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THE BITTERLING–MUSSEL COEVOLUTIONARY RELATIONSHIP IN AREAS OF RECENT AND ANCIENT SYMPATRY
Authors:Martin Reichard  Matej Polačik  Ali Serhan Tarkan  Rowena Spence  Özcan Gaygusuz  Ertan Ercan  Markéta Ondračková  Carl Smith
Institution:1. School of Biology, University of St Andrews, St Andrews, Fife KY16 8LB, United Kingdom;2. Institute of Vertebrate Biology, Academy of Sciences of the Czech Republic, Květná 8, 603 65 Brno, Czech Republic;3. E‐mail: reichard@ivb.cz;4. Faculty of Fisheries, Mu?la University, Turkey;5. Faculty of Fisheries, Istanbul University, Turkey;6. Institute of Botany and Zoology, Faculty of Science, Masaryk University, Kotlá?ská 2, 611 37 Brno, Czech Republic
Abstract:Host–parasite relationships are often characterized by the rapid evolution of parasite adaptations to exploit their host, and counteradaptations in the host to avoid the costs imposed by parasitism. Hence, the current coevolutionary state between a parasite and its hosts is predicted to vary according to the history of sympatry and local abundance of interacting species. We compared a unique reciprocal coevolutionary relationship of a fish, the European bitterling (Rhodeus amarus) and freshwater mussels (Unionidae) between areas of recent (Central Europe) and ancient (Turkey) sympatry. Bitterling parasitize freshwater mussels by laying their eggs in the gills of mussel and, in turn, mussel larvae (glochidia) parasitize the fish. We found that all bitterling from both regions avoided one mussel species. Preferences among other mussel species tended to be related to local mussel abundance rather than duration of sympatry. Individual fish were not consistent in their oviposition choices, precluding the evolution of host‐specific lineages. Mussels were demonstrated to have evolved strong defenses to bitterling parasitism in the area of ancient sympatry, but have no such defenses in the large areas of Europe where bitterling are currently invasive. Bitterling avoided glochidia infection irrespective of the duration of sympatry.
Keywords:Coevolutionary arm races  evolutionary lag  gentes  host race  specialization  symbiosis
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