The arms race between brood parasites and their hosts provides a classic model to study coevolution. Hosts often learn to recognize and remove the parasitic egg from their clutch. To avoid egg rejection, brood parasites should select host nests in which the colour of the eggs best matches that of their own. Although this hypothesis has received some support, direct experimental evidence is still lacking. Here, we report on a study of Daurian redstarts (Phoenicurus auroreus), a species showing a distinct egg colour dimorphism, with females laying either blue or pink eggs. Redstarts are often parasitized by common cuckoos (Cuculus canorus), which lay light blue eggs. First, we show that cuckoo eggs were more similar in spectral reflectance to...
Brood parasite – host systems continue to offer insights into species coevolution. A notable system ...
Interspecific arms races between cuckoos and their hosts have produced remarkable examples of mimicr...
Avian hosts of brood parasites can evolve anti-parasitic defenses to recognize and reject foreign eg...
Interspecific brood parasitism represents a prime example of the co-evolutionary arms race where eac...
Brood parasitic cuckoos and their hosts serve as model systems for studying host-parasite coevolutio...
Background: Avian brood parasites and their hosts are involved in complex offence-defense coevolutio...
Avian brood parasites and their hosts are involved in complex offence-defense coevolutionary arms ra...
Background: Antagonistic species often interact via matching of phenotypes, and interactions betwee...
Antagonistic species often interact via matching of phenotypes, and interactions between brood paras...
One of the most efficient defences against obligate brood parasitism in birds is egg ejection, where...
Females of avian brood parasites have evolved various tactics to succeed in their reproductive strat...
Prevailing theory assumes cuckoos lay at random among host nests within a population, although it ha...
Laying a mimetic egg is important for a brood parasite to succeed in defeating the defenses of a hos...
How cuckoos find the nests of their hosts and choose nests with respect to egg phenotype for parasit...
Abstract Brood parasite — host systems continue to offer insights into species coevolution. A notab...
Brood parasite – host systems continue to offer insights into species coevolution. A notable system ...
Interspecific arms races between cuckoos and their hosts have produced remarkable examples of mimicr...
Avian hosts of brood parasites can evolve anti-parasitic defenses to recognize and reject foreign eg...
Interspecific brood parasitism represents a prime example of the co-evolutionary arms race where eac...
Brood parasitic cuckoos and their hosts serve as model systems for studying host-parasite coevolutio...
Background: Avian brood parasites and their hosts are involved in complex offence-defense coevolutio...
Avian brood parasites and their hosts are involved in complex offence-defense coevolutionary arms ra...
Background: Antagonistic species often interact via matching of phenotypes, and interactions betwee...
Antagonistic species often interact via matching of phenotypes, and interactions between brood paras...
One of the most efficient defences against obligate brood parasitism in birds is egg ejection, where...
Females of avian brood parasites have evolved various tactics to succeed in their reproductive strat...
Prevailing theory assumes cuckoos lay at random among host nests within a population, although it ha...
Laying a mimetic egg is important for a brood parasite to succeed in defeating the defenses of a hos...
How cuckoos find the nests of their hosts and choose nests with respect to egg phenotype for parasit...
Abstract Brood parasite — host systems continue to offer insights into species coevolution. A notab...
Brood parasite – host systems continue to offer insights into species coevolution. A notable system ...
Interspecific arms races between cuckoos and their hosts have produced remarkable examples of mimicr...
Avian hosts of brood parasites can evolve anti-parasitic defenses to recognize and reject foreign eg...