,Mobility affects copulation and oviposition dynamics in Pieris brassicae in seminatural cages

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When,how often and for how long organisms mate can have strong consequences for individual fitness and are crucial aspects of evolutionary ecology.Such determinants are likely to be of even greater importance in monandrous species and species with short adult life stages.Previous work suggests that mobility,a key dispersalrelated trait,may affect the dynamics of copulations,but few studies have investigated the impact of individual mobility on mating latency,copulation duration and oviposition latency simultaneously.In this paper,we monitored the copulation dynamics of 40 males and 40 females,as well as the oviposition dynamics of the females of the Large White butterfly Pieris brassicae,a facultative long-distance disperser butterfly.Individuals from a breeding were selected to create a uniform distribution of mobility and we recorded the timing,number and duration of all copulations in a semiexperimental system.We showed that mobility,measured as the time spent in flight under stressful conditions (a proxy of dispersal tendency),correlates with all aspects of copulation dynamics:mobile males and females mated earlier and for shorter periods than less mobile individuals.In tum,late mating females increased the time between copulation and oviposition.These results feed the previously described mobility syndrome ofP brassicae,involving morphological and physiological characters,with life-history traits.We suggest that the reduction of mating latency and copulation duration has an adaptive value in dispersing individuals,as their life expectancy might be shorter than that of sedentary individuals.
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