Department of Cellular and Molecular Medicine, University of Ottawa, Ottawa, Canada.
The HIT Center for Life Sciences, Harbin Institute of Technology, Harbin, China.
PLoS Genet. 2023 May 22;19(5):e1010753. doi: 10.1371/journal.pgen.1010753. eCollection 2023 May.
Males have finite resources to spend on reproduction. Thus, males rely on a 'time investment strategy' to maximize their reproductive success. For example, male Drosophila melanogaster extends their mating duration when surrounded by conditions enriched with rivals. Here we report a different form of behavioral plasticity whereby male fruit flies exhibit a shortened duration of mating when they are sexually experienced; we refer to this plasticity as 'shorter-mating-duration (SMD)'. SMD is a plastic behavior and requires sexually dimorphic taste neurons. We identified several neurons in the male foreleg and midleg that express specific sugar and pheromone receptors. Using a cost-benefit model and behavioral experiments, we further show that SMD behavior exhibits adaptive behavioral plasticity in male flies. Thus, our study delineates the molecular and cellular basis of the sensory inputs required for SMD; this represents a plastic interval timing behavior that could serve as a model system to study how multisensory inputs converge to modify interval timing behavior for improved adaptation.
男性的繁殖资源是有限的。因此,男性依赖“时间投资策略”来最大限度地提高他们的繁殖成功率。例如,雄性果蝇在周围环境中存在竞争时,会延长交配时间。在这里,我们报告了一种不同形式的行为可塑性,即雄性果蝇在有性经验时表现出交配时间缩短的现象;我们将这种可塑性称为“缩短交配时间(SMD)”。SMD 是一种可塑性行为,需要性二态味觉神经元。我们鉴定了雄性前腿和中腿中的几种表达特定糖和信息素受体的神经元。使用成本效益模型和行为实验,我们进一步表明,SMD 行为在雄性果蝇中表现出适应性的行为可塑性。因此,我们的研究描绘了 SMD 所需的感觉输入的分子和细胞基础;这代表了一种可塑性的时间间隔行为,可以作为一个模型系统来研究多感官输入如何汇聚,以修改时间间隔行为,以提高适应性。