Publikation: Predator coevolution and prey trait variability determine species coexistence
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Predation is one of the key ecological mechanisms allowing species coexistence and influencing biological diversity. However, ecological processes are subject to contemporary evolutionary change, and the degree to which predation affects diversity ultimately depends on the interplay between evolution and ecology. Furthermore, ecological interactions that influence species coexistence can be altered by reciprocal coevolution especially in the case of antagonistic interactions such as predation or parasitism. Here we used an experimental evolution approach to test for the role of initial trait variation in the prey population and coevolutionary history of the predator in the ecological dynamics of a two-species bacterial community predated by a ciliate. We found that initial trait variation both at the bacterial and ciliate level enhanced species coexistence, and that subsequent trait evolutionary trajectories depended on the initial genetic diversity present in the population. Our findings provide further support to the notion that the ecology-centric view of diversity maintenance must be reinvestigated in light of recent findings in the field of eco-evolutionary dynamics.
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SCHEUERL, Thomas, Johannes CAIRNS, Lutz BECKS, Teppo HILTUNEN, 2019. Predator coevolution and prey trait variability determine species coexistence. In: Proceedings of the Royal Society of London, Series B: Biological Sciences. 2019, 286(1902), 20190245. ISSN 0962-8452. eISSN 1471-2954. Available under: doi: 10.1098/rspb.2019.0245BibTex
@article{Scheuerl2019-05-15Preda-45978, year={2019}, doi={10.1098/rspb.2019.0245}, title={Predator coevolution and prey trait variability determine species coexistence}, number={1902}, volume={286}, issn={0962-8452}, journal={Proceedings of the Royal Society of London, Series B: Biological Sciences}, author={Scheuerl, Thomas and Cairns, Johannes and Becks, Lutz and Hiltunen, Teppo}, note={Article Number: 20190245} }
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