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Chase-away evolution maintains imperfect mimicry in a brood parasite-host system despite rapid evolution of mimics.


ABSTRACT: We studied a brood parasite-host system (the cuckoo finch Anomalospiza imberbis and its host, the tawny-flanked prinia Prinia subflava) to test (1) the fundamental hypothesis that deceptive mimics evolve to resemble models, selecting in turn for models to evolve away from mimics ('chase-away evolution') and (2) whether such reciprocal evolution maintains imperfect mimicry over time. Over only 50 years, parasites evolved towards hosts and hosts evolved away from parasites, resulting in no detectible increase in mimetic fidelity. Our results reflect rapid adaptive evolution in wild populations of models and mimics and show that chase-away evolution in models can counteract even rapid evolution of mimics, resulting in the persistence of imperfect mimicry.

SUBMITTER: Dixit T 

PROVIDER: S-EPMC10697838 | biostudies-literature | 2023 Dec

REPOSITORIES: biostudies-literature

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Chase-away evolution maintains imperfect mimicry in a brood parasite-host system despite rapid evolution of mimics.

Dixit Tanmay T   Lund Jess J   Fulford Anthony J C AJC   Apostol Andrei L AL   Chen Kuan-Chi KC   Tong Wenfei W   Feeney William E WE   Hamusikili Lazaro L   Colebrook-Robjent John F R JFR   Town Christopher P CP   Spottiswoode Claire N CN  

Nature ecology & evolution 20231023 12


We studied a brood parasite-host system (the cuckoo finch Anomalospiza imberbis and its host, the tawny-flanked prinia Prinia subflava) to test (1) the fundamental hypothesis that deceptive mimics evolve to resemble models, selecting in turn for models to evolve away from mimics ('chase-away evolution') and (2) whether such reciprocal evolution maintains imperfect mimicry over time. Over only 50 years, parasites evolved towards hosts and hosts evolved away from parasites, resulting in no detecti  ...[more]

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