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果蝇雌性交配后行为反应的神经回路基础。

Neural circuitry underlying Drosophila female postmating behavioral responses.

机构信息

Department of Physiology, Anatomy and Genetics, University of Oxford, Sherrington Building, Parks Road, Oxford OX1 3PT, UK.

出版信息

Curr Biol. 2012 Jul 10;22(13):1155-65. doi: 10.1016/j.cub.2012.04.062. Epub 2012 May 31.

Abstract

BACKGROUND

After mating, Drosophila females undergo a remarkable phenotypic switch resulting in decreased sexual receptivity and increased egg laying. Transfer of male sex peptide (SP) during copulation mediates these postmating responses via sensory neurons that coexpress the sex-determination gene fruitless (fru) and the proprioceptive neuronal marker pickpocket (ppk) in the female reproductive system. Little is known about the neuronal pathways involved in relaying SP-sensory information to central circuits and how these inputs are processed to direct female-specific changes that occur in response to mating.

RESULTS

We demonstrate an essential role played by neurons expressing the sex-determination gene doublesex (dsx) in regulating the female postmating response. We uncovered shared circuitry between dsx and a subset of the previously described SP-responsive fru(+)/ppk(+)-expressing neurons in the reproductive system. In addition, we identified sexually dimorphic dsx circuitry within the abdominal ganglion (Abg) critical for mediating postmating responses. Some of these dsx neurons target posterior regions of the brain while others project onto the uterus.

CONCLUSIONS

We propose that dsx-specified circuitry is required to induce female postmating behavioral responses, from sensing SP to conveying this signal to higher-order circuits for processing and through to the generation of postmating behavioral and physiological outputs.

摘要

背景

交配后,果蝇雌蝇会经历显著的表型转换,导致性接受度降低和产卵增加。雄蝇性肽(SP)在交配过程中的转移通过在雌性生殖系统中共同表达性别决定基因 fruitless(fru)和本体感受神经元标记物 pickpocket(ppk)的感觉神经元来介导这些交配后反应。关于将 SP-感觉信息传递到中枢回路的神经元途径以及这些输入如何被处理以指导对交配的反应中发生的特定于雌性的变化知之甚少。

结果

我们证明了表达性别决定基因 doublesex(dsx)的神经元在调节雌性交配后反应中起着重要作用。我们在生殖系统中发现了 dsx 和以前描述的一部分 SP 反应性 fru(+)/ppk(+)表达神经元之间的共享电路。此外,我们在腹部神经节(Abg)中鉴定出了性二态 dsx 电路,该电路对于介导交配后反应至关重要。这些 dsx 神经元中的一些靶向大脑的后区,而另一些则投射到子宫上。

结论

我们提出 dsx 特异性电路是诱导雌性交配后行为反应所必需的,从感知 SP 到将这种信号传递到更高阶的电路进行处理,再到产生交配后的行为和生理输出。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3603/3396843/95fac2672d0a/gr1.jpg

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