Winnerless coevolution of hosts and parasites could exhibit Red Queen dynamics, which is characterized by parasite-driven cyclic switching of expressed host phenotypes. We hypothesize that the application of antibiotics to suppress the reproduction of parasites can provide opportunity for the hosts to escape such winnerless coevolution. Here, we formulate a minimal mathematical model of host-parasite interaction involving multiple host phenotypes that are targeted by adapting parasites. Our model predicts the levels of antibiotic effectiveness that can steer the parasite-driven cyclic switching of host phenotypes (oscillations) to a stable equilibrium of host survival. Our simulations show that uninterrupted application of antibiotic with h...
Antagonistic interactions and co-evolution between a host and its parasite are known to cause oscill...
Interactions between hosts and parasites have been hypothesized to cause winnerless coevolution, cal...
Background: Host-parasite coevolution is generally believed to follow Red Queen dynamics consisting ...
An important driver of evolution is the selection pressure that results from interactions between sp...
In host-parasite systems, dominant host types are expected to be eventually replaced by other hosts ...
Host-parasite coevolutionary dynamics are characterized by fast reciprocal adaptations, resulting in...
The theory that coevolving hosts and parasites create a fluctuating selective environment for one an...
The theory that coevolving hosts and parasites create a fluctuating selective environment for one an...
The theory that coevolving hosts and parasites create a fluctuating selective environment for one an...
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...
<p>Top: “classical” RQ dynamics, with frequencies of host and parasite alleles oscillating due to an...
A major determinant of the rate at which drug-resistant malaria parasites spread through a populatio...
The dynamics and consequences of host–parasite coevolution depend on the nature of host genotype-by-...
The dynamics and consequences of host–parasite coevolution depend on the nature of host genotype-by-...
Antagonistic interactions and co-evolution between a host and its parasite are known to cause oscill...
Interactions between hosts and parasites have been hypothesized to cause winnerless coevolution, cal...
Background: Host-parasite coevolution is generally believed to follow Red Queen dynamics consisting ...
An important driver of evolution is the selection pressure that results from interactions between sp...
In host-parasite systems, dominant host types are expected to be eventually replaced by other hosts ...
Host-parasite coevolutionary dynamics are characterized by fast reciprocal adaptations, resulting in...
The theory that coevolving hosts and parasites create a fluctuating selective environment for one an...
The theory that coevolving hosts and parasites create a fluctuating selective environment for one an...
The theory that coevolving hosts and parasites create a fluctuating selective environment for one an...
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...
<p>Top: “classical” RQ dynamics, with frequencies of host and parasite alleles oscillating due to an...
A major determinant of the rate at which drug-resistant malaria parasites spread through a populatio...
The dynamics and consequences of host–parasite coevolution depend on the nature of host genotype-by-...
The dynamics and consequences of host–parasite coevolution depend on the nature of host genotype-by-...
Antagonistic interactions and co-evolution between a host and its parasite are known to cause oscill...
Interactions between hosts and parasites have been hypothesized to cause winnerless coevolution, cal...
Background: Host-parasite coevolution is generally believed to follow Red Queen dynamics consisting ...