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Behavioral Ecology Advance Access originally published online on August 29, 2008
Behavioral Ecology 2008 19(6):1080-1086; doi:10.1093/beheco/arn105
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© The Author 2008. Published by Oxford University Press on behalf of the International Society for Behavioral Ecology. All rights reserved. For permissions, please e-mail: journals.permissions@oxfordjournals.org

Seasonal plasticity in male mating preferences in sailfin mollies

Katja U. Heubela,b and Ingo Schluppa,c

a Section of Integrative Biology C0930, University of Texas, Austin, TX 78712, USA b Department of Biological and Environmental Sciences, PO Box 65, University of Helsinki, FIN-00014, Finland c Department of Zoology, University of Oklahoma, 730 Van Vleet Oval, Norman, OK 73019, USA

Address correspondence to K. Heubel, who is now at Laboratory of Ecological and Evolutionary Dynamics, Department of Biological and Environmental Sciences, PO Box 65, (Viikinkaari 1), University of Helsinki, FIN-00014, Finland. E-mail: katja.heubel{at}helsinki.fi.


   Abstract

Although male choosiness may be influenced by predation risk, variation in mate availability, and fecundity that may vary spatially and over time, there is little evidence for variation in male mate choice preferences. In mixed populations of bisexual sailfin mollies (Poecilia latipinna) and unisexual Amazon mollies (Poecilia formosa), males encounter 2 types of potential mates: conspecific sexual sailfin and asexual Amazon mollies. The latter is gynogenetic, thus an all-female species that produces clonal offspring but requires sperm from sexual host males to trigger embryogenesis. Sailfin males do not benefit directly from mating with Amazon mollies, which raises the question why males mate with Amazons at all. Mate choice might be crucial in this context. So far, the possibility that male choice might vary during the mating season remained unexplored. We tested for frequency-dependent or seasonally influenced behavioral plasticity in mating preferences of males originating from natural mixed populations that may contribute to the maintenance of coexistence in this asexual–sexual mating complex. In simultaneous choice tests, we studied male association preferences in P. latipinna originating from populations in South and Central Texas, USA. There was high seasonal variation in male association patterns: males spent less time with asexual females at times that may potentially coincide with reproductive peaks in this species complex, for example, during spring. Male body size and local current relative proportion of Amazon mollies in the populations did not influence male preferences. We discuss potential causes for the variation of a sexual preference for conspecific females and how nondiscriminating male mating behavior can be adaptive in this complex.

Key words: coexistence, frequency dependency, gynogenesis, mate choice, Poeciliidae, seasonality, sex role, sexual selection.

Received 2 October 2005; revised 21 July 2008; accepted 23 July 2008.


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