TY - JOUR A1 - Bierbach, David A1 - Schulte, Matthias A1 - Herrmann, Nina A1 - Tobler, Michael A1 - Stadler, Stefan A1 - Jung, Christian T. A1 - Kunkel, Benjamin A1 - Riesch, RĂ¼diger A1 - Klaus, Sebastian A1 - Ziege, Madlen A1 - Rimber Indy, Jeane A1 - Arias-Rodriguez, Lenin A1 - Plath, Martin T1 - Predator-induced changes of female mating preferences innate and experiential effects JF - BMC evolutionary biology N2 - Background: In many species males face a higher predation risk than females because males display elaborate traits that evolved under sexual selection, which may attract not only females but also predators. Females are, therefore, predicted to avoid such conspicuous males under predation risk. The present study was designed to investigate predator-induced changes of female mating preferences in Atlantic mollies (Poecilia mexicana). Males of this species show a pronounced polymorphism in body size and coloration, and females prefer large, colorful males in the absence of predators. Results: In dichotomous choice tests predator-naive (lab-reared) females altered their initial preference for larger males in the presence of the cichlid Cichlasoma salvini, a natural predator of P. mexicana, and preferred small males instead. This effect was considerably weaker when females were confronted visually with the non-piscivorous cichlid Vieja bifasciata or the introduced non-piscivorous Nile tilapia (Oreochromis niloticus). In contrast, predator experienced (wild-caught) females did not respond to the same extent to the presence of a predator, most likely due to a learned ability to evaluate their predators' motivation to prey. Conclusions: Our study highlights that (a) predatory fish can have a profound influence on the expression of mating preferences of their prey (thus potentially affecting the strength of sexual selection), and females may alter their mate choice behavior strategically to reduce their own exposure to predators. (b) Prey species can evolve visual predator recognition mechanisms and alter their mate choice only when a natural predator is present. (c) Finally, experiential effects can play an important role, and prey species may learn to evaluate the motivational state of their predators. KW - Sexual selection KW - female choice KW - non-independent mate choice KW - predator recognition KW - Poecilia mexicana Y1 - 2011 U6 - https://doi.org/10.1186/1471-2148-11-190 SN - 1471-2148 VL - 11 IS - 3-4 PB - BioMed Central CY - London ER - TY - JOUR A1 - Plath, Martin A1 - Pfenninger, Markus A1 - Lerp, Hannes A1 - Riesch, RĂ¼diger A1 - Eschenbrenner, Christoph A1 - Slattery, Patrick A. A1 - Bierbach, David A1 - Herrmann, Nina A1 - Schulte, Matthias A1 - Arias-Rodriguez, Lenin A1 - Rimber Indy, Jeane A1 - Passow, Courtney A1 - Tobler, Michael T1 - Genetic differentiation and selection against migrants in evolutionarily replicated extreme environments JF - Evolution N2 - We investigated mechanisms of reproductive isolation in livebearing fishes (genus Poecilia) inhabiting sulfidic and nonsulfidic habitats in three replicate river drainages. Although sulfide spring fish convergently evolved divergent phenotypes, it was unclear if mechanisms of reproductive isolation also evolved convergently. Using microsatellites, we found strongly reduced gene flow between adjacent populations from different habitat types, suggesting that local adaptation to sulfidic habitats repeatedly caused the emergence of reproductive isolation. Reciprocal translocation experiments indicate strong selection against immigrants into sulfidic waters, but also variation among drainages in the strength of selection against immigrants into nonsulfidic waters. Mate choice experiments revealed the evolution of assortative mating preferences in females from nonsulfidic but not from sulfidic habitats. The inferred strength of sexual selection against immigrants (RIs) was negatively correlated with the strength of natural selection (RIm), a pattern that could be attributed to reinforcement, whereby natural selection strengthens behavioral isolation due to reduced hybrid fitness. Overall, reproductive isolation and genetic differentiation appear to be replicated and direct consequences of local adaptation to sulfide spring environments, but the relative contributions of different mechanisms of reproductive isolation vary across these evolutionarily independent replicates, highlighting both convergent and nonconvergent evolutionary trajectories of populations in each drainage. KW - Ecological speciation KW - isolation-by-adaptation KW - local adaptation KW - Poecilia mexicana KW - reinforcement KW - sexual isolation Y1 - 2013 U6 - https://doi.org/10.1111/evo.12133 SN - 0014-3820 VL - 67 IS - 9 SP - 2647 EP - 2661 PB - Wiley-Blackwell CY - Hoboken ER -