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The Drosophila takeout gene is regulated by the somatic sex-determination pathway and affects male courtship behavior

机译:果蝇外卖基因受到体细胞性别决定途径的调节并影响男性求爱行为

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摘要

The Drosophila somatic sex-determination regulatory pathway has been well studied, but little is known about the target genes that it ultimately controls. In a differential screen for sex-specific transcripts expressed in fly heads, we identified a highly male-enriched transcript encoding Takeout, a protein related to a superfamily of factors that bind small lipophilic molecules. We show that sex-specific takeout transcripts derive from fat body tissue closely associated with the adult brain and are dependent on the sex determination genes doublesex (dsx) and fruitless (fru). The male-specific Doublesex and Fruitless proteins together activate Takeout expression, whereas the female-specific Doublesex protein represses takeout independently of Fru. When cells that normally express takeout are feminized by expression of the Transformer-F protein, male courtship behavior is dramatically reduced, suggesting that male identity in these cells is necessary for behavior. A loss-of-function mutation in the takeout gene reduces male courtship and synergizes with fruitless mutations, suggesting that takeout plays a redundant role with other fru-dependent factors involved in male mating behavior. Comparison of Takeout sequences to the Drosophila genome reveals a family of 20 related secreted factors. Expression analysis of a subset of these genes suggests that the takeout gene family encodes multiple factors with sex-specific functions.
机译:果蝇的体细胞性别决定调控途径已被充分研究,但对其最终控制的靶基因知之甚少。在针对蝇头中表达的性别特异性转录本的差异筛选中,我们鉴定了编码Takeout的高度男性富集的转录本,Takeout是一种与结合小型亲脂性分子的因子超家族有关的蛋白质。我们显示,特定性别的外带转录本源自与成年大脑紧密相关的脂肪身体组织,并依赖于性别决定基因doublesex(dsx)和无效的基因(fru)。雄性特异的Doublesex和Fruitless蛋白共同激活外卖表达,而雌性特异的Doublesex蛋白则独立于Fru抑制外卖。当正常表达外卖的细胞通过Transformer-F蛋白的表达而女性化时,男性的求爱行为会大大降低,这表明这些细胞中的男性身份对于行为是必要的。外卖基因中的功能丧失突变减少了男性的求偶并与无果的突变协同作用,这表明外卖与雄性交配行为中涉及的其他果相关因子起着多余的作用。将外卖序列与果蝇基因组进行比较,发现了20个相关的分泌因子家族。这些基因的一个子集的表达分析表明,外卖基因家族编码具有性别特异性功能的多种因子。

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