The mode of reproduction is a critical characteristic of any species, as it has a strong effect on its evolution. As any other trait, the reproduction mode is subject to natural selection and may adapt to the environment. When the environment varies over time, different reproduction modes could be optimal at different times. The natural response to a dynamic environment seems to be bet hedging, where multiple reproductive strategies are stochastically executed. Here, we develop a framework for the evolution of simple multicellular life cycles in a dynamic environment. We use a matrix population model of undifferentiated multicellular groups undergoing fragmentation and ask which mode maximizes the population growth rate. Counterintuitively,...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...
International audienceA distinctive signature of living systems is Darwinian evolution, that is, a p...
[[abstract]]Because all the cell populations are capable of making switches between different geneti...
Evolution of complex multicellular life began from the emergence of a life cycle involving the forma...
Evolution of complex multicellular life began from the emergence of a life cycle involving the forma...
Classical evolutionary life history concerns questions such as optimal timing of maturation, life sp...
<div><p>Multicellular organisms depend on developmental programs to coordinate growth and differenti...
The evolution of multicellular life cycles is a central process in the course of the emer-gence of m...
Reproduction is one of the requirements for evolution and a defining feature of life. Yet, across th...
Multicellular organisms depend on developmental programs to coordinate growth and differentiation fr...
<div><p>Reproduction is a defining feature of living systems. To reproduce, aggregates of biological...
Multicellular organisms depend on developmental programs to coordinate growth and differentiation fr...
Multicellular organisms depend on developmental programs to coordinate growth and differentiation fr...
A central issue in life history theory is how organisms trade off current and future reproduction. A...
Traditional evolutionary theory often treats selective forces from the environment and the adaptatio...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...
International audienceA distinctive signature of living systems is Darwinian evolution, that is, a p...
[[abstract]]Because all the cell populations are capable of making switches between different geneti...
Evolution of complex multicellular life began from the emergence of a life cycle involving the forma...
Evolution of complex multicellular life began from the emergence of a life cycle involving the forma...
Classical evolutionary life history concerns questions such as optimal timing of maturation, life sp...
<div><p>Multicellular organisms depend on developmental programs to coordinate growth and differenti...
The evolution of multicellular life cycles is a central process in the course of the emer-gence of m...
Reproduction is one of the requirements for evolution and a defining feature of life. Yet, across th...
Multicellular organisms depend on developmental programs to coordinate growth and differentiation fr...
<div><p>Reproduction is a defining feature of living systems. To reproduce, aggregates of biological...
Multicellular organisms depend on developmental programs to coordinate growth and differentiation fr...
Multicellular organisms depend on developmental programs to coordinate growth and differentiation fr...
A central issue in life history theory is how organisms trade off current and future reproduction. A...
Traditional evolutionary theory often treats selective forces from the environment and the adaptatio...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...
International audienceA distinctive signature of living systems is Darwinian evolution, that is, a p...
[[abstract]]Because all the cell populations are capable of making switches between different geneti...