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果蝇雌性交配接受的神经回路机制。

Neural circuit mechanisms of sexual receptivity in Drosophila females.

机构信息

Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, VA, USA.

Queensland Brain Institute, University of Queensland, St Lucia, Queensland, Australia.

出版信息

Nature. 2021 Jan;589(7843):577-581. doi: 10.1038/s41586-020-2972-7. Epub 2020 Nov 25.

Abstract

Choosing a mate is one of the most consequential decisions a female will make during her lifetime. A female fly signals her willingness to mate by opening her vaginal plates, allowing a courting male to copulate. Vaginal plate opening (VPO) occurs in response to the male courtship song and is dependent on the mating status of the female. How these exteroceptive (song) and interoceptive (mating status) inputs are integrated to regulate VPO remains unknown. Here we characterize the neural circuitry that implements mating decisions in the brain of female Drosophila melanogaster. We show that VPO is controlled by a pair of female-specific descending neurons (vpoDNs). The vpoDNs receive excitatory input from auditory neurons (vpoENs), which are tuned to specific features of the D. melanogaster song, and from pC1 neurons, which encode the mating status of the female. The song responses of vpoDNs, but not vpoENs, are attenuated upon mating, accounting for the reduced receptivity of mated females. This modulation is mediated by pC1 neurons. The vpoDNs thus directly integrate the external and internal signals that control the mating decisions of Drosophila females.

摘要

选择配偶是女性一生中最重要的决定之一。雌性果蝇通过打开阴道板来表示愿意交配,从而允许求爱雄性进行交配。阴道板开口(VPO)是对雄性求爱歌曲的反应,取决于雌性的交配状态。这些外感受(歌曲)和内感受(交配状态)输入如何整合来调节 VPO 仍然未知。在这里,我们描述了在雌性黑腹果蝇大脑中实施交配决策的神经回路。我们表明,VPO 受一对雌性特异性下行神经元(vpoDNs)控制。vpoDNs 接收来自听觉神经元(vpoENs)的兴奋性输入,这些神经元对黑腹果蝇歌曲的特定特征进行调谐,以及来自 pC1 神经元的输入,这些神经元编码雌性的交配状态。交配后,vpoDNs 的歌曲反应而不是 vpoENs 的反应会减弱,这解释了交配后雌性接受度降低的原因。这种调制是由 pC1 神经元介导的。因此,vpoDNs 直接整合了控制果蝇雌性交配决策的外部和内部信号。

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