OPSINEVOL · Evolution of opsin genes in guppies (Poecilia reticulata) relative to male colour: a window into the genetics of mate choice
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2015-04-15 → 2017-08-15
- EU contribution
- €195,455
- Participants
- 1
- Scheme
- MSCA-IF
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Results in brief
Evolution of opsin genes in guppies (Poecilia reticulata) relative to male colour: a window into the genetics of mate choice
The spectacular colours displayed by males during courtship often result from sexual selection by female choice. Female visual perception and preferences for colour should therefore play a critical role in the evolution of male colours. In guppies, female preferences change repeatedly across populations, presenting a great opportunity to study the genetic mechanisms behind changes in female preferences and mate choice. an. In order investigate the genetic mechanisms of female’s preference for colour, I initially studied opsins, the visual pigments that mediate vision, to estimate how much they vary in females with a clear preference for colourful males and females that have lost this preference. Then I moved on to investigating the genetic basis of female mate choice decisions beyond the eye, in the brain’s visual lobes. To do this I used a combination of behavioural experiments and genomics to identify the genetics pathways that get activated in the female brain when evaluating the nuptial colours of a male. Specifically, I started by evaluating the total number of opsin genes, their conservation across populations as well as variation in opsin sequence and expression. Next I relied on next-generation sequencing, to study the neuromolecular pathways underlying guppy mate preference response in the main visual areas of the brain – telencephalon and optic tectum – of females evaluating attractive males compared to non-attractive males. Although I did not find major differences in the opsins, suggesting all females perceive colour similarly, I am beginning to determine which genes and pathways are turned on in a guppy female’s brain when evaluating males. For example, I found 12 genes are differentially expressed in the telencephalon between females exposed to attractive and non-attractive males, and 162 in the optic tectum. Some of these genes are associated with and organism’s response to stimulus, steroid hormone activity, synaptic plasticity and social behaviour. The results of this work will provide a cohesive, integrative and multi-faceted understanding of the role of opsin variation in this model system of evolution by sexual selection, and will determine the role of opsins and the visual system in driving female mate preferences and male colour evolution. This project will help us understand the genetic underpinnings of key adaptive traits, linking genes to the phenotype and opening up new research agendas. The initial results of this work have been published in Science Advances (in press) and Nature Communications (8:14251 - doi:10.1038/ncomms14251).
Data: CORDIS, © European Union
Project objective
The spectacular colours displayed by males during courtship often result from sexual selection by female choice. Female visual perception should therefore play a critical role in the evolution of male colours. In guppies, both sexual dimorphism and male colour have evolved multiple times as a trade-off between female preference and predation pressures. Populations under low-predation regimes have repeatedly and independently evolved more colourful, sexually dimorphic males, and females with relatively strong preferences for colour. I will study opsins, the visual pigments that mediate vision, to shed light into the evolutionary relationship between male colour and female preferences. Guppies present a unique opportunity to systematically study multiple aspects of opsin evolution, asking whether it mirrors the pattern of parallel evolution of sexually selected traits. Initially, I will use next-generation sequencing to evaluate the total number of opsin genes, their distribution through the genome and their conservation across populations. I will then study variation in opsin sequence and expression associated with the evolution of colourful and sexually dimorphic guppy populations. Finally, I will study divergence in the visual system, beyond opsins, using comparative transcriptomics of the retina and the brain’s optic lobes. The results of this work will provide a cohesive, integrative and multi-faceted understanding of the role of opsin variation in this model system of evolution by sexual selection, and will determine the role of opsins and the visual system in driving female mate preferences and male colour evolution. This project will help us understand the genetic underpinnings of key adaptive traits, linking genes to the phenotype and opening up new research agendas.
Original text from CORDIS.
Participants
- UNIVERSITY COLLEGE LONDON · LondonCoordinatorUnited Kingdom
Links
Data: CORDIS, © European Union
