is a pervasive feature of living systems and common in bacteria that experience fluctuating (unpredictable) environmental conditions. Under such conditions, the capacity to generate variable offspring spreads the risk of being maladapted in the present environment, against offspring likely to have some chance of survival in the future. While a rich subject for theoretical studies, little is known about the selective causes responsible for the evolutionary emergence of stochastic phenotype switching. Here we review recent work – both theoretical and experimental – that sheds light on ecological factors that favour switching types over non-switching types. Of particular relevance is an experim...
Phenotypic variation is one of the most conspicuous features of living organisms. Often this variati...
Phenotypic variation is one of the most conspicuous features of living organisms. Often this variati...
Phenotypic variation is one of the most conspicuous features of living organisms. Often this variati...
Stochastic phenotype switching – or bet hedging – is a pervasive feature of living systems and commo...
Abstract Stochastic phenotype switching – or bet hedging – is a pervasive feature of living systems ...
Stochastic phenotype switching – or bet hedging – is a pervasive feature of living systems and commo...
Stochastic phenotype switching – or bet hedging – is a pervasive feature of living systems and commo...
Bet hedging—stochastic switching between phenotypic states1–3— is a canonical example of an evolutio...
Stochastic phenotype switching—often considered a bet hedging or risk-reducing strategy—can enhance ...
Bet hedging—stochastic switching between phenotypic states1–3— is a canonical example of an evolutio...
Uncertain environments pose a tremendous challenge to populations: The selective pressures imposed b...
Bacterial persistence (phenotypic tolerance to antibiotics) provides a prime example of bet-hedging,...
Bacterial persistence (phenotypic tolerance to antibiotics) provides a prime example of bet-hedging,...
Bacteria in nature are “plagued“ by various unpredictable environmental stresses, being population d...
Microbes in the wild face highly variable and unpredictable environments and are naturally selected ...
Phenotypic variation is one of the most conspicuous features of living organisms. Often this variati...
Phenotypic variation is one of the most conspicuous features of living organisms. Often this variati...
Phenotypic variation is one of the most conspicuous features of living organisms. Often this variati...
Stochastic phenotype switching – or bet hedging – is a pervasive feature of living systems and commo...
Abstract Stochastic phenotype switching – or bet hedging – is a pervasive feature of living systems ...
Stochastic phenotype switching – or bet hedging – is a pervasive feature of living systems and commo...
Stochastic phenotype switching – or bet hedging – is a pervasive feature of living systems and commo...
Bet hedging—stochastic switching between phenotypic states1–3— is a canonical example of an evolutio...
Stochastic phenotype switching—often considered a bet hedging or risk-reducing strategy—can enhance ...
Bet hedging—stochastic switching between phenotypic states1–3— is a canonical example of an evolutio...
Uncertain environments pose a tremendous challenge to populations: The selective pressures imposed b...
Bacterial persistence (phenotypic tolerance to antibiotics) provides a prime example of bet-hedging,...
Bacterial persistence (phenotypic tolerance to antibiotics) provides a prime example of bet-hedging,...
Bacteria in nature are “plagued“ by various unpredictable environmental stresses, being population d...
Microbes in the wild face highly variable and unpredictable environments and are naturally selected ...
Phenotypic variation is one of the most conspicuous features of living organisms. Often this variati...
Phenotypic variation is one of the most conspicuous features of living organisms. Often this variati...
Phenotypic variation is one of the most conspicuous features of living organisms. Often this variati...