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Updated: Oct 16, 2025

Measuring and Altering Mating Drive in Male Drosophila melanogaster
Published on: February 15, 2017
From fruitless to sex: On the generation and diversification of an innate behavior
Qionglin Peng1, Jie Chen1, Yufeng Pan1,2
1The Key Laboratory of Developmental Genes and Human Disease, School of Life Science and Technology, Southeast University, Nanjing, China.
Abstract:
Male sexual behavior in Drosophila melanogaster, largely controlled by the fruitless (fru) gene encoding the male specific FruM protein, is among the best studied animal behaviors. Although substantial studies suggest that FruM specifies a neuronal circuitry governing all aspects of male sexual behaviors, recent findings show that FruM is not absolutely necessary for such behaviors. We propose that another regulatory gene doublesex encoding the male-specific DsxM protein builds a core neuronal circuitry that possesses the potential for courtship, which could be either induced through adult social experience or innately manifested during development by FruM expression in a broader neuronal circuitry. FruM expression levels and patterns determine the modes of courtship behavior from innate heterosexual, homosexual, bisexual, to learned courtship. We discuss how FruM expression is regulated by hormones and social experiences and tunes functional flexibility of the sex circuitry. We propose that regulatory genes hierarchically build the potential for innate and learned aspects of courtship behaviors, and expression changes of these regulatory genes among different individuals and species with different social experiences ultimately lead to behavioral diversification.
Insights
The fruitless (fru) gene isn't solely responsible for male fruit fly courtship. The doublesex (dsx) gene establishes core circuitry, with fru modulating innate and learned behaviors based on expression levels and social context.
Area of Science:
- Neurobiology
- Behavioral Genetics
- Drosophila melanogaster research
Background:
- Male sexual behavior in Drosophila is primarily linked to the fruitless (fru) gene and its Fru M protein.
- Recent studies indicate Fru M is not essential for all male sexual behaviors.
Purpose of the Study:
- To investigate the role of the doublesex (dsx) gene in establishing male fruit fly sexual behavior.
- To explore how Fru M and Dsx M proteins interact to regulate innate and learned courtship.
Main Methods:
- Analysis of gene regulatory networks controlling sexual behavior.
- Investigating the influence of Fru M expression levels and patterns on courtship modes.
- Examining the impact of hormones and social experiences on Fru M regulation.
Main Results:
- The doublesex (dsx) gene, encoding Dsx M protein, establishes a core neuronal circuitry for courtship.
- Fru M expression modulates this circuitry, enabling innate (heterosexual, homosexual, bisexual) and learned behaviors.
- Hormonal and social factors dynamically regulate Fru M expression, influencing behavioral flexibility.
Conclusions:
- Regulatory genes like dsx and fru hierarchically build innate and learned courtship potentials.
- Variations in gene expression and social experiences drive behavioral diversification across individuals and species.
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