Monandrous flies do remate: plastic and evolutionary consequences of heat exposure on mating behaviour and fertility in Drosophila subobscura
Grandela, A.; Antunes, M. A.; Santos, M. A.; Quina, A. S.; Costa, I. R.; Borges, G.; Matos, M.; Rodrigues, L. R.; Simoes, P.
Show abstract
Recent work has reinforced the importance of fertility in predicting population persistence under global warming, especially male fertility. However, most studies on mating and reproductive performance have used as model organism polyandrous species, remaining unclear if and how will monandrous species respond. This is unfortunate as one could expect monandrous species to be particularly susceptible, given their inability to use sperm from multiple males to prevent reduced progeny production due to male sterility. It could be that monandrous females can overcome this toll in fertility by plastically changing their mating rate, or that monandrous populations evolve the ability to remate upon repeated exposure to heat. To test this, we studied the real-time evolution as well as the thermal plastic response of two geographically distinct populations of the monandrous species Drosophila subobscura after 45 generations evolving under a warming scenario. We assessed the impact of heat on male mating behaviour and fertility, as well as the impact of reduced male fertility on female mating behaviour and fertility. We found that in males the toll in mating behaviour due to heat can be recovered with time, whereas that in reproductive success cannot. On the other hand, females exposed to heat-stressed males significantly increased their remating rate, allowing to recover considerably their own reproductive success. Interestingly, most responses were plastic, with no striking effect of adaptation to warming nor of geographical origin. Our work brings new insights into the effects of heat on monandrous species and establishes a model to study how a shift in mating system may affect species ability to respond to climate change.
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