Abstract
Quantitative genetic variation in behavioral response to the odorant, benzaldehyde, was assessed among a sample of 43 X and 35 third chromosomes extracted from a natural population and substituted into a common inbred background. Significant genetic variation among chromosome lines was detected. Heritability estimates for olfactory response, however, were low, as is typical for traits under natural selection. Furthermore, the loci affecting naturally occurring variation in olfactory response to benzaldehyde were not the same in males and females, since the genetic correlation between the sexes was low and not significantly different from zero for the chromosome 3 lines. Competitive fitness, viability and fertility of the chromosome 3 lines were estimated using the balancer equilibrium technique. Genetic correlations between fitness and odor-guided behavior were not significantly different from zero, suggesting the number of loci causing variation in olfactory response is small relative to the number of loci causing variation in fitness. Since different genes affect variation in olfactory response in males and females, genetic variation for olfactory response could be maintained by genotype x sex environment interaction. This unusual genetic architecture implies that divergent evolutionary trajectories for olfactory behavior may occur in males and females.
MeSH Terms
Animals
Benzaldehydes/chemistry
Drosophila melanogaster/genetics,physiology
Escape Reaction
Female
Genetic Variation
Male
Odorants
Chemicals
Benzaldehydes
benzaldehyde
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Mackay T F
Department of Genetics, North Carolina State University, Raleigh 27695, USA. trudy_mackay@ncsu.edu
Hackett J B
Lyman R F
Wayne M L
Anholt R R
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