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脂肪酸延长酶eloF的调控变化是长果蝇性别特异性信息素谱进化的基础。

Regulatory changes in the fatty acid elongase eloF underlie the evolution of sex-specific pheromone profiles in Drosophila prolongata.

作者信息

Luo Yige, Takau Ayumi, Li Jiaxun, Fan Tiezheng, Hopkins Ben R, Le Yvonne, Ramirez Santiago R, Matsuo Takashi, Kopp Artyom

机构信息

Department of Evolution and Ecology, University of California, Davis, USA.

Department of Agricultural and Environmental Biology, The University of Tokyo, Tokyo, Japan.

出版信息

BMC Biol. 2025 Apr 30;23(1):117. doi: 10.1186/s12915-025-02220-z.

Abstract

BACKGROUND

Pheromones play a key role in regulating sexual behavior throughout the animal kingdom. In Drosophila and other insects, many cuticular hydrocarbons (CHCs) are sexually dimorphic, and some are known to perform pheromonal functions. However, the genetic control of sex-specific CHC production is poorly understood outside of the model species D. melanogaster. A recent evolutionary change is found in D. prolongata, which, compared to its closest relatives, shows greatly increased sexual dimorphism in both CHCs and the chemosensory system responsible for their perception. A key transition involves a male-specific increase in the proportion of long-chain CHCs.

RESULTS

Perfuming D. prolongata females with the male-biased long-chain CHCs reduces copulation success, suggesting that these compounds function as sex pheromones. The evolutionary change in CHC profiles correlates with a male-specific increase in the expression of multiple genes involved in CHC biosynthesis, including fatty acid elongases, reductases and other key enzymes. In particular, elongase F, which is responsible for producing female-specific pheromones in D. melanogaster, is strongly upregulated in D. prolongata males compared both to females and to males of the sibling species. Mutations in eloF reduce the amount of long-chain CHCs, resulting in a partial feminization of pheromone profiles in D. prolongata males. Transgenic experiments show that sex-biased expression of eloF is caused in part by a putative transposable element honghaier insertion in its regulatory region.

CONCLUSIONS

These results show that cis-regulatory changes in the eloF gene, along with other changes in the CHC synthesis pathway, contribute to the evolution of sexual communication.

摘要

背景

信息素在整个动物界调节性行为中起着关键作用。在果蝇和其他昆虫中,许多表皮碳氢化合物(CHCs)具有性别二态性,并且已知其中一些具有信息素功能。然而,在模式物种黑腹果蝇之外,性别特异性CHC产生的遗传控制尚不清楚。在长果蝇中发现了一个最近的进化变化,与其最亲近的亲属相比,它在CHCs和负责感知它们的化学感应系统中都表现出大大增加的性别二态性。一个关键转变涉及雄性中长链CHCs比例的特异性增加。

结果

用雄性偏向的长链CHCs给长果蝇雌性加香会降低交配成功率,这表明这些化合物起着性信息素的作用。CHC谱的进化变化与参与CHC生物合成的多个基因(包括脂肪酸延长酶、还原酶和其他关键酶)的雄性特异性表达增加相关。特别是,在黑腹果蝇中负责产生雌性特异性信息素的延长酶F,在长果蝇雄性中与雌性和姐妹物种的雄性相比都强烈上调。eloF中的突变减少了长链CHCs的量,导致长果蝇雄性信息素谱的部分雌性化。转基因实验表明,eloF的性别偏向表达部分是由其调控区域中一个假定的转座因子红海尔插入引起的。

结论

这些结果表明,eloF基因的顺式调控变化以及CHC合成途径中的其他变化,有助于性通讯的进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea1a/12044895/7d0cf5f4e8ec/12915_2025_2220_Fig1_HTML.jpg

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