In antagonistic symbioses, such as host–parasite interactions, one population’s success is the other’s loss. In mutualistic symbioses, such as division of labor, both parties can gain, but they might have different preferences over the possible mutualistic arrangements. The rates of evolution of the two populations in a symbiosis are important determinants of which population will be more successful: Faster evolution is thought to be favored in antagonistic symbioses (the “Red Queen effect”), but disfavored in certain mutualistic symbioses (the “Red King effect”). However, it remains unclear which biological parameters drive these effects. Here, we analyze the effects of the various determinants of evolutionary rate: generation time, mutati...
Background: Host-parasite coevolution is generally believed to follow Red Queen dynamics consisting ...
Antagonistic interactions and co-evolution between a host and its parasite are known to cause oscill...
The theory that coevolving hosts and parasites create a fluctuating selective environment for one an...
Mutualisms provide benefits to those who participate in them. As a mutualism evolves, how will these...
Antagonistic coevolution between hosts and parasites can involve rapid fluctuations of genotype freq...
Antagonistic coevolution between hosts and parasites can involve rapid fluctuations of genotype freq...
Mutualistic interspecific interactions, including Müllerian mimicry and division of labor, are commo...
Mutualistic interspecific interactions, including Müllerian mimicry and division of labor, are commo...
The vast majority of plant and animal species reproduce sexually despite the costs associated with s...
Coevolution of two species is typically thought to favour the evolution of faster evolutionary rates...
Abstract Background Red Queen dynamics are defined as long term co-evolutionary dynamics, often with...
Host-parasite coevolutionary dynamics are characterized by fast reciprocal adaptations, resulting in...
Host-parasite coevolution is widely assumed to have a major influence on biological evolution, espec...
Although it is well established theoretically that selective interference among mutations (Hill-Robe...
Host-parasite coevolution is widely assumed to have a major influence on biological evolution, espec...
Background: Host-parasite coevolution is generally believed to follow Red Queen dynamics consisting ...
Antagonistic interactions and co-evolution between a host and its parasite are known to cause oscill...
The theory that coevolving hosts and parasites create a fluctuating selective environment for one an...
Mutualisms provide benefits to those who participate in them. As a mutualism evolves, how will these...
Antagonistic coevolution between hosts and parasites can involve rapid fluctuations of genotype freq...
Antagonistic coevolution between hosts and parasites can involve rapid fluctuations of genotype freq...
Mutualistic interspecific interactions, including Müllerian mimicry and division of labor, are commo...
Mutualistic interspecific interactions, including Müllerian mimicry and division of labor, are commo...
The vast majority of plant and animal species reproduce sexually despite the costs associated with s...
Coevolution of two species is typically thought to favour the evolution of faster evolutionary rates...
Abstract Background Red Queen dynamics are defined as long term co-evolutionary dynamics, often with...
Host-parasite coevolutionary dynamics are characterized by fast reciprocal adaptations, resulting in...
Host-parasite coevolution is widely assumed to have a major influence on biological evolution, espec...
Although it is well established theoretically that selective interference among mutations (Hill-Robe...
Host-parasite coevolution is widely assumed to have a major influence on biological evolution, espec...
Background: Host-parasite coevolution is generally believed to follow Red Queen dynamics consisting ...
Antagonistic interactions and co-evolution between a host and its parasite are known to cause oscill...
The theory that coevolving hosts and parasites create a fluctuating selective environment for one an...