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Fruitless specifies sexually dimorphic neural circuitry in the Drosophila brain.无果基因决定果蝇大脑中性别二态性神经回路。
Nature. 2005 Nov 10;438(7065):229-33. doi: 10.1038/nature04229.
2
Male-specific fruitless specifies the neural substrates of Drosophila courtship behaviour.雄性特异性的无果基因决定了果蝇求偶行为的神经基础。
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Neural circuitry that governs Drosophila male courtship behavior.控制果蝇雄性求偶行为的神经回路。
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Drosophila neuropeptide F and its receptor, NPFR1, define a signaling pathway that acutely modulates alcohol sensitivity.果蝇神经肽F及其受体NPFR1定义了一条可急性调节酒精敏感性的信号通路。
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Morning and evening peaks of activity rely on different clock neurons of the Drosophila brain.果蝇大脑中早晚的活动高峰依赖于不同的生物钟神经元。
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Coupled oscillators control morning and evening locomotor behaviour of Drosophila.耦合振荡器控制果蝇的早晚运动行为。
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Conserved mechanisms of glucose sensing and regulation by Drosophila corpora cardiaca cells.果蝇心侧体细胞对葡萄糖的感知与调节的保守机制。
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Characterization of Drosophila fruitless-gal4 transgenes reveals expression in male-specific fruitless neurons and innervation of male reproductive structures.果蝇无果基因 - gal4转基因的特征揭示了其在雄性特异性无果神经元中的表达以及对雄性生殖结构的神经支配。
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果蝇中神经肽F基因的性别和生物钟控制表达。

Sex- and clock-controlled expression of the neuropeptide F gene in Drosophila.

作者信息

Lee Gyunghee, Bahn Jae Hoon, Park Jae H

机构信息

Department of Biochemistry and Cellular and Molecular Biology, University of Tennessee, Knoxville, TN 37996, USA.

出版信息

Proc Natl Acad Sci U S A. 2006 Aug 15;103(33):12580-5. doi: 10.1073/pnas.0601171103. Epub 2006 Aug 7.

DOI:10.1073/pnas.0601171103
PMID:16894172
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1567921/
Abstract

Drosophila neuropeptide F (NPF), a homolog of vertebrate neuropeptide Y, functions in feeding and coordination of behavioral changes in larvae and in modulation of alcohol sensitivity in adults, suggesting diverse roles for this peptide. To gain more insight into adult-specific NPF neuronal functions, we studied how npf expression is regulated in the adult brain. Here, we report that npf expression is regulated in both sex-nonspecific and male-specific manners. Our data show that male-specific npf (ms-npf) expression is controlled by the transformer (tra)-dependent sex-determination pathway. Furthermore, fruitless, one of the major genes functioning downstream of tra, is apparently an upstream regulator of ms-npf transcription. Males lacking ms-npf expression (through tra(F)-mediated feminization) or npf-ablated male flies display significantly reduced male courtship activity, suggesting that one function of ms-npf neurons is to modulate fruitless-regulated sexual behavior. Interestingly, one of the ms-npf neuronal groups belongs to the previously defined clock-controlling dorsolateral neurons. Such ms-npf expression in the dorsolateral neurons is absent in arrhythmic Clock(Jrk) and cycle(02) mutants, suggesting that npf is under dual regulation by circadian and sex-determining factors. Based on these data, we propose that NPF also plays a role in clock-controlled sexual dimorphism in adult Drosophila.

摘要

果蝇神经肽F(NPF)是脊椎动物神经肽Y的同源物,在幼虫的进食和行为变化协调以及成虫的酒精敏感性调节中发挥作用,表明该肽具有多种功能。为了更深入了解成年特异性NPF神经元的功能,我们研究了npf在成体大脑中的表达调控方式。在此,我们报告npf的表达以性别非特异性和雄性特异性方式受到调控。我们的数据表明,雄性特异性npf(ms-npf)的表达受transformer(tra)依赖性性别决定途径控制。此外,fruiless是在tra下游起作用的主要基因之一,显然是ms-npf转录的上游调节因子。缺乏ms-npf表达的雄性(通过tra(F)介导的雌性化)或npf缺失的雄蝇表现出明显降低的雄性求偶活动,这表明ms-npf神经元的一个功能是调节受fruiless调控的性行为。有趣的是,其中一组ms-npf神经元属于先前定义的控制时钟的背外侧神经元。在无节律的Clock(Jrk)和cycle(02)突变体中,背外侧神经元中不存在这种ms-npf表达,这表明npf受昼夜节律和性别决定因素的双重调控。基于这些数据,我们提出NPF在成年果蝇的时钟控制的性别二态性中也发挥作用。