Wang Fei, Wang Kaiyu, Forknall Nora, Parekh Ruchi, Dickson Barry J
Janelia Research Campus, Howard Hughes Medical Institute, 19700 Helix Drive, Ashburn, VA 20147, USA.
Janelia Research Campus, Howard Hughes Medical Institute, 19700 Helix Drive, Ashburn, VA 20147, USA; Queensland Brain Institute, University of Queensland, St Lucia, QLD 4072, Australia.
Curr Biol. 2020 Oct 5;30(19):3749-3760.e3. doi: 10.1016/j.cub.2020.07.083. Epub 2020 Aug 13.
The mating decisions of Drosophila melanogaster females are primarily revealed through either of two discrete actions: opening of the vaginal plates to allow copulation, or extrusion of the ovipositor to reject the male. Both actions are triggered by the male courtship song, and both are dependent upon the female's mating status. Virgin females are more likely to open their vaginal plates in response to song; mated females are more likely to extrude their ovipositor. Here, we examine the neural cause and behavioral consequence of ovipositor extrusion. We show that the DNp13 descending neurons act as command-type neurons for ovipositor extrusion, and that ovipositor extrusion is an effective deterrent only when performed by females that have previously mated. The DNp13 neurons respond to male song via direct synaptic input from the pC2l auditory neurons. Mating status does not modulate the song responses of DNp13 neurons, but rather how effectively they can engage the motor circuits for ovipositor extrusion. We present evidence that mating status information is mediated by ppk sensory neurons in the uterus, which are activated upon ovulation. Vaginal plate opening and ovipositor extrusion are thus controlled by anatomically and functionally distinct circuits, highlighting the diversity of neural decision-making circuits even in the context of closely related behaviors with shared exteroceptive and interoceptive inputs.
打开阴道板以允许交配,或者伸出产卵器以拒绝雄性。这两种行为均由雄性求偶歌声触发,并且都取决于雌性的交配状态。未交配的雌性更有可能因歌声而打开阴道板;已交配的雌性更有可能伸出产卵器。在此,我们研究了产卵器伸出的神经原因和行为后果。我们表明,DNp13下行神经元充当产卵器伸出的指令型神经元,并且只有当先前已交配的雌性进行产卵器伸出时,它才是一种有效的威慑。DNp13神经元通过来自pC2l听觉神经元的直接突触输入对雄性歌声做出反应。交配状态不会调节DNp13神经元对歌声的反应,而是调节它们与产卵器伸出运动回路结合的有效性。我们提供的证据表明,交配状态信息由子宫中的ppk感觉神经元介导,这些神经元在排卵时被激活。因此,阴道板打开和产卵器伸出由解剖学和功能上不同的回路控制,这突出了神经决策回路的多样性,即使在具有共享外感受和内感受输入的密切相关行为的背景下也是如此。