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双性调节 Fruitless 表达以促进性腺干细胞龛的性别二态性。

Doublesex regulates fruitless expression to promote sexual dimorphism of the gonad stem cell niche.

机构信息

Department of Biology, Johns Hopkins University, 3400 N. Charles Street, Baltimore, MD, United States of America.

Centre for Neural Circuits and Behaviour, University of Oxford, Tinsley Building, Mansfield Road, Oxford, United Kingdom.

出版信息

PLoS Genet. 2021 Mar 31;17(3):e1009468. doi: 10.1371/journal.pgen.1009468. eCollection 2021 Mar.

Abstract

Doublesex (Dsx) and Fruitless (Fru) are the two downstream transcription factors that actuate Drosophila sex determination. While Dsx assists Fru to regulate sex-specific behavior, whether Fru collaborates with Dsx in regulating other aspects of sexual dimorphism remains unknown. One important aspect of sexual dimorphism is found in the gonad stem cell (GSC) niches, where male and female GSCs are regulated to create large numbers of sperm and eggs. Here we report that Fru is expressed male-specifically in the GSC niche and plays important roles in the development and maintenance of these cells. Unlike previously-studied aspects of sex-specific Fru expression, which are regulated by Transformer (Tra)-mediated alternative splicing, we show that male-specific expression of fru in the gonad is regulated downstream of dsx, and is independent of tra. fru genetically interacts with dsx to support maintenance of the niche throughout development. Ectopic expression of fru inhibited female niche formation and partially masculinized the ovary. fru is also required autonomously for cyst stem cell maintenance and cyst cell survival. Finally, we identified a conserved Dsx binding site upstream of fru promoter P4 that regulates fru expression in the niche, indicating that fru is likely a direct target for transcriptional regulation by Dsx. These findings demonstrate that fru acts outside the nervous system to influence sexual dimorphism and reveal a new mechanism for regulating sex-specific expression of fru that is regulated at the transcriptional level by Dsx, rather than by alternative splicing by Tra.

摘要

双性(Dsx)和无果(Fru)是激活果蝇性别决定的两个下游转录因子。虽然 Dsx 协助 Fru 调节性别特异性行为,但 Fru 是否与 Dsx 合作调节性二态性的其他方面尚不清楚。性二态性的一个重要方面存在于性腺干细胞(GSC)龛位中,雄性和雌性 GSCs 在其中受到调节以产生大量精子和卵子。在这里,我们报告说 Fru 在 GSC 龛位中特异性地在雄性中表达,并在这些细胞的发育和维持中发挥重要作用。与以前研究的由 Transformer(Tra)介导的选择性剪接调节的 Fru 表达的性特异性方面不同,我们表明 Fru 在性腺中的雄性特异性表达受 dsx 下游调节,并且独立于 tra。fru 与 dsx 在遗传上相互作用以支持整个发育过程中龛位的维持。fru 的异位表达抑制了雌性龛位的形成,并部分使卵巢雄性化。fru 还自主维持着胞囊干细胞的维持和胞囊细胞的存活。最后,我们鉴定了 fru 启动子 P4 上游的一个保守的 Dsx 结合位点,该位点调节龛位中的 fru 表达,表明 fru 可能是 Dsx 转录调控的直接靶标。这些发现表明 fru 在神经系统之外发挥作用,影响性二态性,并揭示了一种新的调节 fru 性特异性表达的机制,该机制在转录水平上受 Dsx 调节,而不是由 Tra 进行选择性剪接调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b1b/8041189/5ac690c3b939/pgen.1009468.g001.jpg

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