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Select interneuron clusters determine female sexual receptivity in Drosophila

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  • Akira Sakurai

    (Tohoku University Graduate School of Life Sciences
    Present address: Department of Neurobiology, University of Massachusetts Medical School, LRB 705, 364 Plantation Street, Worcester, Massachusetts 01605-4321, USA)

  • Masayuki Koganezawa

    (Tohoku University Graduate School of Life Sciences)

  • Kei-ichiro Yasunaga

    (Osaka Bioscience Institute)

  • Kazuo Emoto

    (Osaka Bioscience Institute)

  • Daisuke Yamamoto

    (Tohoku University Graduate School of Life Sciences)

Abstract

Female Drosophila with the spinster mutation repel courting males and rarely mate. Here we show that the non-copulating phenotype can be recapitulated by the elimination of spinster functions from either spin-A or spin-D neuronal clusters, in the otherwise wild-type (spinster heterozygous) female brain. Spin-D corresponds to the olfactory projection neurons with dendrites in the antennal lobe VA1v glomerulus that is fruitless-positive, sexually dimorphic and responsive to fly odour. Spin-A is a novel local neuron cluster in the suboesophageal ganglion, which is known to process contact chemical pheromone information and copulation-related signals. A slight reduction in spinster expression to a level with a minimal effect is sufficient to shut off female sexual receptivity if the dominant-negative mechanistic target of rapamycin is simultaneously expressed, although the latter manipulation alone has only a marginal effect. We propose that spin-mediated mechanistic target of rapamycin signal transduction in these neurons is essential for females to accept the courting male.

Suggested Citation

  • Akira Sakurai & Masayuki Koganezawa & Kei-ichiro Yasunaga & Kazuo Emoto & Daisuke Yamamoto, 2013. "Select interneuron clusters determine female sexual receptivity in Drosophila," Nature Communications, Nature, vol. 4(1), pages 1-9, October.
  • Handle: RePEc:nat:natcom:v:4:y:2013:i:1:d:10.1038_ncomms2837
    DOI: 10.1038/ncomms2837
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